{"meta":{"query_hash":"d34af1e8d535","filters":{"venue":"EGUGA"},"cohort_total":483,"direct_labels_cover":1,"predictions_cover":483,"exported":483,"export_cap":100000,"truncated":false,"label_status":"direct model label, unvalidated","prediction_status":"machine_predicted_unvalidated (Codex and Gemma teacher distillation)","score_status":"score_only:v0-immature-baseline","snapshot":{"source":"OpenAlex, pinned release, all 482 partitions","release":"2026-06-24","frame_built":"2026-07-12"},"permalink":"https://metacan.xera.ac/q/d34af1e8d535","api":"https://metacan.xera.ac/api/v1/cohort?venue=EGUGA"},"results":[{"id":"W1093500","doi":"","title":"Vertical Anatolian Movements Project (VAMP): a collaborative research project of the TopoEurope initiative of ESF","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Political science; Archaeology","score_opus":0.08302186866207148,"score_gpt":0.34022966361898627,"score_spread":0.2572077949569148,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1093500","genre_codex":"empirical","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.58093536,0.01199017,0.015050664,0.013253676,0.0015192529,0.0006233289,0.1376157,0.0016420634,0.23736976],"genre_scores_gemma":[0.7662053,0.0036142992,0.04800365,0.00053343613,0.00017671262,0.000542813,0.08780897,0.0008642568,0.0922505],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99964106,0.00011712381,0.00001582781,0.00007068479,0.000092262475,0.00006302702],"domain_scores_gemma":[0.9992805,0.00009493389,0.00011367929,0.00008064744,0.0002964952,0.00013379999],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010500721,0.000498558,0.00028246705,0.00093189435,0.0005032456,0.0009703079,0.0005350411,0.0004051379,0.007928477],"category_scores_gemma":[0.0012808223,0.00012608214,0.00015512858,0.000992442,0.00032185327,0.0005457581,0.0010531688,0.00029944387,0.0017063835],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014673476,0.00027154412,0.12762128,0.0006744095,0.00019943112,0.0006499274,0.001677248,0.003214088,0.006197716,0.032376554,0.18507284,0.64057755],"study_design_scores_gemma":[0.00020177747,0.00025554904,0.3056304,0.000299534,0.00008455216,0.00053791003,0.0020638644,0.004751662,0.004213868,0.0037409358,0.67819697,0.000022970939],"about_ca_topic_score_codex":0.037293445,"about_ca_topic_score_gemma":0.038629018,"teacher_disagreement_score":0.037293445,"about_ca_system_score_codex":0.0015507768,"about_ca_system_score_gemma":0.00472363,"threshold_uncertainty_score":0.07415271},"labels":[],"label_agreement":null},{"id":"W112445852","doi":"","title":"Evidence for Rotational Parametric Instability in Earth's Core from Analysing Relative Paleointensity Data","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geomagnetism and Paleomagnetism Studies","field":"Biochemistry, Genetics and Molecular Biology","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"York University","funders":"","keywords":"Instability; Dissipation; Earth's magnetic field; Proxy (statistics); Physics; Magnetic field; Mechanics; Parametric statistics; Geophysics; Geodesy; Geology; Mathematics; Thermodynamics; Statistics","score_opus":0.10070189769460543,"score_gpt":0.32867033410564783,"score_spread":0.22796843641104242,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W112445852","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9515427,0.00024327797,0.046742804,0.000049013826,0.0000030725628,0.000041976073,0.00024656477,0.0002214976,0.0009089975],"genre_scores_gemma":[0.9548792,0.00007923793,0.04426987,0.000009944518,0.000004464981,0.000021324851,0.00044414488,0.00002095883,0.00027088687],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998037,0.000032714725,0.000017273087,0.000052276137,0.000062757514,0.00003119545],"domain_scores_gemma":[0.99953425,0.00014867852,0.00010862626,0.000054845525,0.00010792224,0.000045579596],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007374335,0.0001864619,0.00033191784,0.002318907,0.00038567293,0.0008349519,0.00039515982,0.00033421296,0.0006311225],"category_scores_gemma":[0.0020388723,0.00019318628,0.00025222593,0.0012604455,0.00032411283,0.00062091416,0.00063354766,0.0002650124,0.000272725],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041034224,0.0001023478,0.3830838,0.00015094655,0.00013240926,0.0003636478,0.0010265651,0.010299602,0.43342626,0.0032195589,0.0003491222,0.16743536],"study_design_scores_gemma":[0.00004249696,0.00033142543,0.6534749,0.00003362485,0.00009733441,0.0015421616,0.0005996882,0.22718515,0.10573713,0.0067415666,0.0041141077,0.00010048985],"about_ca_topic_score_codex":0.0016694774,"about_ca_topic_score_gemma":0.0020302865,"teacher_disagreement_score":0.002318907,"about_ca_system_score_codex":0.00024369733,"about_ca_system_score_gemma":0.00028941463,"threshold_uncertainty_score":0.003899932},"labels":[],"label_agreement":null},{"id":"W113672753","doi":"","title":"The DAMOCLES ice buoy drift experiments 2007 and 2008","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Buoy; Sea ice; Wind speed; Environmental science; Forcing (mathematics); Meteorology; Climatology; Arctic ice pack; Arctic; Geology; Oceanography; Geography","score_opus":0.008628321223722103,"score_gpt":0.21827171986941332,"score_spread":0.20964339864569123,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W113672753","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98299384,0.00015915227,0.0016817424,0.00037608758,0.00009856276,0.00022375616,0.0068255384,0.00018340025,0.007457952],"genre_scores_gemma":[0.9754986,0.00023145879,0.003999909,0.0002634916,0.00004772247,0.00046068826,0.014137861,0.000050769067,0.005309665],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99950457,0.000058011283,0.000025831794,0.00011911592,0.00021591889,0.00007659696],"domain_scores_gemma":[0.9993001,0.000075101794,0.00011594867,0.00014135164,0.00023961239,0.00012789581],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009893671,0.00048375266,0.000352317,0.00037337857,0.00070994237,0.00041855063,0.00038680682,0.00046110144,0.00086793967],"category_scores_gemma":[0.0015324185,0.00020965288,0.00018296069,0.00036142376,0.00051951554,0.0003861777,0.0007991094,0.00047478455,0.0002029237],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.022009257,0.0066939374,0.43666258,0.0007819067,0.00063635805,0.001882317,0.003936411,0.052793596,0.23222025,0.0104283355,0.07863769,0.15331744],"study_design_scores_gemma":[0.0017834571,0.00361064,0.8407109,0.000077186516,0.00012351543,0.00017592641,0.0008224509,0.013457447,0.059154186,0.0013273526,0.07862708,0.00012994114],"about_ca_topic_score_codex":0.06688727,"about_ca_topic_score_gemma":0.16999932,"teacher_disagreement_score":0.06688727,"about_ca_system_score_codex":0.0016788514,"about_ca_system_score_gemma":0.0013076855,"threshold_uncertainty_score":0.13299584},"labels":[],"label_agreement":null},{"id":"W118215692","doi":"","title":"Use of the North American Regional Reanalysis Data for Hydrological Modeling in Reconstructed Watersheds","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Environmental science; Hydrological modelling; Hydrology (agriculture); Climatology; Geology","score_opus":0.07270650374910691,"score_gpt":0.2514047379294451,"score_spread":0.1786982341803382,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W118215692","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9823476,0.00012107973,0.012668141,0.0001968349,0.00002181224,0.000025008048,0.0015418523,0.00038225553,0.002695377],"genre_scores_gemma":[0.9871804,0.0000883818,0.011708318,0.000007775273,0.000004754262,0.00001303695,0.000749926,0.000033333556,0.00021415675],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99965537,0.00015411396,0.000029923774,0.000078214005,0.000060287523,0.000022070784],"domain_scores_gemma":[0.9985765,0.000607769,0.000109932895,0.00025370228,0.00039873784,0.000053350985],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011613558,0.00025021133,0.00026751877,0.00079960417,0.0005619038,0.0014016866,0.0006070565,0.0004348578,0.000623492],"category_scores_gemma":[0.004377215,0.00025983813,0.000436082,0.0013371998,0.0003452471,0.0008309009,0.00028204967,0.00037699874,0.00013854455],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014316093,0.00014852389,0.126862,0.00004267021,0.00022648528,0.00017546717,0.00035321552,0.8057597,0.0025870972,0.0036999816,0.0011375365,0.058864146],"study_design_scores_gemma":[0.00003698003,0.000017540997,0.03553767,0.000022154343,0.00010387152,0.00003241784,0.00014595427,0.9603424,0.0017571058,0.0006927454,0.0012830526,0.000028123908],"about_ca_topic_score_codex":0.1314214,"about_ca_topic_score_gemma":0.18400012,"teacher_disagreement_score":0.1314214,"about_ca_system_score_codex":0.0012302944,"about_ca_system_score_gemma":0.0022468646,"threshold_uncertainty_score":0.26131284},"labels":[],"label_agreement":null},{"id":"W120767535","doi":"","title":"Global Gridded Emission Inventories of Pentabrominated Diphenyl Ether (PeBDE)","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Toxic Organic Pollutants Impact","field":"Environmental Science","cited_by":10,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"China; Resource (disambiguation); Environmental science; Joint (building); Research center; Geography; Environmental protection; Forestry; Engineering; Political science; Civil engineering; Archaeology","score_opus":0.005931219127525874,"score_gpt":0.24259560271342734,"score_spread":0.23666438358590147,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W120767535","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.56812274,0.0017813158,0.0056739817,0.0007031571,0.00013144693,0.000087310786,0.40739143,0.00079881283,0.015309907],"genre_scores_gemma":[0.75228125,0.0019073824,0.0077098445,0.00013569486,0.000029882238,0.00008396569,0.23105367,0.00010424506,0.006693978],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999905,0.000010905904,0.000006874896,0.000026645555,0.00003631687,0.000014197281],"domain_scores_gemma":[0.9998036,0.00002127803,0.00003650903,0.000024362298,0.00009194349,0.000022375789],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002279633,0.00058324094,0.00023823555,0.000666722,0.00016011622,0.00039198328,0.0003477101,0.0004264834,0.0016498561],"category_scores_gemma":[0.00022785965,0.00020432759,0.0003412155,0.0017218802,0.0001490066,0.00031096992,0.00021216596,0.00021881505,0.00047063906],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012941211,0.00021090859,0.5844736,0.0014833933,0.0013353524,0.00062993966,0.00025113055,0.14285332,0.02773485,0.0050969403,0.09652014,0.1381164],"study_design_scores_gemma":[0.00021360161,0.00018193775,0.7423854,0.000097193595,0.00029024287,0.00031372486,0.00033307145,0.04583601,0.018588362,0.0013242093,0.19034013,0.000096133095],"about_ca_topic_score_codex":0.26157302,"about_ca_topic_score_gemma":0.2494938,"teacher_disagreement_score":0.26157302,"about_ca_system_score_codex":0.0012455317,"about_ca_system_score_gemma":0.0010829134,"threshold_uncertainty_score":0.52010095},"labels":[],"label_agreement":null},{"id":"W122953458","doi":"","title":"Impact of the Laurentide Ice Sheet deglaciation on early to mid-Holocene climate evolution","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Deglaciation; Ice sheet; Holocene; Geology; Climatology; Greenland ice sheet; Oceanography; Ice-sheet model; Orbital forcing; Precipitation; Abrupt climate change; Paleoclimatology; Climate change; Physical geography; Cryosphere; Global warming; Ice stream; Sea ice; Geography; Effects of global warming; Meteorology","score_opus":0.011313357850130268,"score_gpt":0.26075666585781876,"score_spread":0.2494433080076885,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W122953458","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9973636,0.00006782785,0.00037805442,0.0001009481,0.000016674325,0.00000680866,0.00023873674,0.000043214164,0.0017841813],"genre_scores_gemma":[0.9989172,0.000054787,0.00038501638,0.000031454147,0.0000052242212,0.000009666165,0.00022542222,0.000013362799,0.00035789484],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9998877,0.000029703442,0.00000600004,0.000026645706,0.000013227339,0.00003675929],"domain_scores_gemma":[0.9997937,0.000048921975,0.00003910277,0.000018840321,0.000029216937,0.000070224414],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038005898,0.000632758,0.00043501414,0.0003257127,0.00067034544,0.0010678839,0.00072014314,0.0008406314,0.0014431147],"category_scores_gemma":[0.00091304426,0.00028167613,0.0006761688,0.000330681,0.0005035993,0.00051152456,0.00059674354,0.0005356159,0.00012913893],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026164507,0.00011420772,0.084022686,0.00004290087,0.00013330962,0.00031269007,0.00009804235,0.908539,0.0029100692,0.00077115366,0.00043371067,0.0023605695],"study_design_scores_gemma":[0.00022775306,0.00021029814,0.059146583,0.000029738654,0.00012214704,0.00009627682,0.00019797249,0.93568146,0.0021366046,0.00045767176,0.0016499903,0.000043435644],"about_ca_topic_score_codex":0.076694824,"about_ca_topic_score_gemma":0.060987506,"teacher_disagreement_score":0.076694824,"about_ca_system_score_codex":0.0015410732,"about_ca_system_score_gemma":0.0017326692,"threshold_uncertainty_score":0.15249681},"labels":[],"label_agreement":null},{"id":"W134324659","doi":"","title":"The ESA GML Application Schema for EO Products: extension to new product types","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Advanced Computational Techniques and Applications","field":"Computer Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Interoperability; Metadata; Computer science; Data access; Database; Ground segment; World Wide Web; Engineering; Satellite","score_opus":0.015470545354995428,"score_gpt":0.3040788082086003,"score_spread":0.28860826285360486,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W134324659","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0151420105,0.0018210071,0.5677977,0.0050179693,0.001798577,0.0017269023,0.22887349,0.026169946,0.15165237],"genre_scores_gemma":[0.055567678,0.0034235972,0.57340026,0.0035590918,0.0004682811,0.0023093412,0.30386314,0.009312629,0.048096064],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9974728,0.00053783937,0.00069223595,0.0003158937,0.00080391887,0.0001771481],"domain_scores_gemma":[0.9950713,0.0009339082,0.0004128036,0.0016627611,0.0016838941,0.00023548356],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0044047087,0.0010694376,0.000785928,0.0052789496,0.000876301,0.004269479,0.002156443,0.0021747665,0.018412597],"category_scores_gemma":[0.0074748304,0.0007888746,0.0015492471,0.0063415864,0.00090602733,0.0060535385,0.0031182056,0.0022734897,0.018192643],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00053558755,0.0002502086,0.0070182784,0.001941138,0.00011992496,0.0011906486,0.00258434,0.0066594146,0.013420474,0.27512634,0.4863115,0.20484221],"study_design_scores_gemma":[0.000019035388,0.000012270774,0.0008796692,0.0001914536,0.000013909862,0.0002665909,0.00013702473,0.002633076,0.0014991938,0.009063478,0.98525953,0.000024710042],"about_ca_topic_score_codex":0.008047518,"about_ca_topic_score_gemma":0.0075887134,"teacher_disagreement_score":0.018412597,"about_ca_system_score_codex":0.0019330436,"about_ca_system_score_gemma":0.0025628167,"threshold_uncertainty_score":0.061596274},"labels":[],"label_agreement":null},{"id":"W143838581","doi":"","title":"Geochemistry of ocean floor serpentinites world-wide: constraints on the ultramafic input to subduction zones","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ultramafic rock; Geology; Subduction; Geochemistry; Earth science; Seismology; Tectonics","score_opus":0.011585617093510154,"score_gpt":0.1979082839148126,"score_spread":0.18632266682130244,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W143838581","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9979309,0.00042816787,0.00010141573,0.000027921365,0.000002028358,0.0000016489898,0.0005585845,0.000008079057,0.00094119215],"genre_scores_gemma":[0.99889565,0.00031382864,0.00011874299,0.000005980862,0.0000033859712,0.0000012621706,0.0005387776,0.000005094082,0.00011734314],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998487,0.00002072316,0.000022107202,0.000048361508,0.000035696965,0.000024471237],"domain_scores_gemma":[0.9996954,0.000042289164,0.00010329173,0.000036078098,0.000094043346,0.000028864046],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027878134,0.00036997194,0.00026124163,0.0020406933,0.00042461837,0.0007730916,0.00019248978,0.00022190038,0.0009058585],"category_scores_gemma":[0.00052496174,0.00022385518,0.00017884882,0.0017231429,0.00041194077,0.00044411002,0.0005630479,0.00016966311,0.00025608382],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022513274,0.000026771211,0.93660206,0.00012475555,0.00014897334,0.00024921514,0.0007055088,0.0015504463,0.03584761,0.00022234865,0.0001240371,0.02417316],"study_design_scores_gemma":[0.0000032495607,0.000016210177,0.9973455,0.000009603911,0.000020158217,0.00007356411,0.00018933871,0.00036549245,0.0011360755,0.000051996096,0.00078436325,0.0000044800636],"about_ca_topic_score_codex":0.017295767,"about_ca_topic_score_gemma":0.029985946,"teacher_disagreement_score":0.017295767,"about_ca_system_score_codex":0.00047330337,"about_ca_system_score_gemma":0.00029997475,"threshold_uncertainty_score":0.03439021},"labels":[],"label_agreement":null},{"id":"W1486640062","doi":"","title":"Gravitational Driving of Inner Core Super-Rotation","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysics and Gravity Measurements","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Rotation (mathematics); Core (optical fiber); Inner core; Physics; Geodesy; Geology; Computer science; Optics; Computer vision; Geophysics","score_opus":0.027981756502706172,"score_gpt":0.23486147135380275,"score_spread":0.20687971485109657,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1486640062","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9850959,0.00016336085,0.004400746,0.00025342152,0.00003777045,0.000014075019,0.00034220945,0.00019247383,0.009499955],"genre_scores_gemma":[0.99898356,0.00002896826,0.00035820768,0.000023052446,0.000008973221,0.0000020495947,0.000082481034,0.000034497974,0.0004781204],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998932,0.000014586833,0.0000042965075,0.000034283716,0.000022744893,0.000030884654],"domain_scores_gemma":[0.9995436,0.00011321775,0.00008780075,0.00006774823,0.000116343275,0.00007130856],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002888693,0.00032473076,0.00038727617,0.0004814512,0.00047299505,0.0006182206,0.00037385407,0.00030865188,0.0022998673],"category_scores_gemma":[0.0013545287,0.00038777487,0.00021822168,0.0003382976,0.00032513132,0.00058710633,0.0007044587,0.0005059422,0.00035047618],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012715027,0.00022749246,0.50943613,0.00024382882,0.00022956618,0.0009470134,0.0013192669,0.059019975,0.3158036,0.040050086,0.004213487,0.067238025],"study_design_scores_gemma":[0.000054651427,0.00014846251,0.7810247,0.00002378744,0.000043003958,0.00019266037,0.0001643205,0.19333175,0.017658956,0.0042629763,0.0030369132,0.000057809135],"about_ca_topic_score_codex":0.009730015,"about_ca_topic_score_gemma":0.017625472,"teacher_disagreement_score":0.009730015,"about_ca_system_score_codex":0.0008857256,"about_ca_system_score_gemma":0.0005596234,"threshold_uncertainty_score":0.019346774},"labels":[],"label_agreement":null},{"id":"W1488676748","doi":"","title":"Modelling the Polar Summer Tropopause with CLaMS","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Tropopause; Arctic; Environmental science; Aerosol; Polar; Atmospheric sciences; Climatology; Ozone depletion; Meteorology; Troposphere; Oceanography; Stratosphere; Geography; Geology","score_opus":0.013935432048363236,"score_gpt":0.198720154207376,"score_spread":0.18478472215901276,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1488676748","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8079581,0.0046796864,0.097888686,0.0027316853,0.000977902,0.00023732532,0.015256396,0.0033201121,0.06695016],"genre_scores_gemma":[0.9777493,0.0006573823,0.011493753,0.00016927825,0.00015802833,0.0000898634,0.0026754108,0.00023303812,0.006773923],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985003,0.000042148575,0.0000064301116,0.000034743556,0.000022220229,0.000044411245],"domain_scores_gemma":[0.9997079,0.00008717851,0.00003517446,0.000027138885,0.00007307534,0.00006955138],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038865753,0.00077910617,0.00054604164,0.000615757,0.00055136945,0.0012915874,0.0012027652,0.0017833979,0.0052183503],"category_scores_gemma":[0.0010333458,0.00063072896,0.0009045127,0.00086770195,0.0003551116,0.00073237007,0.00070668233,0.00096664054,0.00071134255],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009517134,0.000028609047,0.003209034,0.000047375725,0.00006735408,0.00007337115,0.000036535672,0.9886624,0.0011580788,0.0028070435,0.0014562443,0.0023588482],"study_design_scores_gemma":[0.00004548883,0.000011246032,0.0009694871,0.000010562936,0.000014435372,0.000008196814,0.000030804298,0.99587655,0.00016783077,0.00063239003,0.0022240565,0.000008892569],"about_ca_topic_score_codex":0.11524791,"about_ca_topic_score_gemma":0.07581772,"teacher_disagreement_score":0.11524791,"about_ca_system_score_codex":0.0012705832,"about_ca_system_score_gemma":0.0017640895,"threshold_uncertainty_score":0.22915417},"labels":[],"label_agreement":null},{"id":"W15007945","doi":"10.2169/naika.93.367","title":"The characterization of the Frank Slide deposit","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Geomorphology; Archaeology; Geography","score_opus":0.0020598365849854748,"score_gpt":0.1706747094907904,"score_spread":0.1686148729058049,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W15007945","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.990838,0.00018528047,0.00040655542,0.000017515866,0.0000074678,0.00003805918,0.000613785,0.000018618213,0.007874758],"genre_scores_gemma":[0.99370074,0.00014159853,0.0013353633,0.000011045761,0.000006527156,0.000010086874,0.000721028,0.000008378542,0.0040652025],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99991345,0.0000018616049,0.000003382208,0.00001893477,0.000043416672,0.000018973164],"domain_scores_gemma":[0.9999336,0.0000039927286,0.0000133234835,0.0000057049165,0.000026567861,0.000016786562],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000053496435,0.00013423442,0.000106589854,0.0018223762,0.00067173,0.000440262,0.00015083599,0.00018193606,0.0012329039],"category_scores_gemma":[0.00015486006,0.00008830301,0.00007392579,0.0006639374,0.00034042625,0.00012022426,0.00023339738,0.00013617975,0.0002579496],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00032087826,0.0000670891,0.38968426,0.00022829043,0.000033712906,0.007574811,0.0027291954,0.0009330696,0.5491348,0.001198135,0.001443122,0.046652663],"study_design_scores_gemma":[0.0000033406945,0.00005881574,0.9684011,0.000012827239,0.000007995931,0.002077755,0.0007856853,0.00041052097,0.019722806,0.00003403507,0.008478182,0.000006896257],"about_ca_topic_score_codex":0.025838226,"about_ca_topic_score_gemma":0.07928835,"teacher_disagreement_score":0.97416174,"about_ca_system_score_codex":0.00028020667,"about_ca_system_score_gemma":0.00027545396,"threshold_uncertainty_score":0.051375687},"labels":[],"label_agreement":null},{"id":"W1502701396","doi":"","title":"Optimal locations of GPS measurements in Laurentide and Fennoscandia for constraining 3D GIA models","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysics and Gravity Measurements","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Calgary","funders":"","keywords":"Global Positioning System; Geology; Geodesy; Remote sensing; Computer science; Telecommunications","score_opus":0.060939826247505505,"score_gpt":0.2476714803691075,"score_spread":0.18673165412160198,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1502701396","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8680526,0.00087680056,0.10753774,0.0004886482,0.00017969472,0.00010347617,0.008734905,0.0025855382,0.011440583],"genre_scores_gemma":[0.9267542,0.000118240314,0.06902734,0.000029938403,0.000014776241,0.000062797684,0.0032637955,0.000098147204,0.0006306896],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997167,0.000053296957,0.0000115700095,0.000097425305,0.000053698735,0.00006726061],"domain_scores_gemma":[0.99953675,0.00010111722,0.00004436305,0.000065766486,0.0001924169,0.00005959587],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051086966,0.0005999966,0.0005852283,0.0017870723,0.0010512978,0.0011828176,0.000872797,0.00086191104,0.0012321731],"category_scores_gemma":[0.0032897743,0.0005750401,0.00044856826,0.001578304,0.0005225716,0.00048125917,0.0006250055,0.0007172364,0.00061116525],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00043334017,0.00011492625,0.10074126,0.000099765326,0.00012280804,0.00024818082,0.0006753393,0.7642537,0.008728429,0.0062772143,0.008232229,0.11007276],"study_design_scores_gemma":[0.00008052954,0.000025791247,0.04516624,0.000055775115,0.00005123726,0.000048412534,0.00031448438,0.94293797,0.004516542,0.0021174704,0.0046263398,0.000059235437],"about_ca_topic_score_codex":0.27370906,"about_ca_topic_score_gemma":0.487699,"teacher_disagreement_score":0.27370906,"about_ca_system_score_codex":0.0014594822,"about_ca_system_score_gemma":0.0051990584,"threshold_uncertainty_score":0.5442318},"labels":[],"label_agreement":null},{"id":"W151011921","doi":"","title":"Uranium-lead dating of perovskite from the Afrikanda plutonic complex (Kola Peninsula, Russia) using LA-ICP-MS.","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Manitoba","funders":"","keywords":"Perovskite (structure); Geology; Uranium; Geochemistry; Kola peninsula; Mineralogy; Shrimp; Pluton; Radiometric dating; Metallurgy; Materials science; Chemistry; Seismology; Crystallography","score_opus":0.03265856162442218,"score_gpt":0.22901467595255862,"score_spread":0.19635611432813643,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W151011921","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9891406,0.00066922366,0.0021229978,0.000047590733,0.000012611059,0.000028392422,0.0011751303,0.0000743813,0.006729052],"genre_scores_gemma":[0.99201465,0.0002703728,0.0038392928,0.000010969562,0.000002653262,0.000013191448,0.0007709238,0.00002529358,0.0030525934],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998758,0.00000839348,0.000012160468,0.000042621137,0.000046812125,0.000014180926],"domain_scores_gemma":[0.99994576,0.000005648876,0.000011631068,0.000006643611,0.00002464722,0.0000055547994],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002063056,0.00020029038,0.00020229776,0.001226407,0.00080366916,0.00039248768,0.00027968065,0.00017423123,0.0011329558],"category_scores_gemma":[0.00023017422,0.00013711557,0.00012917908,0.00064669864,0.00019522184,0.00019888954,0.00038161644,0.00016692012,0.00028432297],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038322032,0.000067486435,0.19515929,0.00033942162,0.0001305782,0.0009158835,0.0016476129,0.0012519385,0.7377494,0.00078659336,0.0010279276,0.06054064],"study_design_scores_gemma":[0.000046121168,0.0002315528,0.8138997,0.000059291393,0.0001213549,0.001701781,0.0012187791,0.0039659017,0.15899043,0.0004286633,0.019313741,0.000022582903],"about_ca_topic_score_codex":0.0332959,"about_ca_topic_score_gemma":0.058436837,"teacher_disagreement_score":0.0332959,"about_ca_system_score_codex":0.0004793765,"about_ca_system_score_gemma":0.0005211465,"threshold_uncertainty_score":0.06620419},"labels":[],"label_agreement":null},{"id":"W152247901","doi":"","title":"Atmospheric and oceanic variability related to dry regimes in Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Plant Ecology and Soil Science","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Environmental science; Climatology; Geography; Oceanography; Meteorology; Geology","score_opus":0.0017602429510403055,"score_gpt":0.1647898251548114,"score_spread":0.1630295822037711,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W152247901","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9955552,0.00037283482,0.000060863622,0.00019745085,0.000010456551,0.000006449348,0.0015972765,0.00001342302,0.0021859547],"genre_scores_gemma":[0.9983424,0.00018476925,0.0000428857,0.000034084736,0.0000056725016,0.0000022452268,0.00062286074,0.0000061398214,0.0007589748],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997503,0.000012516956,0.0000144081105,0.000048441445,0.000054195323,0.000120078636],"domain_scores_gemma":[0.99879044,0.00013592138,0.00017560738,0.000035396122,0.0005257458,0.00033683013],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024143874,0.00019827303,0.00027613316,0.001419059,0.0020553549,0.0013274229,0.00054606824,0.00032463792,0.002177329],"category_scores_gemma":[0.0011560627,0.00021914537,0.0002895722,0.0029259918,0.00081789034,0.0002704882,0.0007436019,0.0004918709,0.00015413378],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021811404,0.000028147977,0.9890597,0.000024614355,0.000114610426,0.000157321,0.0012652659,0.0006854354,0.0017055232,0.00034937725,0.0010456073,0.0053463997],"study_design_scores_gemma":[0.0000030572908,0.000003172919,0.998473,0.000005152573,0.000012829126,0.000015573585,0.0005787605,0.00018064545,0.000051020495,0.000020179044,0.0006505849,0.000006058663],"about_ca_topic_score_codex":0.9947872,"about_ca_topic_score_gemma":0.99710375,"teacher_disagreement_score":0.01551851,"about_ca_system_score_codex":0.01551851,"about_ca_system_score_gemma":0.012339871,"threshold_uncertainty_score":0.1125952},"labels":[],"label_agreement":null},{"id":"W1527314635","doi":"","title":"Simulations of the Arctic Boundary Current in an eddy-resolving global ocean model","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Boundary current; Arctic; Current (fluid); Oceanography; Geology; Climatology; The arctic; Circumpolar star; Ocean current; Sea ice","score_opus":0.021011419643168647,"score_gpt":0.2602035467234479,"score_spread":0.23919212708027926,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1527314635","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9864135,0.00020437593,0.003232746,0.0003967735,0.00005193335,0.000046828514,0.0021112824,0.000188999,0.007353602],"genre_scores_gemma":[0.98858845,0.0001620585,0.0074368753,0.00010942152,0.000021641601,0.00009068994,0.00231946,0.000065562155,0.0012057951],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998627,0.00005206547,0.0000085685515,0.000026145482,0.000020414544,0.000030172838],"domain_scores_gemma":[0.9993119,0.00032688887,0.00008110064,0.000053298856,0.00010493352,0.000121854166],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00053479814,0.0006940287,0.0007672423,0.00046587514,0.0006277906,0.00080900005,0.0014136315,0.0013669325,0.0021877924],"category_scores_gemma":[0.0016183987,0.00048008622,0.0007552174,0.0007345939,0.00059051363,0.0006747559,0.0007047061,0.0009990718,0.00018902747],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022984986,0.00015299128,0.0064967247,0.000041992313,0.00007023964,0.00007653259,0.000072349685,0.9884439,0.0009919244,0.0014767142,0.0005805806,0.0013662506],"study_design_scores_gemma":[0.000087902576,0.000060481663,0.0017916852,0.000007009999,0.000019392864,0.0000070428605,0.000041947394,0.99698216,0.00021615179,0.00039457734,0.0003821613,0.000009495516],"about_ca_topic_score_codex":0.04836828,"about_ca_topic_score_gemma":0.038396712,"teacher_disagreement_score":0.04836828,"about_ca_system_score_codex":0.001130676,"about_ca_system_score_gemma":0.0010737225,"threshold_uncertainty_score":0.096173465},"labels":[],"label_agreement":null},{"id":"W152942250","doi":"","title":"Prognosis of groundwater drought occurrence in selected catchments of Slovakia","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Drainage basin; Groundwater; Hydrology (agriculture); Period (music); Surface runoff; Precipitation; Neogene; Hydrogeology; Sedimentary rock; Climate change; Environmental science; Geology; Physical geography; Structural basin; Geography; Geomorphology; Geochemistry; Ecology","score_opus":0.008910999621980676,"score_gpt":0.22864068887912237,"score_spread":0.2197296892571417,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W152942250","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99891865,0.00007104602,0.000109465385,0.000021664733,0.0000019085312,0.000008198965,0.0006148383,0.000017362143,0.00023696871],"genre_scores_gemma":[0.99890995,0.00006460656,0.00010406243,0.000003225833,0.0000011008029,0.0000055909463,0.0007682419,0.0000020922962,0.00014126384],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999684,0.00007004762,0.000041443345,0.000056411558,0.00004275213,0.00010529031],"domain_scores_gemma":[0.9996271,0.000052601485,0.000111310525,0.000024233526,0.000100494144,0.00008427888],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00057034043,0.00028080307,0.0003876287,0.0014589131,0.00041502726,0.00079828175,0.00019450985,0.00029591678,0.0010276948],"category_scores_gemma":[0.00080191967,0.0001862675,0.0005824843,0.0016760422,0.00034015652,0.00035411076,0.0006427437,0.00015553755,0.00012768476],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030865468,0.000060782866,0.97018754,0.00008095133,0.000111838606,0.0004912726,0.00039517766,0.017377896,0.0018857088,0.00012539983,0.00057605974,0.00839873],"study_design_scores_gemma":[0.00001884486,0.00006622898,0.99165255,0.000016414817,0.00002965906,0.000087688706,0.0008330951,0.006288945,0.00042575478,0.000040750772,0.00052896776,0.000011034774],"about_ca_topic_score_codex":0.05895338,"about_ca_topic_score_gemma":0.06763072,"teacher_disagreement_score":0.05895338,"about_ca_system_score_codex":0.0016561585,"about_ca_system_score_gemma":0.0010073397,"threshold_uncertainty_score":0.11722046},"labels":[],"label_agreement":null},{"id":"W1531857185","doi":"","title":"Evidence for Lateral Variation in Lithospheric Mantle Density across the Ocean-Continent Transition of the Iberia and Newfoundland Conjugate Rifted Margins.","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological formations and processes","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Bathymetry; Lithosphere; Gravity anomaly; Seafloor spreading; Mantle (geology); Inversion (geology); Passive margin; Continental margin; Transition zone; Post-glacial rebound; Abyssal plain; Seismology; Geomorphology; Sediment; Geophysics; Paleontology; Tectonics; Rift; Oceanography; Ice sheet","score_opus":0.02121625088677955,"score_gpt":0.24350271232099535,"score_spread":0.2222864614342158,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1531857185","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997439,0.00028840444,0.00008133083,0.000051184077,0.0000031171494,0.0000016761754,0.00047020245,0.000008349183,0.0016567502],"genre_scores_gemma":[0.998958,0.000088400935,0.000113198694,0.00002024059,0.0000015157628,0.000002227753,0.00051373494,0.000002645555,0.0003000152],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998934,0.000010434777,0.0000074144605,0.00003735117,0.000014657312,0.000036736375],"domain_scores_gemma":[0.99965835,0.000038832455,0.0001321763,0.000033933055,0.00008845076,0.000048290913],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002181736,0.00013557586,0.00010923544,0.0007378676,0.00027051885,0.00051782373,0.0002020932,0.00015235171,0.0010272342],"category_scores_gemma":[0.00052023923,0.00012174871,0.00015588169,0.0006687517,0.00048792225,0.00017997222,0.0004766633,0.00017436153,0.00015350412],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009060358,0.00000883305,0.98285335,0.00001961721,0.00007932236,0.00011497546,0.00052645296,0.00024366201,0.007196055,0.000092164584,0.00021380692,0.008561177],"study_design_scores_gemma":[4.3955325e-7,0.0000026040545,0.999622,0.000002257997,0.000003994177,0.000011426359,0.00009664055,0.000043852953,0.00006660555,0.0000031404393,0.00014603925,9.499186e-7],"about_ca_topic_score_codex":0.48123056,"about_ca_topic_score_gemma":0.6293251,"teacher_disagreement_score":0.48123056,"about_ca_system_score_codex":0.0014346022,"about_ca_system_score_gemma":0.0006104416,"threshold_uncertainty_score":0.956859},"labels":[],"label_agreement":null},{"id":"W155218325","doi":"","title":"The Eocene Canopy of the Northwestern Gulf of Mexico explained by the Mechanism of Squeezed Diapirs - A Numerical Modeling Study","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Dalhousie University","funders":"","keywords":"Diapir; Mechanism (biology); Geology; Canopy; Numerical modeling; Geography; Paleontology; Archaeology; Geophysics; Epistemology; Philosophy","score_opus":0.008957315585015311,"score_gpt":0.21572240314402075,"score_spread":0.20676508755900544,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W155218325","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9940749,0.00013729472,0.0008175948,0.00026615965,0.0000075867742,0.0000037467357,0.000106784,0.000033639873,0.004552378],"genre_scores_gemma":[0.9994443,0.00006254994,0.00016548346,0.000009940918,0.0000031801699,0.0000020487303,0.000022398466,0.0000051840566,0.00028487158],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99997544,0.0000035020325,9.499619e-7,0.000007466074,0.0000018496155,0.000010725789],"domain_scores_gemma":[0.99994886,0.0000143399975,0.000012278337,0.0000054669977,0.000008141779,0.000010986032],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00004923227,0.00013304803,0.00016744123,0.00030982262,0.00096228765,0.0006049613,0.00043552613,0.00053046504,0.0025072717],"category_scores_gemma":[0.00027302577,0.00022998161,0.00025102397,0.00027006198,0.00046744544,0.0005601269,0.0003170992,0.000264502,0.0001262371],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029052806,0.00025141047,0.45156872,0.00017987093,0.00013941443,0.0018922979,0.0017573867,0.433029,0.03904571,0.046223633,0.003207829,0.022414219],"study_design_scores_gemma":[0.00006574695,0.000032153406,0.3509245,0.00003639739,0.000054182117,0.00023081958,0.0016762083,0.638486,0.0009668186,0.0033331267,0.004159187,0.000034853365],"about_ca_topic_score_codex":0.110244595,"about_ca_topic_score_gemma":0.09845295,"teacher_disagreement_score":0.110244595,"about_ca_system_score_codex":0.0018689851,"about_ca_system_score_gemma":0.0006877335,"threshold_uncertainty_score":0.2192058},"labels":[],"label_agreement":null},{"id":"W156071905","doi":"","title":"The Eocene/Oligocene benthic foraminiferal turnover at ODP Site 647, southern Labrador Sea","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Benthic zone; Geology; Oceanography; Benthos; Paleontology","score_opus":0.0110083273096209,"score_gpt":0.2267253694124401,"score_spread":0.2157170421028192,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W156071905","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9986386,0.000044569835,0.000017994435,0.00003116968,0.0000015538874,0.0000012170622,0.0005322479,0.0000051829156,0.0007275382],"genre_scores_gemma":[0.99796224,0.000057053854,0.000062996645,0.000022578593,0.0000020079299,0.0000026388554,0.00067775045,0.0000062015147,0.0012064727],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998642,0.000017476354,0.000011976139,0.00003139013,0.00001878302,0.00005617915],"domain_scores_gemma":[0.9996878,0.000024074556,0.00007688855,0.000017547263,0.00010534444,0.00008838448],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021554911,0.0001316673,0.00017385121,0.0012078339,0.00086373504,0.00068618316,0.00046106713,0.00032644387,0.0032303864],"category_scores_gemma":[0.0006051109,0.0002581255,0.0001523658,0.0011895801,0.00039318725,0.0006255079,0.0006852621,0.0002986322,0.00058153766],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017330884,0.000025470703,0.98456913,0.000021313233,0.00003690859,0.00013948498,0.0014429744,0.00016905263,0.0026267169,0.00012755979,0.0005834054,0.010084645],"study_design_scores_gemma":[0.000002723885,0.00000612901,0.9987633,0.000004219451,0.0000045557617,0.000027083264,0.00059999333,0.00009177559,0.0000967884,0.000007411224,0.00039456497,0.0000014849784],"about_ca_topic_score_codex":0.52268785,"about_ca_topic_score_gemma":0.80691284,"teacher_disagreement_score":0.47731215,"about_ca_system_score_codex":0.0017390149,"about_ca_system_score_gemma":0.0012935343,"threshold_uncertainty_score":0.96024626},"labels":[],"label_agreement":null},{"id":"W156563788","doi":"","title":"Sea level curves, geoid rate and uplift rate from composite rheology in glacial isostatic adjustment modeling","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Calgary","funders":"","keywords":"Rheology; Post-glacial rebound; Creep; Geology; Geoid; Viscosity; Mantle (geology); Mechanics; Geophysics; Thermodynamics; Glacial period; Physics; Geomorphology","score_opus":0.03709672801880339,"score_gpt":0.2350745282345247,"score_spread":0.1979778002157213,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W156563788","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.93652606,0.00017994789,0.060135,0.000079009355,0.000010695761,0.000027349699,0.00020448661,0.00017317205,0.002664231],"genre_scores_gemma":[0.99282503,0.00008225283,0.0064923605,0.000008914077,0.0000031833201,0.000019966137,0.00007347096,0.000023590068,0.00047130918],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999527,0.000014158179,0.0000035982173,0.000009686517,0.000011867907,0.000008033139],"domain_scores_gemma":[0.9997861,0.000116627474,0.000038561575,0.000025274256,0.000019452953,0.000013969448],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020427618,0.00035933853,0.00026723582,0.00035057458,0.00011451788,0.0004376086,0.00034809246,0.00040255275,0.0004941633],"category_scores_gemma":[0.0009279135,0.00020313081,0.00042978476,0.00024949855,0.0002976175,0.00036053092,0.00028850327,0.00036935732,0.000087299224],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000508157,0.00002976858,0.0042555584,0.000025222595,0.000017500079,0.00006237267,0.000046116238,0.9820838,0.00796044,0.001423763,0.000078233585,0.003966558],"study_design_scores_gemma":[0.0000042986817,0.00001893911,0.0020038083,0.0000028327488,0.0000053061235,0.000009877123,0.0000051512798,0.99617404,0.001277825,0.00036655154,0.00012601815,0.0000054422007],"about_ca_topic_score_codex":0.0046238485,"about_ca_topic_score_gemma":0.00363116,"teacher_disagreement_score":0.0046238485,"about_ca_system_score_codex":0.00023707855,"about_ca_system_score_gemma":0.00025155922,"threshold_uncertainty_score":0.009193897},"labels":[],"label_agreement":null},{"id":"W1586366360","doi":"","title":"Testing of Cloud Microphysics Scheme with Snow Events","year":2008,"lang":"en","type":"article","venue":"EGUGA","topic":"Meteorological Phenomena and Simulations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Weather Research and Forecasting Model; Snow; Environmental science; Meteorology; Graupel; Global Precipitation Measurement; Satellite; Radiance; Advanced Microwave Sounding Unit; Remote sensing; Cloud cover; Precipitation; Cloud computing; Computer science; Geography","score_opus":0.043281275002710756,"score_gpt":0.21492454103818226,"score_spread":0.1716432660354715,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1586366360","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984079,0.000017609049,0.00065298297,0.000032189906,0.000009709933,0.000017597145,0.00019534865,0.00008739399,0.0005791457],"genre_scores_gemma":[0.9985328,0.000009996974,0.0009856108,0.000009099666,0.0000033475928,0.000006866162,0.00030013497,0.000014044716,0.00013816185],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99967325,0.000083358536,0.000026509522,0.000054280208,0.00007180091,0.00009075335],"domain_scores_gemma":[0.9986797,0.000559719,0.00012196489,0.00021844787,0.00030537476,0.00011487826],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007898314,0.00040322024,0.0002868976,0.0002536495,0.00047114448,0.00035603787,0.0005439638,0.00032219928,0.00055033824],"category_scores_gemma":[0.0025592137,0.00016679426,0.00036890883,0.00027980414,0.00029012156,0.0005131691,0.00031736746,0.0003893612,0.00006884686],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00088485115,0.00050379644,0.14301723,0.000059811788,0.00014575136,0.00018325198,0.00016429342,0.82147086,0.013270718,0.000963066,0.001073822,0.018262655],"study_design_scores_gemma":[0.000103011866,0.00025879504,0.029270403,0.000004222334,0.000021468604,0.00002268192,0.000047392936,0.9616004,0.008153602,0.000109466855,0.00039622173,0.000012429224],"about_ca_topic_score_codex":0.09621022,"about_ca_topic_score_gemma":0.055112325,"teacher_disagreement_score":0.09621022,"about_ca_system_score_codex":0.0008082946,"about_ca_system_score_gemma":0.0009486986,"threshold_uncertainty_score":0.19130039},"labels":[],"label_agreement":null},{"id":"W160152981","doi":"","title":"The hydrological effects of harvesting at Boreal Plain, Alberta","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Boreal; Hydrology (agriculture); Environmental science; Geology; Physical geography; Remote sensing; Geography; Archaeology","score_opus":0.006846928493834211,"score_gpt":0.18936538371122622,"score_spread":0.18251845521739202,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W160152981","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984825,0.00005345189,0.00004935512,0.00008172919,0.0000027280682,0.0000036300721,0.00016510348,0.000007208907,0.0011541706],"genre_scores_gemma":[0.99818593,0.0000999506,0.0000988572,0.000025735693,0.0000030660544,0.0000020502528,0.00020835547,0.0000027356614,0.0013732569],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998367,0.000024569084,0.000007977844,0.000020055111,0.000043368604,0.00006734488],"domain_scores_gemma":[0.999645,0.000046797748,0.000057714256,0.000017501674,0.0001155333,0.00011741022],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033276953,0.00011977182,0.0001419324,0.0005916232,0.0010611437,0.0009274707,0.00039664513,0.00020999498,0.001061502],"category_scores_gemma":[0.00060458144,0.00012407347,0.00016068519,0.0010132553,0.00081921445,0.00030470043,0.00046032894,0.00022140732,0.000111052526],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00081129186,0.00022590444,0.9610898,0.000036699723,0.0001192321,0.0009825705,0.0019636832,0.0073212725,0.0066629453,0.00088300207,0.0018767497,0.018026792],"study_design_scores_gemma":[0.000010277652,0.00001561008,0.9963397,0.0000037089565,0.000011476828,0.000046508292,0.0013954458,0.0011862736,0.0001364407,0.00007458254,0.0007739021,0.0000060426455],"about_ca_topic_score_codex":0.9260436,"about_ca_topic_score_gemma":0.9825701,"teacher_disagreement_score":0.07395637,"about_ca_system_score_codex":0.007962793,"about_ca_system_score_gemma":0.005444506,"threshold_uncertainty_score":0.1487838},"labels":[],"label_agreement":null},{"id":"W160165940","doi":"","title":"Microstructures from the San Andreas Fault Observatory at Depth (SAFOD) Phase 3 Cores","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; University of New Brunswick","funders":"","keywords":"Geology; Phase (matter); Observatory; Seismology; Chemistry","score_opus":0.02049452332423579,"score_gpt":0.24105658690090678,"score_spread":0.220562063576671,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W160165940","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9931039,0.00006388948,0.00019856516,0.000027347753,0.0000061017304,0.000008762659,0.0034619877,0.000041816627,0.0030875406],"genre_scores_gemma":[0.9947908,0.00006458217,0.0005378913,0.000022245837,0.000010083659,0.00000929958,0.0032032386,0.000028110298,0.0013337381],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990237,0.0000045379284,0.000009118145,0.000029326926,0.00003214016,0.00002257107],"domain_scores_gemma":[0.9993315,0.000034743425,0.00013285203,0.00005123534,0.00036090202,0.00008895817],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013406889,0.00018829676,0.0002071589,0.0014118126,0.0005041838,0.00038620547,0.00023338539,0.00034213654,0.003166557],"category_scores_gemma":[0.0006081272,0.00023597376,0.00012885676,0.0012232915,0.00023745795,0.0002770157,0.0003230747,0.00016883874,0.000638156],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005821361,0.00023414579,0.8192418,0.000109971785,0.00008577313,0.000450986,0.0016783894,0.0025622004,0.1381006,0.0007235076,0.004224707,0.032005705],"study_design_scores_gemma":[0.00000462038,0.000021011985,0.9970619,0.000002681773,0.00000818752,0.000037846217,0.00010826677,0.0005577743,0.001155419,0.00002094432,0.0010178422,0.0000034873133],"about_ca_topic_score_codex":0.063176386,"about_ca_topic_score_gemma":0.17024916,"teacher_disagreement_score":0.063176386,"about_ca_system_score_codex":0.00044924286,"about_ca_system_score_gemma":0.00042022998,"threshold_uncertainty_score":0.12561733},"labels":[],"label_agreement":null},{"id":"W1609916204","doi":"","title":"Analysis of Surface Fluxes at Eureka Climate Observatory in Arctic","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Environmental science; Arctic; Climatology; Atmospheric sciences; Arctic ice pack; Sea ice; Global warming; Climate change; Arctic geoengineering; Arctic sea ice decline; Greenhouse gas; Carbon dioxide; Permafrost; Oceanography; Antarctic sea ice; Geology","score_opus":0.03268219273065286,"score_gpt":0.24289382262383727,"score_spread":0.2102116298931844,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1609916204","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9971967,0.00006415229,0.00043203816,0.000008108971,0.000004535647,0.000005206844,0.0018033955,0.000018377608,0.0004675411],"genre_scores_gemma":[0.9933031,0.00007419939,0.0014157186,0.000006521049,0.0000050699546,0.000014443329,0.004809022,0.000008742361,0.00036309558],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998149,0.000012347894,0.000014811257,0.00007150343,0.00004845617,0.000037973812],"domain_scores_gemma":[0.99985087,0.000022787266,0.00003582486,0.000012110562,0.00005971457,0.00001864179],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027680187,0.0003238586,0.00024951404,0.0008641363,0.00043340173,0.00045225656,0.00018552499,0.00024863466,0.00028776872],"category_scores_gemma":[0.00027973717,0.00010709998,0.00030415828,0.0011883536,0.00012914423,0.00026900708,0.0002485325,0.0001479431,0.00009417776],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002794504,0.00009000064,0.92383707,0.00006132999,0.0001417483,0.00041082388,0.0004770747,0.0077232756,0.05127166,0.00016810423,0.0005564832,0.014982873],"study_design_scores_gemma":[0.000003136774,0.00001293804,0.9929525,0.000004022738,0.000012284247,0.00002861184,0.00010344693,0.0042852755,0.0021164264,0.000018568271,0.00045708334,0.0000056708714],"about_ca_topic_score_codex":0.044590373,"about_ca_topic_score_gemma":0.053051643,"teacher_disagreement_score":0.044590373,"about_ca_system_score_codex":0.00043558364,"about_ca_system_score_gemma":0.00039669088,"threshold_uncertainty_score":0.08866167},"labels":[],"label_agreement":null},{"id":"W1612108323","doi":"","title":"Is organic matter found in glaciers similar to soil organic matter? A detailed molecular-level investigation of organic matter found in cryoconite holes on the Athabasca Glacier","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Polar Research and Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto","funders":"","keywords":"Glacier; Organic matter; Geology; Earth science; Environmental chemistry; Physical geography; Astrobiology; Geochemistry; Chemistry; Geomorphology; Physics; Geography; Organic chemistry","score_opus":0.018789099708864693,"score_gpt":0.24447279856495685,"score_spread":0.22568369885609216,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1612108323","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987419,0.0005082051,0.00009867079,0.00004329146,0.000003188837,0.000006924593,0.00013831591,0.000004152072,0.00045537905],"genre_scores_gemma":[0.99863225,0.00053840724,0.00025325594,0.000052193223,0.00000823375,0.000003491723,0.00018588331,0.0000021118833,0.0003242042],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99990356,0.0000074403333,0.0000033568656,0.000029325392,0.000016328795,0.00003995475],"domain_scores_gemma":[0.9998752,0.000014741997,0.00004659652,0.000005600524,0.000028293716,0.000029608438],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013918901,0.0002424995,0.00019644582,0.0012656142,0.00076901156,0.0006705051,0.0001739356,0.00040901385,0.0007296062],"category_scores_gemma":[0.00015929679,0.00013869801,0.00013494708,0.00096620317,0.0006722567,0.0003163968,0.00014677797,0.00017775106,0.00009338722],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002571078,0.000048472077,0.16643558,0.0002025665,0.0001153947,0.0005217612,0.0008085081,0.00016926762,0.82255876,0.00020864517,0.00010495451,0.008568982],"study_design_scores_gemma":[0.0000055158193,0.000106761734,0.98579663,0.000012395064,0.00003272055,0.00017291665,0.00131912,0.00012397788,0.011560972,0.00008622262,0.0007753468,0.0000074194945],"about_ca_topic_score_codex":0.04341647,"about_ca_topic_score_gemma":0.080844514,"teacher_disagreement_score":0.9565835,"about_ca_system_score_codex":0.00054527196,"about_ca_system_score_gemma":0.00050985004,"threshold_uncertainty_score":0.08632749},"labels":[],"label_agreement":null},{"id":"W1612662127","doi":"","title":"PASADO - ICDP Deep Drilling at Laguna Potrok Aike (Argentina): A 50 ka Record of Increasing Environmental Dynamics","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Archaeology; Library science; Physical geography; Earth science; Geology","score_opus":0.00424207893464521,"score_gpt":0.18707575470707796,"score_spread":0.18283367577243276,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1612662127","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98180115,0.00074073864,0.0006939391,0.00022346422,0.000033837456,0.000029310504,0.0017930263,0.00012441298,0.014560119],"genre_scores_gemma":[0.9933119,0.0005201981,0.0012509668,0.000030693103,0.000018427167,0.000023186276,0.0013966355,0.000012356631,0.0034357426],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999428,0.00000465467,0.000004178767,0.00001704047,0.000019209978,0.0000122150295],"domain_scores_gemma":[0.99986184,0.00001900942,0.000039370974,0.000012690568,0.000044082128,0.00002305248],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012707975,0.00020756085,0.00020618623,0.00047055478,0.0005696559,0.00036028714,0.00019094786,0.00031015094,0.0017987029],"category_scores_gemma":[0.00039241606,0.00012882924,0.0000856057,0.00058114674,0.00040394955,0.0002765684,0.0005105238,0.00023273674,0.00023570932],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018741633,0.00014493629,0.75656646,0.0007224971,0.00019748158,0.005290471,0.0056272293,0.0025183344,0.060921937,0.0025072894,0.009060256,0.15456893],"study_design_scores_gemma":[0.000027342989,0.00006346169,0.9749943,0.000053424603,0.000029516223,0.00043741608,0.0009385078,0.00081128645,0.0014255694,0.00018278803,0.0210258,0.000010651581],"about_ca_topic_score_codex":0.06619273,"about_ca_topic_score_gemma":0.18831678,"teacher_disagreement_score":0.06619273,"about_ca_system_score_codex":0.0006922586,"about_ca_system_score_gemma":0.0006135827,"threshold_uncertainty_score":0.13161492},"labels":[],"label_agreement":null},{"id":"W1613205817","doi":"","title":"Transport processes and mutual interactions of three bacterial strains in saturated porous media","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Groundwater flow and contamination studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Klebsiella oxytoca; Porous medium; Strain (injury); TRACER; Groundwater; Packed bed; Chemistry; Chromatography; Porosity; Microbiology; Materials science; Geology; Geotechnical engineering; Biology; Escherichia coli; Composite material; Enterobacteriaceae; Physics; Biochemistry","score_opus":0.011915988887572207,"score_gpt":0.22080982751976486,"score_spread":0.20889383863219266,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1613205817","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99922884,0.000047122496,0.00057375047,0.000009125257,0.0000016098465,0.000004839838,0.000020673217,0.0000072030343,0.0001068897],"genre_scores_gemma":[0.99831533,0.00008121138,0.0012132116,0.0000063185,0.0000017679878,0.000008256271,0.00007533148,0.0000042927804,0.0002942638],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9996674,0.00006440084,0.000024530205,0.000068232,0.00006841946,0.00010706224],"domain_scores_gemma":[0.9996439,0.00014196857,0.00007285182,0.000019199219,0.00006581708,0.00005628039],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033684826,0.00033040933,0.00040783238,0.000247468,0.00029934282,0.00062808895,0.00023817991,0.00034949224,0.00025711648],"category_scores_gemma":[0.0005612626,0.00025158754,0.00027756032,0.00023018563,0.00035768686,0.0004369369,0.00054261636,0.00026771423,0.000070645394],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018068418,0.000022009715,0.0024816438,0.00004433459,0.000008327784,0.000053968335,0.000097653414,0.00028573547,0.9957644,0.0001064061,0.000007828251,0.00094701623],"study_design_scores_gemma":[0.000021989365,0.0010744391,0.015799597,0.000012612771,0.00006726596,0.00020020599,0.00049450906,0.0103841135,0.9712848,0.0001429414,0.00048610335,0.000031443236],"about_ca_topic_score_codex":0.0046772584,"about_ca_topic_score_gemma":0.0032331022,"teacher_disagreement_score":0.0046772584,"about_ca_system_score_codex":0.0004640549,"about_ca_system_score_gemma":0.0006060625,"threshold_uncertainty_score":0.009300053},"labels":[],"label_agreement":null},{"id":"W1615873814","doi":"","title":"X-ray diffraction study of the mineralogy of microinclusions in fibrous diamond","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Diamond and Carbon-based Materials Research","field":"Materials Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Diamond; Raman spectroscopy; Electron microprobe; Microprobe; Materials science; Diamond type; Mineralogy; Material properties of diamond; Analytical Chemistry (journal); Metallurgy; Chemistry; Optics","score_opus":0.008320380082699027,"score_gpt":0.2626685081050161,"score_spread":0.25434812802231704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1615873814","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9942812,0.0010787328,0.0017324535,0.000051847168,0.000011154885,0.000014714818,0.00034094305,0.000028095683,0.0024609256],"genre_scores_gemma":[0.99543756,0.0005278398,0.002502687,0.000024230363,0.000009131646,0.000009365651,0.0004310659,0.00001197435,0.0010461145],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99983454,0.000014874979,0.000016182263,0.000037783564,0.00007285266,0.000023765728],"domain_scores_gemma":[0.9997787,0.00006426517,0.000049518116,0.00001566814,0.00007380163,0.000018135142],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014116225,0.00014427885,0.00016684245,0.00058974564,0.00028934344,0.00036193407,0.00035040703,0.00034348512,0.00079679716],"category_scores_gemma":[0.0003793164,0.00018271958,0.000097559634,0.0006001582,0.00031073374,0.00022633531,0.00015280301,0.00024873237,0.00019122225],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012237484,0.00002637657,0.0032843743,0.00008407283,0.0000068616114,0.0002556833,0.00017635459,0.00024298366,0.9926488,0.00029549838,0.00011204169,0.002744577],"study_design_scores_gemma":[0.0000662102,0.0003269696,0.164232,0.000058102232,0.000029121145,0.0025772804,0.0011351628,0.0057593454,0.81141955,0.000389886,0.013976244,0.000030175313],"about_ca_topic_score_codex":0.00224024,"about_ca_topic_score_gemma":0.0022636272,"teacher_disagreement_score":0.00224024,"about_ca_system_score_codex":0.00016573098,"about_ca_system_score_gemma":0.00014409117,"threshold_uncertainty_score":0.0044543743},"labels":[],"label_agreement":null},{"id":"W1616797624","doi":"","title":"Vancouver 2010 Winter Olympics Land Surface Forecast System","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Remote Sensing and LiDAR Applications","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meteorology; Environmental science; Climatology; Geography; Geology","score_opus":0.007950825719647904,"score_gpt":0.20593714724919224,"score_spread":0.19798632152954435,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1616797624","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.050584394,0.0005541804,0.0045486884,0.0028089602,0.0021798615,0.00032246928,0.7266033,0.0081833,0.20421481],"genre_scores_gemma":[0.114210285,0.00063462823,0.008017737,0.0003944117,0.00020342792,0.00020992865,0.64178807,0.0012679669,0.23327368],"study_design_codex":"not_applicable","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99984014,0.000015798747,0.000008215464,0.000031218224,0.00007694428,0.000027652904],"domain_scores_gemma":[0.9987639,0.000024179073,0.00002739119,0.000056315155,0.0009855968,0.00014258086],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043901522,0.00056850683,0.00044773155,0.0013082045,0.001114496,0.0017607388,0.00071908644,0.00049358123,0.029090324],"category_scores_gemma":[0.0010976179,0.00024359698,0.00016437563,0.001385707,0.00014676986,0.00038787324,0.00045258628,0.0006582274,0.017561426],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014396047,0.000041942698,0.007602432,0.000038107766,0.00001711714,0.000037645266,0.000030559888,0.0027585637,0.00022531764,0.0003625389,0.9582103,0.030531473],"study_design_scores_gemma":[0.00019430956,0.00003213177,0.06903404,0.00011697024,0.00004480279,0.000023244598,0.00035034926,0.039975055,0.0011485615,0.000867258,0.8881561,0.00005719892],"about_ca_topic_score_codex":0.84424233,"about_ca_topic_score_gemma":0.91341245,"teacher_disagreement_score":0.84424233,"about_ca_system_score_codex":0.003135335,"about_ca_system_score_gemma":0.0079014655,"threshold_uncertainty_score":0.31334984},"labels":[],"label_agreement":null},{"id":"W1622315571","doi":"","title":"Multiscale variability patterns of atmospheric temperature in the Canadian Arctic","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Environmental science; Arctic; Meteorology; The arctic; Atmospheric sciences; Atmospheric temperature; Geography; Geology; Oceanography","score_opus":0.013382983891312542,"score_gpt":0.21442095692309585,"score_spread":0.2010379730317833,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1622315571","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99743843,0.00018344297,0.00019624182,0.00019861358,0.0000073323386,0.0000041993517,0.00048153521,0.000016392012,0.0014738392],"genre_scores_gemma":[0.99956244,0.00004710385,0.00008648296,0.000012826721,0.0000032126463,0.0000016900839,0.00013940038,0.0000038009557,0.00014295868],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99969745,0.000021425141,0.000010550285,0.00010658744,0.00005240115,0.000111501744],"domain_scores_gemma":[0.9992188,0.00011791674,0.00010142892,0.000049054044,0.00036457976,0.00014804861],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004741317,0.00019161044,0.00035949837,0.0014511441,0.002204408,0.0015270655,0.00064407743,0.00048964936,0.0012142435],"category_scores_gemma":[0.0014374679,0.00028763813,0.0004978447,0.0019392642,0.0009548472,0.00043634145,0.00074241054,0.00044808534,0.00009579873],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021346087,0.000079413076,0.9573147,0.000041615247,0.00041212732,0.00014102121,0.0023692981,0.01260571,0.0084318835,0.0017046499,0.0022668992,0.014419338],"study_design_scores_gemma":[0.000002080867,0.0000018590723,0.99680054,0.0000031373177,0.000014001138,0.000006282518,0.00030059225,0.002437983,0.00004026896,0.00006566393,0.000316874,0.000010642975],"about_ca_topic_score_codex":0.9800428,"about_ca_topic_score_gemma":0.99021214,"teacher_disagreement_score":0.019957185,"about_ca_system_score_codex":0.010266373,"about_ca_system_score_gemma":0.007433993,"threshold_uncertainty_score":0.07448816},"labels":[],"label_agreement":null},{"id":"W1622362870","doi":"","title":"The Canadian Geo-location Endeavour Using Isotopes and Trace Elements in Hair","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Nutritional Studies and Diet","field":"Medicine","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Isotope; Physical geography; Stable isotope ratio; Environmental science","score_opus":0.01914123716570874,"score_gpt":0.2814077484582975,"score_spread":0.26226651129258877,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1622362870","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8438377,0.013790576,0.015261415,0.0042836135,0.00034730972,0.0010046152,0.047668207,0.00043885352,0.07336775],"genre_scores_gemma":[0.92520684,0.006013162,0.028503101,0.0011298823,0.000063022526,0.00021345861,0.00845453,0.00012515407,0.030290915],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9984896,0.00012516078,0.000040469782,0.00025815668,0.00087184616,0.00021467416],"domain_scores_gemma":[0.9977939,0.00006993493,0.00013009302,0.000076900986,0.0017944502,0.00013467998],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013248287,0.0005256099,0.00034861092,0.0047256346,0.0043313005,0.002137187,0.0010302647,0.00057347585,0.0033456057],"category_scores_gemma":[0.0016780427,0.00031017995,0.0004006216,0.008076507,0.00077803305,0.000439294,0.0010044953,0.000473415,0.00079600635],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025803124,0.0000933615,0.75665903,0.0007623935,0.00020907886,0.0006130168,0.004690216,0.0007613686,0.01971281,0.0022426858,0.02201043,0.1919875],"study_design_scores_gemma":[0.0000127803705,0.00007582565,0.9331245,0.00016927083,0.00007236266,0.00030452773,0.005364283,0.00085706735,0.0034366543,0.00027822235,0.056264177,0.000040400293],"about_ca_topic_score_codex":0.98936546,"about_ca_topic_score_gemma":0.9964508,"teacher_disagreement_score":0.019208586,"about_ca_system_score_codex":0.019208586,"about_ca_system_score_gemma":0.024657188,"threshold_uncertainty_score":0.13936871},"labels":[],"label_agreement":null},{"id":"W1624476656","doi":"","title":"The Cretaceous High Arctic Large Igneous Province","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":5,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Sill; Large igneous province; Arctic; Paleontology; Outcrop; Cretaceous; Lava; Volcano; Canada Basin; Igneous rock; Supercontinent; Oceanic basin; Oceanography; Structural basin; Geochemistry; Magmatism; Tectonics; Craton","score_opus":0.007900199862032085,"score_gpt":0.18222823673117539,"score_spread":0.1743280368691433,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1624476656","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.83897364,0.005876931,0.0024312008,0.00023503891,0.000116263065,0.00010253724,0.0073830164,0.0003391614,0.14454229],"genre_scores_gemma":[0.98359144,0.0012187558,0.0014293866,0.00006042175,0.000024355159,0.00001654385,0.0033777016,0.000037476777,0.010243901],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998841,0.0000035826927,0.000004950565,0.00002763949,0.000045675846,0.000033975793],"domain_scores_gemma":[0.9998642,0.000006507347,0.0000336122,0.000007738277,0.00006474449,0.0000231961],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0000901137,0.00029628797,0.00010537107,0.0021465917,0.0006360815,0.0005541896,0.00015748777,0.00010238641,0.0038395862],"category_scores_gemma":[0.00020399627,0.000054498152,0.00010417816,0.0017087361,0.00033417155,0.00011904084,0.000295932,0.00012718994,0.00069994165],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018370051,0.00004794564,0.6573298,0.00035586933,0.000118670556,0.0026009537,0.0026278084,0.0014448459,0.034568164,0.0070995367,0.011221235,0.28240156],"study_design_scores_gemma":[0.000007436331,0.000013720253,0.93395126,0.00004058696,0.000019064877,0.0008365291,0.00060681097,0.0003163921,0.0015659058,0.00025922657,0.062375452,0.000007618714],"about_ca_topic_score_codex":0.22667067,"about_ca_topic_score_gemma":0.34169105,"teacher_disagreement_score":0.22667067,"about_ca_system_score_codex":0.0010165849,"about_ca_system_score_gemma":0.0015091146,"threshold_uncertainty_score":0.4507026},"labels":[],"label_agreement":null},{"id":"W1624973288","doi":"","title":"Changes in escape fire occurrence rate in Canada's boreal forest under climate change","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto","funders":"","keywords":"Climate change; Taiga; Boreal; Environmental science; Precipitation; Fire protection; Global change; Fire regime; Climatology; General Circulation Model; Geography; Meteorology; Ecosystem; Ecology; Forestry","score_opus":0.010205076157290322,"score_gpt":0.21011642183943285,"score_spread":0.19991134568214253,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1624973288","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99665004,0.000101334546,0.00020225137,0.00007829445,0.000004302155,0.000006417606,0.0009865286,0.000034236815,0.0019365979],"genre_scores_gemma":[0.9983606,0.00007460072,0.00026350998,0.000016184686,0.0000012837686,0.000002950713,0.0007741707,0.0000057656234,0.0005009846],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997327,0.000021360875,0.000008184607,0.000048357644,0.000093936775,0.00009543445],"domain_scores_gemma":[0.9992749,0.00015053886,0.000091586386,0.000027841474,0.00032697877,0.00012812208],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004532041,0.00025335123,0.0002690276,0.0007840277,0.0009305102,0.0010075306,0.0004950943,0.0003056195,0.00075390976],"category_scores_gemma":[0.0015041736,0.00014042387,0.00042216163,0.0010665018,0.00040089627,0.0003020646,0.0002826637,0.0003809101,0.00007203989],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034750885,0.00008642981,0.8832416,0.000039439154,0.00015456435,0.00022650062,0.00041208492,0.10022053,0.0019385956,0.0010757184,0.0020405375,0.010216567],"study_design_scores_gemma":[0.000018383716,0.000033886692,0.92087066,0.000009038627,0.000042109048,0.00008591802,0.0006194663,0.076072425,0.0004921577,0.00019914281,0.0015176095,0.00003917938],"about_ca_topic_score_codex":0.9844551,"about_ca_topic_score_gemma":0.9895783,"teacher_disagreement_score":0.015544891,"about_ca_system_score_codex":0.013575105,"about_ca_system_score_gemma":0.0060058297,"threshold_uncertainty_score":0.09849477},"labels":[],"label_agreement":null},{"id":"W1627342772","doi":"","title":"Sill emplacement in a plateau: examples from the Coast Mountains, British Columbia","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sill; Geology; Gneiss; Pluton; Geochemistry; Crust; Batholith; Magma; Petrology; Geomorphology; Plateau (mathematics); Metamorphic rock; Tectonics; Seismology; Volcano","score_opus":0.008915467311887564,"score_gpt":0.1777637595848703,"score_spread":0.16884829227298276,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1627342772","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9803632,0.0015282154,0.00014705978,0.00024721344,0.000007978868,0.000022866328,0.00070843415,0.000045314555,0.016929828],"genre_scores_gemma":[0.98942137,0.0019358869,0.0005425729,0.00011078012,0.0000060723246,0.000015366903,0.00092949247,0.000028215392,0.0070102285],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997693,0.000012018144,0.000014326638,0.00003646564,0.00008849543,0.00007937272],"domain_scores_gemma":[0.99912137,0.000058924204,0.00010077547,0.00003766645,0.0005306887,0.00015054876],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022199706,0.00026703713,0.00019808747,0.004324261,0.004072744,0.0012594693,0.00058042764,0.00041841978,0.0020521337],"category_scores_gemma":[0.00081315427,0.00016491914,0.00014345959,0.00783791,0.0010404473,0.00044344942,0.0009896018,0.0004418818,0.00024393073],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011417607,0.00005361669,0.8495875,0.00024030182,0.000062591134,0.010676736,0.032393213,0.00035430375,0.007781697,0.00085954054,0.0057420204,0.09213428],"study_design_scores_gemma":[0.0000018191879,0.000008954578,0.9779628,0.00006626224,0.000010042462,0.0008142592,0.0106768515,0.00013998678,0.0002350209,0.00006513728,0.010007926,0.000010971787],"about_ca_topic_score_codex":0.9367969,"about_ca_topic_score_gemma":0.9869948,"teacher_disagreement_score":0.0632031,"about_ca_system_score_codex":0.0064075026,"about_ca_system_score_gemma":0.005369422,"threshold_uncertainty_score":0.1271506},"labels":[],"label_agreement":null},{"id":"W1630100447","doi":"","title":"Intercomparison of Operational Ocean Forecasting Systems in the framework of GODAE","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ocean gyre; Climatology; Meteorology; Environmental science; Scale (ratio); Drifter; Ocean observations; Earth system science; Ocean current; Operability; Coupled model intercomparison project; Computer science; Geography; General Circulation Model; Oceanography; Subtropics; Geology; Climate change; Cartography","score_opus":0.02159773621384069,"score_gpt":0.22846308349650846,"score_spread":0.20686534728266776,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1630100447","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.89500767,0.0011243748,0.07431736,0.0016316648,0.00062117714,0.00059066183,0.006212512,0.0026616135,0.017832933],"genre_scores_gemma":[0.9057768,0.00017039737,0.084826544,0.00016692765,0.0000711427,0.00027473152,0.007921959,0.00016381814,0.0006277213],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9963297,0.0015764404,0.0003084965,0.0005325784,0.0009824955,0.00027032182],"domain_scores_gemma":[0.99478215,0.0010049692,0.0005628801,0.001090307,0.0021244106,0.00043525852],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.009687836,0.0008821797,0.000777752,0.0017154156,0.00066799665,0.0019771531,0.0013546325,0.00088441296,0.0007077887],"category_scores_gemma":[0.010280269,0.00032753777,0.0009185633,0.002190043,0.00060942024,0.0015039322,0.0026858924,0.0010180857,0.00021122253],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023195923,0.0008704351,0.19625978,0.00069100416,0.0016174843,0.00046761098,0.002442247,0.5374069,0.028120447,0.018101893,0.010617159,0.20108543],"study_design_scores_gemma":[0.0006990363,0.0009006681,0.21437487,0.0002293581,0.00040596368,0.000092491675,0.001426278,0.71823937,0.01956795,0.009125051,0.03465018,0.00028871282],"about_ca_topic_score_codex":0.022644958,"about_ca_topic_score_gemma":0.011025164,"teacher_disagreement_score":0.022644958,"about_ca_system_score_codex":0.0011377957,"about_ca_system_score_gemma":0.0025250162,"threshold_uncertainty_score":0.05123484},"labels":[],"label_agreement":null},{"id":"W1638663346","doi":"","title":"Nutrients Seasonal Variability and Carbonate System Dynamics in the Laptev Sea coastal zone","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Continental shelf; Oceanography; Arctic; Geology; Canada Basin; Total organic carbon; The arctic; Environmental science; Ecology","score_opus":0.0038951378186714123,"score_gpt":0.18991590663688884,"score_spread":0.18602076881821744,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1638663346","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99905366,0.000107381275,0.000016305072,0.000022342037,0.0000020175103,8.0429686e-7,0.00023694606,0.000003898693,0.0005566573],"genre_scores_gemma":[0.99940324,0.000045804947,0.000025777252,0.000007306919,0.0000019838517,0.0000014077411,0.00031731717,0.0000018115792,0.00019525828],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999467,0.000007915513,0.0000058744677,0.000015172074,0.000009502178,0.000014816798],"domain_scores_gemma":[0.9998122,0.000022851737,0.000051794726,0.000011235652,0.000051520812,0.00005036075],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013106017,0.00013051927,0.00016247669,0.00078195636,0.00026366685,0.00070457713,0.00020298599,0.0001900732,0.0009869952],"category_scores_gemma":[0.00036117318,0.00010652014,0.00014708872,0.0007365868,0.000258063,0.0002644067,0.00042537658,0.00012600307,0.00021953642],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000110291,0.000022724373,0.9906508,0.000015209835,0.00007043333,0.00015432265,0.000284532,0.00028032545,0.0030065884,0.00012717125,0.00024476642,0.005032856],"study_design_scores_gemma":[0.0000023747364,0.00000999338,0.99899,0.000003598478,0.00000483881,0.000028684879,0.00020699174,0.00031353696,0.0001152254,0.000018507459,0.0003045444,0.0000017807948],"about_ca_topic_score_codex":0.04868588,"about_ca_topic_score_gemma":0.082222074,"teacher_disagreement_score":0.04868588,"about_ca_system_score_codex":0.0006374937,"about_ca_system_score_gemma":0.00035368095,"threshold_uncertainty_score":0.09680498},"labels":[],"label_agreement":null},{"id":"W1640165793","doi":"","title":"Investigating Nitrous Oxide Fluxes along a Harvested Red Spruce Forest Chronosequence","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"St. Francis Xavier University","funders":"","keywords":"Chronosequence; Nitrous oxide; Environmental science; Forestry; Hydrology (agriculture); Geology; Soil science; Ecology; Geography; Soil water; Biology; Geotechnical engineering","score_opus":0.009710318837067194,"score_gpt":0.2203124826642709,"score_spread":0.2106021638272037,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1640165793","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999671,0.000015621026,0.00006790708,0.0000029778723,0.0000012175375,0.0000020406005,0.000056000135,0.0000028532038,0.00018037163],"genre_scores_gemma":[0.99895716,0.000031458647,0.0003426391,0.000008617294,0.0000019376112,0.0000060439834,0.00017296977,0.0000037174236,0.00047536328],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999459,0.0000057651932,0.000002772524,0.000022435002,0.000010538364,0.000012689662],"domain_scores_gemma":[0.99984396,0.000027453283,0.000025343157,0.000010107361,0.000053307456,0.00003974715],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019857763,0.00016476354,0.00022535854,0.00042149393,0.0009280784,0.00053060154,0.00026135996,0.00027826513,0.0004646577],"category_scores_gemma":[0.00018143938,0.00015775002,0.00016714007,0.00034418414,0.00036296117,0.0003441607,0.00025299183,0.00021567945,0.00008849866],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001359704,0.00024421778,0.6913822,0.000056637287,0.00015062353,0.00090109225,0.0024335142,0.001927472,0.29023674,0.00029563927,0.0002407235,0.010771377],"study_design_scores_gemma":[0.000009551184,0.00006751004,0.9942433,0.0000027723363,0.0000224776,0.00008563893,0.00044890918,0.0011628388,0.003392544,0.000022116752,0.00053730595,0.00000490295],"about_ca_topic_score_codex":0.16720125,"about_ca_topic_score_gemma":0.41462785,"teacher_disagreement_score":0.16720125,"about_ca_system_score_codex":0.0006503605,"about_ca_system_score_gemma":0.0007807803,"threshold_uncertainty_score":0.33245605},"labels":[],"label_agreement":null},{"id":"W1640241469","doi":"","title":"The Tropopause Inversion Layer in Baroclinic Life Cycle Experiments","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Baroclinity; Tropopause; Anticyclone; Climatology; Extratropical cyclone; Amplitude; Geology; Inversion (geology); Atmospheric sciences; Physics; Troposphere; Geomorphology","score_opus":0.029789141735249054,"score_gpt":0.28515362186339016,"score_spread":0.2553644801281411,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1640241469","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99801517,0.000023806111,0.0012107475,0.000011066679,0.000005748346,0.000015922298,0.00025382263,0.00001539018,0.00044844745],"genre_scores_gemma":[0.99784017,0.000032464213,0.0015256231,0.000015803938,0.0000025615007,0.00005080202,0.00032733983,0.000008120884,0.0001971022],"study_design_codex":"bench_or_experimental","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985135,0.00006216001,0.000008850265,0.000024170704,0.00002232817,0.000031165295],"domain_scores_gemma":[0.9995096,0.00019302333,0.00011374569,0.000080776554,0.00004260325,0.000060184986],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005670943,0.00017434156,0.0001383117,0.00015604573,0.0001615877,0.00025751023,0.00020840087,0.00018552145,0.00068157894],"category_scores_gemma":[0.001189532,0.0001214023,0.00019555438,0.00012800001,0.00023220478,0.0003468179,0.0002405456,0.00031786496,0.00006280889],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0041642725,0.0022827536,0.13324954,0.00027172288,0.0002540392,0.00025946603,0.0005516278,0.14688335,0.67578125,0.010566507,0.0011863604,0.024549184],"study_design_scores_gemma":[0.000719642,0.006180603,0.2315094,0.000036388574,0.00020575992,0.00009535875,0.00027450395,0.5117518,0.23803891,0.0063099586,0.004777954,0.00009978369],"about_ca_topic_score_codex":0.0023802854,"about_ca_topic_score_gemma":0.002619316,"teacher_disagreement_score":0.0023802854,"about_ca_system_score_codex":0.00029069305,"about_ca_system_score_gemma":0.0001566864,"threshold_uncertainty_score":0.004732907},"labels":[],"label_agreement":null},{"id":"W1640793012","doi":"","title":"Use of RTIGS data streams for validating the performance of the IGS Ultra-Rapid products","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"GNSS positioning and interference","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Global Positioning System; GNSS applications; Computer science; Kalman filter; Satellite; Real-time computing; Precise Point Positioning; Geodesy; Remote sensing; Geography; Telecommunications; Engineering","score_opus":0.05082799997460163,"score_gpt":0.2359328728881648,"score_spread":0.18510487291356317,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1640793012","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.5822304,0.00028267776,0.091991946,0.00071433047,0.00060111994,0.0012962769,0.19888599,0.07616501,0.047832284],"genre_scores_gemma":[0.7014628,0.00015063462,0.09302579,0.00015081228,0.00008088213,0.0007475386,0.19421569,0.004749572,0.005416267],"study_design_codex":"design_other","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99679786,0.0003406115,0.0002841514,0.00055673387,0.0018391258,0.00018157648],"domain_scores_gemma":[0.99464875,0.00085233944,0.00041652622,0.0012802862,0.0026522684,0.00014981123],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.003065038,0.0010053843,0.00048259803,0.0029431065,0.00056653516,0.0014842368,0.0018255207,0.00072269037,0.005935783],"category_scores_gemma":[0.0070235017,0.00023486292,0.000516445,0.0037162069,0.00040165577,0.001562658,0.00084368075,0.0008468146,0.0029157405],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0044490956,0.0020549526,0.13723424,0.000873506,0.0007681942,0.0018257276,0.002166344,0.23652895,0.062906794,0.012259079,0.1468202,0.3921129],"study_design_scores_gemma":[0.001407215,0.0007679576,0.1415752,0.00020437798,0.0002158491,0.00043249287,0.0008885788,0.52958393,0.18833098,0.0048699644,0.1314281,0.0002954204],"about_ca_topic_score_codex":0.020550946,"about_ca_topic_score_gemma":0.009138293,"teacher_disagreement_score":0.020550946,"about_ca_system_score_codex":0.0012813025,"about_ca_system_score_gemma":0.00096098485,"threshold_uncertainty_score":0.04086262},"labels":[],"label_agreement":null},{"id":"W1645083091","doi":"","title":"Interactive lakes in the Canadian Regional Climate Model (CRCM): present state and perspectives","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Ecology and biodiversity studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"State (computer science); Geography; Political science; Computer science","score_opus":0.02017034358721667,"score_gpt":0.22577397506634517,"score_spread":0.2056036314791285,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1645083091","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.76366436,0.011679735,0.035870254,0.01743814,0.0005663182,0.00019224605,0.025199013,0.0025591822,0.14283079],"genre_scores_gemma":[0.96622247,0.0026412478,0.020151068,0.00051934336,0.0001252473,0.00005525119,0.0037106704,0.00034908106,0.0062256902],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9989304,0.00040586677,0.00003757502,0.00012115366,0.0002499855,0.0002550011],"domain_scores_gemma":[0.997993,0.00047411164,0.000107827065,0.00016256995,0.00096523424,0.0002973036],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00325251,0.00052708737,0.0005339353,0.0006995155,0.0021767903,0.0034901225,0.0024466128,0.0007769527,0.004248464],"category_scores_gemma":[0.006336576,0.00036091264,0.0006013411,0.0023998546,0.00094954774,0.0023131894,0.0011580371,0.00084380416,0.00028115403],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00084897026,0.00016480155,0.15337758,0.0003420804,0.0005263831,0.00013272621,0.0008689758,0.6622823,0.0013069035,0.05893795,0.041255638,0.07995569],"study_design_scores_gemma":[0.00024313612,0.00005644252,0.090653524,0.00024702714,0.00046645128,0.000032690452,0.0010407822,0.8000747,0.002030819,0.015546465,0.08930974,0.00029821778],"about_ca_topic_score_codex":0.9811122,"about_ca_topic_score_gemma":0.9894114,"teacher_disagreement_score":0.018887818,"about_ca_system_score_codex":0.018806811,"about_ca_system_score_gemma":0.024865765,"threshold_uncertainty_score":0.13645363},"labels":[],"label_agreement":null},{"id":"W1645841444","doi":"","title":"Fractal analysis and graph theory applied to the spatial and temporal variability of soil water content","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrological Forecasting Using AI","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Fractal dimension; Fractal; Water content; Spatial variability; Fractal analysis; Spatial analysis; Soil science; Mathematics; Environmental science; Remote sensing; Statistics; Geography; Geology","score_opus":0.010937819208632479,"score_gpt":0.20489882193202144,"score_spread":0.19396100272338895,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1645841444","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.15595047,0.0023336937,0.83627206,0.00041866186,0.00009761161,0.00007660563,0.0005618586,0.00034590124,0.0039431774],"genre_scores_gemma":[0.8394293,0.002029702,0.15645024,0.00007126691,0.00015663469,0.00014113972,0.0005558284,0.000066957815,0.0010988445],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99939454,0.0002722214,0.00003994789,0.00011990696,0.00012736415,0.000046061334],"domain_scores_gemma":[0.995031,0.0036774788,0.0005613125,0.00023913455,0.00040276005,0.000088372515],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011556603,0.0003839347,0.0005615357,0.0044940175,0.0003444983,0.0010058216,0.00035415127,0.00041438566,0.00058813853],"category_scores_gemma":[0.005778994,0.0002133954,0.0011060755,0.0029057455,0.0011327757,0.0008901801,0.0004097512,0.000615843,0.000084514264],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014822386,0.00006303558,0.025719209,0.00046781698,0.00037001143,0.00054180453,0.0008076422,0.5069527,0.0120791085,0.20741712,0.0023526794,0.24308063],"study_design_scores_gemma":[0.000009710992,0.000062460786,0.022826979,0.000037067723,0.000043065298,0.00024553048,0.00014646677,0.85060173,0.0011024616,0.12109695,0.0037710355,0.00005649296],"about_ca_topic_score_codex":0.0058895554,"about_ca_topic_score_gemma":0.002661358,"teacher_disagreement_score":0.0058895554,"about_ca_system_score_codex":0.0010865222,"about_ca_system_score_gemma":0.0006415748,"threshold_uncertainty_score":0.011710584},"labels":[],"label_agreement":null},{"id":"W1646641643","doi":"","title":"GlobVolcano pre-operational services for global monitoring active volcanoes","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Humanities; Geography; Political science; Cartography; Art","score_opus":0.007960944948196914,"score_gpt":0.24082597899754074,"score_spread":0.23286503404934383,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1646641643","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.013528264,0.0034150302,0.036173467,0.0034898391,0.0010569423,0.0011823709,0.56590426,0.14044785,0.23480196],"genre_scores_gemma":[0.09623725,0.0022323194,0.07410004,0.0020665058,0.00083064724,0.0020559283,0.74096316,0.030527672,0.050986454],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9988103,0.00015560114,0.00004930192,0.00023964161,0.0005003881,0.00024477116],"domain_scores_gemma":[0.9971902,0.0003010377,0.00021535873,0.00067233626,0.0009854798,0.0006356476],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0026648182,0.0017729553,0.00091615523,0.0040744157,0.00095804397,0.0036574495,0.0026461266,0.0013067762,0.052154597],"category_scores_gemma":[0.0041762507,0.0003566344,0.00073842675,0.004727633,0.00062488107,0.0022960738,0.004062205,0.00109193,0.033857867],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006186923,0.000082611106,0.011528849,0.00044569577,0.0001237976,0.00015029106,0.0004630884,0.0028186578,0.0037110492,0.004169072,0.88015515,0.09573303],"study_design_scores_gemma":[0.00017384044,0.000032112257,0.013034496,0.0002219885,0.000043647564,0.000065005406,0.00033528553,0.0068917475,0.0016019735,0.003169265,0.97437954,0.000051108265],"about_ca_topic_score_codex":0.104862615,"about_ca_topic_score_gemma":0.08578406,"teacher_disagreement_score":0.104862615,"about_ca_system_score_codex":0.0017378738,"about_ca_system_score_gemma":0.004131642,"threshold_uncertainty_score":0.2085045},"labels":[],"label_agreement":null},{"id":"W1647775878","doi":"","title":"Sea-level Fingerprinting, Vertical Crustal Motion from GIA, and Projections of Relative Sea-level Change in the Canadian Arctic","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sea level; Sea level change; Arctic; Geology; Geodesy; Geography; Oceanography","score_opus":0.08512524380602178,"score_gpt":0.24115808350677473,"score_spread":0.15603283970075293,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1647775878","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99568033,0.0005645414,0.00018566698,0.00023355556,0.000008764964,0.000004172044,0.0020066006,0.000021138001,0.0012952179],"genre_scores_gemma":[0.99808586,0.00024900972,0.00026655803,0.000016482563,0.000002363202,0.000001598632,0.0008262939,0.000004194286,0.00054769637],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997892,0.000020642952,0.000012803999,0.00004544298,0.00006386072,0.000068088324],"domain_scores_gemma":[0.9991635,0.000071129405,0.00008167082,0.000024927798,0.0005006166,0.0001581611],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005987301,0.00029296894,0.00019803309,0.0015516578,0.001454984,0.001082491,0.00059146533,0.00032648776,0.0010655787],"category_scores_gemma":[0.001596416,0.00021821563,0.00034475734,0.0025423418,0.00052428915,0.0003452315,0.00038497278,0.00046109987,0.00014695161],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023001381,0.000035801164,0.9671112,0.000042232747,0.00013994271,0.0001071673,0.0007068868,0.0068491967,0.0015590157,0.00052519917,0.0015454964,0.021147987],"study_design_scores_gemma":[0.0000041024855,0.000005589738,0.99518013,0.000012879242,0.000025870264,0.000024328556,0.00044944033,0.0032440168,0.000114924514,0.000051011604,0.00087775255,0.00001000957],"about_ca_topic_score_codex":0.99608237,"about_ca_topic_score_gemma":0.9971951,"teacher_disagreement_score":0.0112426635,"about_ca_system_score_codex":0.0112426635,"about_ca_system_score_gemma":0.014856123,"threshold_uncertainty_score":0.08157158},"labels":[],"label_agreement":null},{"id":"W1648382866","doi":"","title":"Modelling alpha-HCH concentrations in Chinese surface soil","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Groundwater and Isotope Geochemistry","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"China; Resource (disambiguation); Research center; Joint (building); Environmental science; Geography; Environmental protection; Forestry; Engineering; Political science; Civil engineering; Archaeology; Computer science","score_opus":0.008463246904807918,"score_gpt":0.20164072038206238,"score_spread":0.19317747347725445,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1648382866","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9940627,0.000089947665,0.0020672,0.000051832903,0.000012433005,0.000026289166,0.0009972587,0.00013187034,0.0025604174],"genre_scores_gemma":[0.9976356,0.00007504114,0.00072982337,0.000006706714,0.000002999351,0.000022631253,0.00047759118,0.000012934065,0.0010367363],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99986875,0.000012429278,0.0000073043857,0.000052473544,0.00002508268,0.000034062054],"domain_scores_gemma":[0.99977475,0.0000937484,0.000019106052,0.000014845209,0.00007823849,0.000019411815],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021619747,0.00085636525,0.00055156415,0.0004940187,0.00058528467,0.0009833444,0.0011449782,0.0012297385,0.0011944968],"category_scores_gemma":[0.00049572776,0.0003607372,0.0007145774,0.0010561127,0.0004582144,0.00063203985,0.000344464,0.00031015926,0.00019602408],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000098772245,0.00004177923,0.01356139,0.00006388946,0.000034104352,0.0001337045,0.00006584704,0.9775038,0.0050051613,0.00021842078,0.00016553058,0.0031076556],"study_design_scores_gemma":[0.000040855066,0.000039800754,0.0053922804,0.0000027837139,0.000028266975,0.000011929664,0.00004696124,0.99060553,0.0034818517,0.00010999774,0.0002230593,0.00001665825],"about_ca_topic_score_codex":0.2834551,"about_ca_topic_score_gemma":0.11307704,"teacher_disagreement_score":0.2834551,"about_ca_system_score_codex":0.0027234373,"about_ca_system_score_gemma":0.0024184794,"threshold_uncertainty_score":0.56361043},"labels":[],"label_agreement":null},{"id":"W1649146416","doi":"","title":"The Canadian CoReH2O Snow and Ice Experiment 2009-2010","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow; Geography; Climate change; Physical geography; Research centre; Library science; Meteorology; Oceanography; Geology","score_opus":0.01639087669010266,"score_gpt":0.2092042587703142,"score_spread":0.19281338208021154,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1649146416","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.48956224,0.0012286394,0.0019338118,0.0016470546,0.0005255244,0.0014362538,0.48555604,0.00041135115,0.01769909],"genre_scores_gemma":[0.50893056,0.0009599343,0.00403823,0.0014793909,0.00014837024,0.0017514996,0.45737544,0.00021578181,0.025100727],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.9991534,0.000087089866,0.000025305566,0.0001781618,0.0003690039,0.00018714194],"domain_scores_gemma":[0.997552,0.000086086315,0.00022001976,0.0002705794,0.0012716468,0.00059969234],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017339744,0.0010694325,0.00091639446,0.0005869455,0.0029580588,0.00080793654,0.001683134,0.00056091254,0.0026021441],"category_scores_gemma":[0.0014182423,0.00050646573,0.00056506693,0.0015895942,0.00079267245,0.00065777026,0.0012160097,0.0008082141,0.0009039061],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.016124394,0.0021279973,0.38315314,0.000867327,0.0021934954,0.00030887904,0.0017732898,0.009787129,0.012089379,0.004009191,0.51484734,0.05271845],"study_design_scores_gemma":[0.00095075683,0.00014608471,0.9318943,0.000063657324,0.00020752846,0.000024436404,0.0003612274,0.0014031235,0.0014233295,0.00032085198,0.06312823,0.00007635258],"about_ca_topic_score_codex":0.98843634,"about_ca_topic_score_gemma":0.9969048,"teacher_disagreement_score":0.02151077,"about_ca_system_score_codex":0.02151077,"about_ca_system_score_gemma":0.03358298,"threshold_uncertainty_score":0.15607232},"labels":[],"label_agreement":null},{"id":"W1653246598","doi":"","title":"New developments on the homogenization of Canadian daily temperature data","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Homogenization (climate); Environmental science; Regression analysis; Air temperature; Climate change; Climatology; Relocation; Regression; Maximum temperature; Linear regression; Meteorology; Mathematics; Statistics; Econometrics; Atmospheric sciences; Geography; Computer science; Geology","score_opus":0.02934401657661064,"score_gpt":0.22293115444800235,"score_spread":0.1935871378713917,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1653246598","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.056598738,0.009418719,0.8835093,0.0065865414,0.0009390449,0.00055803667,0.0077915704,0.0031490324,0.031449005],"genre_scores_gemma":[0.23563403,0.008951573,0.718767,0.0015242487,0.0017624659,0.00043378843,0.011054719,0.0023528293,0.0195193],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9942344,0.0010359323,0.00039240572,0.0015616808,0.0023898457,0.0003857499],"domain_scores_gemma":[0.9830188,0.0030306117,0.0007103281,0.005584564,0.0071566687,0.00049883727],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.009073133,0.000751754,0.0012009667,0.0047605466,0.001797165,0.0032906078,0.0027271786,0.0004737818,0.0039645797],"category_scores_gemma":[0.020772178,0.0007799656,0.0013811213,0.008872949,0.0017580789,0.0021088747,0.0025041027,0.002272988,0.0007409465],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001880317,0.00007452769,0.040206745,0.0004174758,0.00048805488,0.00015283501,0.0015594189,0.027475446,0.010630147,0.111209765,0.03133759,0.77625996],"study_design_scores_gemma":[0.000087057524,0.00008856276,0.19929117,0.0004272195,0.00041235835,0.00041355676,0.0010448722,0.17833179,0.00777502,0.053804014,0.557968,0.00035635423],"about_ca_topic_score_codex":0.83187497,"about_ca_topic_score_gemma":0.81776,"teacher_disagreement_score":0.16812503,"about_ca_system_score_codex":0.009531943,"about_ca_system_score_gemma":0.010106154,"threshold_uncertainty_score":0.33823025},"labels":[],"label_agreement":null},{"id":"W1654095714","doi":"","title":"Cathodoluminescence of diamond as an indicator of its metamorphic history","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Diamond and Carbon-based Materials Research","field":"Materials Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Metamorphic rock; Geology; Diamond; Metamorphism; Geochemistry; Cathodoluminescence; Placer mining; Weathering; Volcanic rock; Volcano; Earth science; Metallurgy; Materials science","score_opus":0.028195002216826,"score_gpt":0.2848168533291975,"score_spread":0.25662185111237146,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1654095714","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97074676,0.0015074528,0.018177213,0.00027079397,0.00008045523,0.000026044647,0.0007677915,0.0001612642,0.008262361],"genre_scores_gemma":[0.9874193,0.00056620006,0.0069349795,0.0001114509,0.000024827394,0.000036508907,0.00051257585,0.000030315132,0.004363781],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99990404,0.00001622228,0.0000025271584,0.000028107992,0.000024374762,0.00002476444],"domain_scores_gemma":[0.9997402,0.000117630545,0.000038212656,0.000016456373,0.000050796094,0.000036682017],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018086229,0.00018174395,0.00008299094,0.00034980776,0.00016602344,0.00024977847,0.00027445285,0.00040483268,0.0032416773],"category_scores_gemma":[0.00034124264,0.000094116,0.00008851875,0.00027432202,0.00031074023,0.00024214163,0.00020296662,0.00053801126,0.00033402088],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011713872,0.000018082852,0.0015167807,0.00004610164,0.0000052725827,0.0000998678,0.00007867247,0.000034607092,0.99416924,0.00029647475,0.00018347245,0.0034343936],"study_design_scores_gemma":[0.000021258444,0.00043221083,0.022451254,0.000015861428,0.000014556432,0.0009200264,0.00029661736,0.0019907777,0.9693999,0.00047151124,0.0039668065,0.000019217807],"about_ca_topic_score_codex":0.00048470372,"about_ca_topic_score_gemma":0.00056966353,"teacher_disagreement_score":0.0032416773,"about_ca_system_score_codex":0.00015872624,"about_ca_system_score_gemma":0.0001244917,"threshold_uncertainty_score":0.010844529},"labels":[],"label_agreement":null},{"id":"W1654279091","doi":"","title":"CryoSat-2 validation on land and sea ice in the western Ross Sea Region, Antarctica, based on near-surface remote sensing methods","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Ice caps; Geospatial analysis; Oceanography; Physical geography; Remote sensing; Geology; Meteorology; Glacier","score_opus":0.020308152315146134,"score_gpt":0.2766434137866812,"score_spread":0.25633526147153507,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1654279091","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99079317,0.00033235564,0.0018872774,0.00008735049,0.00005269745,0.000023912977,0.0052363956,0.00022536142,0.0013614963],"genre_scores_gemma":[0.9645292,0.00020337921,0.0070452844,0.0000959194,0.000033391614,0.000042623076,0.02727963,0.00006860937,0.0007021279],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99924374,0.00023178046,0.00006235419,0.00021849768,0.00016905846,0.00007473546],"domain_scores_gemma":[0.9986217,0.00043477167,0.00014659003,0.0002897231,0.00040019787,0.00010700533],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0029012233,0.0010825405,0.00053394726,0.00092797406,0.0005512134,0.000901711,0.000669436,0.00068978703,0.0005883738],"category_scores_gemma":[0.0033226886,0.0002742671,0.0008038082,0.0006710194,0.0005062343,0.00081800413,0.00062179985,0.00038526504,0.00047586407],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019618198,0.00095591176,0.51461196,0.00051165564,0.0018740026,0.00031108106,0.0007032284,0.3295391,0.042638186,0.0010663071,0.011279214,0.09454755],"study_design_scores_gemma":[0.00032437593,0.0002315974,0.5882298,0.00014620727,0.00021907197,0.000098440905,0.00038488646,0.39697057,0.008734482,0.00041975122,0.0041746474,0.00006622688],"about_ca_topic_score_codex":0.06763645,"about_ca_topic_score_gemma":0.09644189,"teacher_disagreement_score":0.06763645,"about_ca_system_score_codex":0.00061197806,"about_ca_system_score_gemma":0.0010481627,"threshold_uncertainty_score":0.13448554},"labels":[],"label_agreement":null},{"id":"W1656607429","doi":"","title":"Investigation of Hydraulic Conductivity Coefficient for different Soils","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Unsaturated Flow","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Loam; Hydraulic conductivity; Permeameter; Soil water; Soil texture; Soil science; Soil gradation; Environmental science; Geotechnical engineering; Hydrology (agriculture); Geology","score_opus":0.022035126583031018,"score_gpt":0.21983357593280753,"score_spread":0.1977984493497765,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1656607429","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9960096,0.0001421962,0.0016858581,0.000020786856,0.0000039534857,0.0000045949273,0.0002827731,0.000037686004,0.001812615],"genre_scores_gemma":[0.9986884,0.00007337248,0.00044951704,0.0000048928023,6.760872e-7,0.000005086914,0.00024405326,0.000004572718,0.0005293149],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99989843,0.000009840616,0.0000048556603,0.00002926032,0.00003380111,0.00002367174],"domain_scores_gemma":[0.99978846,0.00009500144,0.00002494213,0.000010052987,0.00006800598,0.00001351676],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011623246,0.0001216293,0.00011225561,0.00055490603,0.00011116706,0.00017663109,0.00013891813,0.00014081204,0.0009368052],"category_scores_gemma":[0.00041219627,0.00006769048,0.00009589506,0.0004971642,0.00014893927,0.00023273451,0.00009385368,0.00014913199,0.00013804306],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005093366,0.000077580204,0.0768228,0.00028357373,0.00006403973,0.0004795259,0.0010062947,0.010593613,0.85796696,0.0017070299,0.0011471983,0.04934201],"study_design_scores_gemma":[0.000048504033,0.00066485716,0.37540463,0.000041716587,0.000096020965,0.0010219775,0.0012396169,0.033313077,0.5768409,0.0012147573,0.010024277,0.00008974497],"about_ca_topic_score_codex":0.0037235974,"about_ca_topic_score_gemma":0.0053140926,"teacher_disagreement_score":0.0037235974,"about_ca_system_score_codex":0.0002537823,"about_ca_system_score_gemma":0.00018370347,"threshold_uncertainty_score":0.0074038506},"labels":[],"label_agreement":null},{"id":"W1658274591","doi":"","title":"Comparing the Long Term Hydrological Performance of Reconstructed and","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Term (time); Environmental science","score_opus":0.012237616932110389,"score_gpt":0.20512636133077947,"score_spread":0.19288874439866907,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1658274591","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.996824,0.00007349158,0.0013506932,0.00005743416,0.000009473507,0.000004312865,0.00065018376,0.00004887086,0.0009815108],"genre_scores_gemma":[0.99673367,0.000060890925,0.0009510126,0.000014035278,0.0000074651707,0.0000055012965,0.0017769347,0.00002162254,0.00042885597],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996208,0.00011293402,0.000033656295,0.00010998973,0.00008145969,0.000041167084],"domain_scores_gemma":[0.99787986,0.00073734875,0.00027640403,0.00039717203,0.00063271465,0.00007645006],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012725717,0.0001941291,0.00026811066,0.00056574086,0.00032345898,0.0015885744,0.0005449779,0.0006534262,0.0010270908],"category_scores_gemma":[0.0065909396,0.00018155653,0.00036653923,0.0009096884,0.0006277954,0.00156285,0.00040363043,0.00040068402,0.0002524386],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013912993,0.0003388871,0.7536171,0.00016701364,0.0011654379,0.00041659325,0.0033667216,0.16630709,0.018748207,0.004624254,0.0015714457,0.048285957],"study_design_scores_gemma":[0.00007860128,0.00028692014,0.8282616,0.000051307165,0.0003784887,0.0003445808,0.002299862,0.1540582,0.008828359,0.0013686864,0.0039345757,0.00010878034],"about_ca_topic_score_codex":0.053530954,"about_ca_topic_score_gemma":0.07670913,"teacher_disagreement_score":0.053530954,"about_ca_system_score_codex":0.0010626207,"about_ca_system_score_gemma":0.00075580267,"threshold_uncertainty_score":0.106438756},"labels":[],"label_agreement":null},{"id":"W1660040258","doi":"","title":"A Synoptic Weather Typing Approach and Its application to Assess Climate Change Impacts on Extreme Weather Events at Local Scale in South-Central Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Downscaling; Climate change; Climatology; Extreme weather; Environmental science; Scale (ratio); Meteorology; Climate model; Geography; Precipitation; Cartography; Ecology","score_opus":0.03650439321227017,"score_gpt":0.23993039758493623,"score_spread":0.20342600437266606,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1660040258","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9860212,0.00006951134,0.008644492,0.00008531234,0.000010035108,0.00012315359,0.0014174343,0.00011646932,0.0035123832],"genre_scores_gemma":[0.99182945,0.00008226961,0.006729113,0.0000069500006,0.0000035079627,0.00003526023,0.00075045304,0.000009775307,0.00055316946],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999684,0.00007254144,0.000026787173,0.000056841698,0.0000970449,0.00006283851],"domain_scores_gemma":[0.9992625,0.000115666226,0.00010631331,0.000052603715,0.0003798696,0.00008304378],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007972388,0.00027352394,0.00021127248,0.0016362235,0.0008066768,0.00096020143,0.00052390527,0.00014987512,0.0010156817],"category_scores_gemma":[0.0016473471,0.00016260348,0.00030525608,0.0029163004,0.00035517712,0.00036710085,0.0005067567,0.00024047452,0.000042008174],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024801202,0.00016273084,0.622782,0.0000888715,0.00018023695,0.00032180786,0.0011217576,0.31136563,0.0025454524,0.0044500255,0.0017782405,0.054955278],"study_design_scores_gemma":[0.000033819288,0.00004645724,0.4118047,0.000014312245,0.00004555603,0.000036882193,0.0017158078,0.5828562,0.0008037973,0.0008799152,0.0017261346,0.000036439083],"about_ca_topic_score_codex":0.93996334,"about_ca_topic_score_gemma":0.9390777,"teacher_disagreement_score":0.06003666,"about_ca_system_score_codex":0.0063149687,"about_ca_system_score_gemma":0.008149088,"threshold_uncertainty_score":0.12078041},"labels":[],"label_agreement":null},{"id":"W1663043636","doi":"","title":"Linear interference effects on tropical-extratropical teleconnections","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Satellite Communication Systems","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Extratropical cyclone; Teleconnection; Interference (communication); Climatology; Environmental science; Meteorology; Atmospheric sciences; Geography; Precipitation; Geology; Telecommunications; Computer science","score_opus":0.013461124598865906,"score_gpt":0.24305809525445096,"score_spread":0.22959697065558504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1663043636","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9578093,0.00053519907,0.008330706,0.0001491274,0.000021109776,0.000016220967,0.00028355196,0.0002246313,0.032630015],"genre_scores_gemma":[0.99770457,0.00019818742,0.00039609824,0.000021075353,0.000010069876,0.000006840952,0.00009142528,0.00003297754,0.0015388181],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99972564,0.000059617192,0.0000074103323,0.000030435576,0.000051438932,0.00012537299],"domain_scores_gemma":[0.9980914,0.0012864224,0.0001434767,0.0000765031,0.00030658464,0.00009551832],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023215277,0.0005378664,0.00026448083,0.0005242789,0.0007784835,0.0006953752,0.00038733488,0.00031649997,0.0075775925],"category_scores_gemma":[0.0026138618,0.00029193034,0.00025489216,0.0012393343,0.0005272811,0.0005221768,0.0005542947,0.00036018842,0.00067654176],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024823074,0.00018117433,0.1160017,0.0006384438,0.00037648686,0.004595691,0.0018155683,0.5974804,0.17115779,0.031448532,0.0029131644,0.070908815],"study_design_scores_gemma":[0.0002091154,0.0003598812,0.23985358,0.00009460206,0.0006623289,0.0013775128,0.0014079805,0.68831694,0.05534864,0.00836055,0.0038395422,0.00016933132],"about_ca_topic_score_codex":0.016727865,"about_ca_topic_score_gemma":0.021030588,"teacher_disagreement_score":0.016727865,"about_ca_system_score_codex":0.0012084692,"about_ca_system_score_gemma":0.0006601259,"threshold_uncertainty_score":0.033261},"labels":[],"label_agreement":null},{"id":"W1663665671","doi":"","title":"Thermal and rheological properties of the NW sector of the Adria microplate between Alps and Apennines (Northern Italy)","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Seismic Waves and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Humanities; Geography; Geology; Archaeology; Art","score_opus":0.012661590465594676,"score_gpt":0.1688748239199853,"score_spread":0.15621323345439062,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1663665671","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99782133,0.00015286834,0.00006897936,0.000023146742,0.000002356572,0.000002787652,0.00019619399,0.000008930019,0.0017234023],"genre_scores_gemma":[0.99949026,0.000047676338,0.00005479491,0.000004812362,0.0000049997907,0.0000026099763,0.00015389596,0.0000025806273,0.00023834512],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999113,0.000013462481,0.000008989884,0.000037098427,0.000013464369,0.000015682943],"domain_scores_gemma":[0.9998323,0.00003348443,0.000052787633,0.000015467187,0.000042277978,0.00002366661],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001750829,0.0002680511,0.00021725506,0.0013202884,0.00036331083,0.0008957787,0.00020845214,0.00031483063,0.0016067136],"category_scores_gemma":[0.0003810125,0.00016363843,0.00014723073,0.001072031,0.0004704637,0.00043860465,0.0003941427,0.00013111203,0.0003958581],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00043764495,0.00011180633,0.9539657,0.00009778183,0.0001402395,0.00044065385,0.0019205484,0.0026235103,0.012228193,0.00034576977,0.0005206022,0.027167497],"study_design_scores_gemma":[0.0000046775635,0.00001381858,0.99839777,0.0000062134764,0.0000090289395,0.0000639941,0.0002701665,0.0006927748,0.0001112796,0.000024675946,0.00040233426,0.000003314761],"about_ca_topic_score_codex":0.015666736,"about_ca_topic_score_gemma":0.015974421,"teacher_disagreement_score":0.015666736,"about_ca_system_score_codex":0.00041579988,"about_ca_system_score_gemma":0.0001711929,"threshold_uncertainty_score":0.031151056},"labels":[],"label_agreement":null},{"id":"W1665414894","doi":"","title":"A comparison of three methods for estimating pro-glacial suspended sediment loads: an example from Castle Creek, Cariboo Mountains, British Columbia","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Glacial period; Sediment; Hydrology (agriculture); Turbidity; Geology; Physical geography; Geomorphology; Oceanography; Geography; Geotechnical engineering","score_opus":0.1076919493806098,"score_gpt":0.3501967937756396,"score_spread":0.2425048443950298,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1665414894","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.986953,0.0011925576,0.0046379953,0.00008613874,0.000009620579,0.00009454736,0.00062870374,0.00006159375,0.006335931],"genre_scores_gemma":[0.9812734,0.00085064454,0.012732209,0.000064253625,0.0000060506313,0.0000897908,0.00094366283,0.000022025723,0.0040179403],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99936885,0.00011985449,0.000046895067,0.00010064924,0.00029828408,0.00006544339],"domain_scores_gemma":[0.9984682,0.00025200064,0.00011175211,0.00008057036,0.001007868,0.00007948646],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00078169705,0.00051187497,0.00028544472,0.002491598,0.0016978977,0.0012548646,0.00051461876,0.0003071671,0.0005616821],"category_scores_gemma":[0.0019367482,0.0002087702,0.00016559228,0.0028525505,0.00031669918,0.00023065862,0.00056836597,0.00029399528,0.00014488821],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019627177,0.00007095799,0.90151876,0.00015386136,0.00018053436,0.00019238504,0.0025210388,0.0019056951,0.008677236,0.00018989161,0.00068888016,0.08370447],"study_design_scores_gemma":[0.000019187031,0.000045647954,0.9889143,0.000053192056,0.00008651074,0.00012988855,0.0015294065,0.0037583911,0.002205355,0.000044964854,0.0031866801,0.000026532274],"about_ca_topic_score_codex":0.8782075,"about_ca_topic_score_gemma":0.97566664,"teacher_disagreement_score":0.121792495,"about_ca_system_score_codex":0.0027994225,"about_ca_system_score_gemma":0.0032057117,"threshold_uncertainty_score":0.2450195},"labels":[],"label_agreement":null},{"id":"W1666933210","doi":"","title":"Dirt, dates and DNA: Single-grain OSL and radiocarbon chronologies of perennially-frozen sediments, and their implications for sedimentary ancient DNA studies","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Archaeology and ancient environmental studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Radiocarbon dating; Archaeology; Geochronology; Sedimentary rock; Geology; History; Geography; Paleontology","score_opus":0.02312498220679577,"score_gpt":0.23252929032818856,"score_spread":0.2094043081213928,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1666933210","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9488372,0.011859106,0.02645637,0.00036376543,0.00038956557,0.000044049255,0.007075267,0.00013322024,0.004841428],"genre_scores_gemma":[0.96669346,0.002319387,0.023494149,0.00008479313,0.00011727549,0.000040965402,0.0038167103,0.00013903613,0.0032941203],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99933904,0.00019583353,0.00009496408,0.0001569902,0.00018019228,0.00003289435],"domain_scores_gemma":[0.9957747,0.0014049094,0.0016846843,0.0004248747,0.0005521336,0.00015881003],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0034669093,0.0002824498,0.00023977783,0.0046697836,0.00048497273,0.0020632108,0.0004819197,0.00034478842,0.0013750847],"category_scores_gemma":[0.00884802,0.00041582208,0.00013700068,0.00430877,0.00082738075,0.0013495487,0.00057058485,0.00047161023,0.00052379817],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001341712,0.00003458463,0.6286116,0.0005732496,0.00023663286,0.00026442888,0.004664869,0.0016694682,0.014398052,0.006665692,0.0033030454,0.33823657],"study_design_scores_gemma":[0.000028668988,0.00017905257,0.93107677,0.00029910918,0.00013264982,0.00056016794,0.0028340218,0.004859962,0.0073977266,0.005001191,0.04755379,0.0000768228],"about_ca_topic_score_codex":0.007912182,"about_ca_topic_score_gemma":0.03646829,"teacher_disagreement_score":0.007912182,"about_ca_system_score_codex":0.0008421772,"about_ca_system_score_gemma":0.0003887463,"threshold_uncertainty_score":0.018334985},"labels":[],"label_agreement":null},{"id":"W1667378524","doi":"","title":"Reconstruction of paleoenvironmental changes from Pingualuit Crater Lake sediments during glacial-interglacial cycles MIS 1 to MIS 8: a long-term terrestrial record from the Canadian Arctic","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":4,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Interglacial; Glacial period; Geology; Arctic; Archaeology; Physical geography; Oceanography; Geography; Geomorphology","score_opus":0.015984915946865543,"score_gpt":0.23046767314184866,"score_spread":0.2144827571949831,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1667378524","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99747735,0.0003022626,0.000105765816,0.00006794838,0.0000029478324,0.0000044789986,0.0013842691,0.000012602987,0.0006423804],"genre_scores_gemma":[0.99765515,0.00021267174,0.0003068715,0.0000121986195,0.0000023314246,0.000004454839,0.0014205463,0.000006460967,0.00037916814],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998739,0.000008347236,0.00000966266,0.000033444234,0.000035348923,0.000039295224],"domain_scores_gemma":[0.9995999,0.000026818607,0.00005981019,0.000019837511,0.00022393782,0.00006980754],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026608055,0.00028303775,0.00024986733,0.0019088319,0.0011188452,0.0010448104,0.00043719538,0.00034970738,0.0007934364],"category_scores_gemma":[0.0007331148,0.00025808119,0.00029191337,0.0027736365,0.00040924098,0.00029646966,0.000580706,0.00025736666,0.00019252852],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017085577,0.000026782673,0.9667245,0.00005685936,0.00018115834,0.00031665975,0.001416931,0.0027623572,0.005209169,0.00029422346,0.0009803214,0.021860216],"study_design_scores_gemma":[0.0000030276817,0.0000052591477,0.99763095,0.00001283531,0.000018056515,0.000031307893,0.00033034518,0.0008597831,0.00012660086,0.000017722714,0.00095767295,0.000006276992],"about_ca_topic_score_codex":0.9486062,"about_ca_topic_score_gemma":0.9748122,"teacher_disagreement_score":0.051393807,"about_ca_system_score_codex":0.0059523443,"about_ca_system_score_gemma":0.00485395,"threshold_uncertainty_score":0.1033929},"labels":[],"label_agreement":null},{"id":"W1668118136","doi":"","title":"Ionospheric Scintillation Observed with the Canadian High-Arctic Ionospheric Network","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Ionosphere and magnetosphere dynamics","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ionosphere; Space research; Arctic; The arctic; Scintillation; Meteorology; Library science; Geography; Telecommunications; Oceanography; Engineering; Geology; Computer science","score_opus":0.006851379105812915,"score_gpt":0.18614292282106226,"score_spread":0.17929154371524936,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1668118136","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9853238,0.00027792554,0.00028072792,0.00018153751,0.000031617572,0.0000135974715,0.0042105275,0.000085868945,0.009594492],"genre_scores_gemma":[0.99754936,0.00011282119,0.00013208688,0.000016612237,0.000008719331,0.0000027354606,0.0015750236,0.000009329032,0.0005933503],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999749,0.000014315079,0.000007031881,0.000030480847,0.00012679429,0.00007239743],"domain_scores_gemma":[0.9989988,0.00005867738,0.00007635906,0.00003990413,0.000691222,0.00013508975],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028702916,0.000281937,0.00020069585,0.0008636268,0.0013714901,0.0006898637,0.00030927281,0.00023326436,0.0007892245],"category_scores_gemma":[0.0010849615,0.00010296447,0.00009540627,0.0024806939,0.00025233295,0.00019251365,0.00047796094,0.0003657997,0.00015222785],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0013274797,0.00010232208,0.9012412,0.00009608585,0.00019117193,0.0006494587,0.0012232903,0.013381235,0.01619921,0.0014442703,0.025135465,0.039008837],"study_design_scores_gemma":[0.00003154977,0.00004044481,0.98235047,0.000019587344,0.000041288247,0.00012381542,0.00045647146,0.0061134817,0.0023043398,0.00010310487,0.008388596,0.000026915832],"about_ca_topic_score_codex":0.9126705,"about_ca_topic_score_gemma":0.95894104,"teacher_disagreement_score":0.08732951,"about_ca_system_score_codex":0.004357911,"about_ca_system_score_gemma":0.0055357264,"threshold_uncertainty_score":0.17568755},"labels":[],"label_agreement":null},{"id":"W1668804495","doi":"","title":"The convective mantle and the not so passive margins","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"High-pressure geophysics and materials","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"National laboratory; Meteorology; Library science; Geography; Engineering physics; Engineering","score_opus":0.0034327834540909172,"score_gpt":0.17710490696751413,"score_spread":0.1736721235134232,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1668804495","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8019324,0.020293362,0.002551388,0.016701153,0.000346948,0.000009503162,0.00021469644,0.000036566063,0.15791397],"genre_scores_gemma":[0.994334,0.0008089067,0.00009770145,0.0001849786,0.00004727774,7.609707e-7,0.0000121767625,0.0000037000852,0.004510521],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.99994373,0.000008769949,0.0000014920869,0.0000118122025,0.000011209707,0.00002290089],"domain_scores_gemma":[0.9998247,0.000031193846,0.00004407078,0.00001926028,0.00003785013,0.000042821684],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021524374,0.00009030416,0.0000764584,0.00022657108,0.0010544595,0.0017151346,0.0002797897,0.0003126486,0.0026212141],"category_scores_gemma":[0.0007174983,0.000064256885,0.00006468781,0.0002606326,0.0021113036,0.00089710427,0.0007593648,0.00038104987,0.00011586011],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040619285,0.000029113176,0.07229956,0.00013675953,0.000052299565,0.0004921106,0.008133692,0.0014767889,0.01320639,0.74803674,0.009677918,0.14605244],"study_design_scores_gemma":[0.000056671994,0.000095523654,0.39008722,0.0004333227,0.00006838138,0.0005749052,0.008501768,0.001301695,0.002686161,0.22913319,0.36701217,0.000048979524],"about_ca_topic_score_codex":0.107454166,"about_ca_topic_score_gemma":0.19877645,"teacher_disagreement_score":0.107454166,"about_ca_system_score_codex":0.0022362897,"about_ca_system_score_gemma":0.0015062841,"threshold_uncertainty_score":0.21365744},"labels":[],"label_agreement":null},{"id":"W1671649087","doi":"","title":"Cassini RADAR at Titan : Latest Results through T65","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Astro and Planetary Science","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Terrain; Titan (rocket family); Radar; Remote sensing; Geology; Radar imaging; Meteorology; Astrobiology; Geography; Computer science; Cartography; Telecommunications; Physics","score_opus":0.008896665914386235,"score_gpt":0.22395094760992496,"score_spread":0.21505428169553872,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1671649087","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.77881485,0.054266013,0.010869035,0.004987519,0.0010312041,0.0006188319,0.020604154,0.0010338766,0.1277745],"genre_scores_gemma":[0.931824,0.012781056,0.020952286,0.0014680863,0.0011809046,0.000106299354,0.020392524,0.00020039406,0.011094276],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9989017,0.000096968026,0.000054016662,0.00022228975,0.00050019583,0.00022464934],"domain_scores_gemma":[0.99788624,0.00013781928,0.00018245906,0.0001818212,0.0010905216,0.0005211036],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0028766377,0.0008556736,0.00059504766,0.0018558396,0.00071171543,0.0019108943,0.00066779926,0.0007559446,0.0016139131],"category_scores_gemma":[0.0014267775,0.00038579485,0.0006327119,0.001429339,0.00053563656,0.0011075167,0.001013373,0.0009887918,0.0010079627],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0032603268,0.001544772,0.3999241,0.0033176264,0.0014574027,0.0021633208,0.0042835553,0.010510136,0.13165203,0.0050209193,0.07463905,0.36222678],"study_design_scores_gemma":[0.0001778437,0.0017058918,0.8210822,0.00069077814,0.0008983406,0.0007389932,0.00090181874,0.0041779424,0.030203361,0.0008655028,0.13840567,0.00015179027],"about_ca_topic_score_codex":0.05128946,"about_ca_topic_score_gemma":0.06430162,"teacher_disagreement_score":0.05128946,"about_ca_system_score_codex":0.0012927307,"about_ca_system_score_gemma":0.001502661,"threshold_uncertainty_score":0.10198188},"labels":[],"label_agreement":null},{"id":"W1677720269","doi":"","title":"Volcanic Plume Chemistry: Models, Observations and Impacts","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and coastal ecosystems","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Norwegian; Queen (butterfly); Geological survey; Volcano; Geography; Archaeology; Geology; Ecology","score_opus":0.015374018644998816,"score_gpt":0.17916977908263793,"score_spread":0.1637957604376391,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1677720269","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96533936,0.005619875,0.0059299804,0.0021148454,0.000118557924,0.000065173255,0.007845417,0.00072772166,0.012239185],"genre_scores_gemma":[0.99383116,0.0020754533,0.0014162881,0.000051825973,0.000052794046,0.000024011339,0.0017289219,0.00003834645,0.00078106695],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985826,0.000045911846,0.0000103912225,0.000038289727,0.000031919888,0.00001525242],"domain_scores_gemma":[0.99930656,0.00039489614,0.000087143926,0.000057305926,0.00010451289,0.00004959178],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00067299395,0.0008495925,0.00043666773,0.00045470955,0.0002446255,0.0011172987,0.00092339475,0.001184276,0.0010960695],"category_scores_gemma":[0.0014965793,0.0003496852,0.0005217984,0.0008810905,0.00034298105,0.0012048234,0.00036653277,0.00042272403,0.00027082209],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027755214,0.00017636335,0.054821763,0.00016357722,0.00013977099,0.00009937122,0.000050221908,0.9194721,0.0014133813,0.002053938,0.003666039,0.017665938],"study_design_scores_gemma":[0.0001806953,0.000086328095,0.021549167,0.000041465813,0.000096659656,0.00006185899,0.000058502603,0.9698877,0.0015052356,0.0025214397,0.0039668344,0.000044086948],"about_ca_topic_score_codex":0.06537734,"about_ca_topic_score_gemma":0.034100246,"teacher_disagreement_score":0.06537734,"about_ca_system_score_codex":0.0014990282,"about_ca_system_score_gemma":0.0005869866,"threshold_uncertainty_score":0.12999362},"labels":[],"label_agreement":null},{"id":"W1679393868","doi":"","title":"Rockslides in a changing climate: evaluating rainfall and temperature as triggering factors in southwestern Norway","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Queen's University","funders":"","keywords":"Rockslide; Landslide; Climate change; Snow; Rockfall; Physical geography; Snowmelt; Permafrost; Climatology; Environmental science; Geology; Geography; Oceanography; Geomorphology","score_opus":0.009121635524325196,"score_gpt":0.25200428892562393,"score_spread":0.24288265340129875,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W1679393868","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99960893,0.00007060471,0.000039689632,0.000012027074,0.0000031834493,0.000005798733,0.00014449503,9.926018e-7,0.000114327995],"genre_scores_gemma":[0.9993431,0.00011263863,0.00014921725,0.00001259421,0.0000048017337,0.000010381454,0.00026176657,0.0000014341407,0.00010417122],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99964,0.00013194993,0.00003997257,0.00005648229,0.000035515775,0.00009610958],"domain_scores_gemma":[0.9988611,0.00033614555,0.0004039673,0.000035583227,0.000133311,0.00022979683],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008372711,0.00023705007,0.00044564134,0.00059106183,0.00048023797,0.0006407858,0.00030099292,0.00035402758,0.00079200725],"category_scores_gemma":[0.0013074931,0.00022656762,0.0003624494,0.0007461559,0.00036344765,0.00032908242,0.00041716083,0.00023805846,0.0000953557],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016990764,0.00008258933,0.9961683,0.000015652826,0.000022373217,0.00036031246,0.0007927642,0.00050166826,0.0004797768,0.000018857987,0.00007131062,0.0013165826],"study_design_scores_gemma":[0.0000047270983,0.0000886443,0.99731475,0.000009129134,0.000011345669,0.00006525832,0.0017980498,0.0005301915,0.000050582377,0.0000125927145,0.000110789,0.000003830539],"about_ca_topic_score_codex":0.17753248,"about_ca_topic_score_gemma":0.22239731,"teacher_disagreement_score":0.17753248,"about_ca_system_score_codex":0.0009734139,"about_ca_system_score_gemma":0.001020479,"threshold_uncertainty_score":0.35299826},"labels":[],"label_agreement":null},{"id":"W169999136","doi":"","title":"Measurements of HONO during the OASIS campaign in Barrow, Alaska","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Atmospheric research; Table (database); Meteorology; Environmental science; Geography","score_opus":0.013005037841676345,"score_gpt":0.19862346019862206,"score_spread":0.18561842235694573,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W169999136","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9978929,0.000101667225,0.000083108884,0.000015422203,0.0000067069595,0.000004920806,0.00041661883,0.000013973199,0.0014647134],"genre_scores_gemma":[0.9986815,0.000088629684,0.00015739206,0.0000093607005,0.0000058918963,0.0000046504224,0.0004800482,0.0000035194535,0.00056906027],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991703,0.000008098387,0.000005560205,0.000031003106,0.00002133588,0.000016967577],"domain_scores_gemma":[0.99991906,0.00001113177,0.000010234024,0.000005544691,0.000027568585,0.000026432193],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020200845,0.00027343372,0.00020241314,0.00043381072,0.00091074914,0.00043218507,0.00017094432,0.00030274098,0.000731003],"category_scores_gemma":[0.0001666949,0.00013069127,0.00010722148,0.00046174775,0.00023642305,0.00031799226,0.0003477101,0.00017658561,0.00019995093],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016420139,0.0002457703,0.8994274,0.00008330036,0.00018271293,0.00064633327,0.0017853033,0.0023217734,0.07279991,0.00023502207,0.0008882224,0.019742187],"study_design_scores_gemma":[0.000026666656,0.0000644264,0.9949975,0.000010806481,0.000026393684,0.000030350855,0.00048613013,0.00094591285,0.002210366,0.00003380549,0.0011592921,0.000008387524],"about_ca_topic_score_codex":0.21063042,"about_ca_topic_score_gemma":0.33961272,"teacher_disagreement_score":0.21063042,"about_ca_system_score_codex":0.000652843,"about_ca_system_score_gemma":0.00044254,"threshold_uncertainty_score":0.41880882},"labels":[],"label_agreement":null},{"id":"W172762630","doi":"","title":"From Molecular Structure to Global Processes : NMR Spectroscopy in Analytical/Environmental Chemistry","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"NMR spectroscopy and applications","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Nuclear magnetic resonance spectroscopy; Chemistry; Spectroscopy; Molecular spectroscopy; Molecule; Organic chemistry; Physics","score_opus":0.002595231933322136,"score_gpt":0.283487617784645,"score_spread":0.28089238585132287,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W172762630","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.06716707,0.37400916,0.46262795,0.023519183,0.0024278164,0.00007831591,0.0002814952,0.0012018591,0.068687156],"genre_scores_gemma":[0.6201447,0.22626574,0.12443053,0.005493658,0.0036059844,0.000115976545,0.00018311164,0.00035658723,0.01940371],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"not_applicable","domain_scores_codex":[0.99971086,0.00008612145,0.000010230888,0.00007609823,0.00007660663,0.0000400654],"domain_scores_gemma":[0.9995789,0.00021934735,0.0000386304,0.000058377012,0.000060751834,0.00004398459],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00095422147,0.0007176819,0.0010714624,0.0007783151,0.00068031735,0.0020827458,0.001055388,0.0017562914,0.0024403168],"category_scores_gemma":[0.0012865418,0.00040171726,0.00025984706,0.0010674171,0.004411152,0.005381188,0.0015586681,0.0022933292,0.000592756],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018264809,0.00018989769,0.0016210601,0.0027850098,0.000085637206,0.00044471808,0.0010287368,0.012291042,0.108763464,0.5047756,0.019522246,0.34830996],"study_design_scores_gemma":[0.00002539915,0.0002102861,0.002007351,0.0004167509,0.00009701676,0.00066573644,0.00090363144,0.039911114,0.05009661,0.81328166,0.09226581,0.000118702366],"about_ca_topic_score_codex":0.00096464035,"about_ca_topic_score_gemma":0.0013431247,"teacher_disagreement_score":0.0024403168,"about_ca_system_score_codex":0.0010764167,"about_ca_system_score_gemma":0.0006254361,"threshold_uncertainty_score":0.008163631},"labels":[],"label_agreement":null},{"id":"W184444577","doi":"","title":"DOC export from an upland peat catchment in the Flow Country, northern Scotland","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Bog; Environmental science; Hydrology (agriculture); Dissolved organic carbon; Water table; Drainage basin; Greenhouse gas; Groundwater; Geography; Geology; Oceanography","score_opus":0.005879830363229928,"score_gpt":0.22217645299028252,"score_spread":0.2162966226270526,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W184444577","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993799,0.000024914158,0.000025474863,0.000010741781,0.0000016602778,0.000008824227,0.00029534523,0.000004019668,0.0002491593],"genre_scores_gemma":[0.9984478,0.00008915286,0.0002024802,0.000028750954,0.0000079842175,0.000019211535,0.00073854934,0.0000037414425,0.00046246275],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998217,0.000014710116,0.000011718458,0.000041049578,0.000050166705,0.000060633796],"domain_scores_gemma":[0.99972016,0.000034474484,0.000070682094,0.000010014017,0.000058270838,0.0001063689],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019026396,0.00030778855,0.00038817452,0.0009749825,0.0012449115,0.0012517447,0.00035355857,0.00025393718,0.0010482325],"category_scores_gemma":[0.00042343466,0.0001746717,0.00028008223,0.0016799626,0.0005029773,0.00036831023,0.0005977101,0.00020746727,0.0001486497],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005658511,0.0003419065,0.94476646,0.00015792913,0.000083631436,0.00574517,0.005584737,0.0007073193,0.02198237,0.0001111414,0.0007757943,0.019177752],"study_design_scores_gemma":[0.000011380606,0.00008036469,0.9974964,0.000006706092,0.00000831061,0.00018189687,0.0012554931,0.0002694008,0.00025476768,0.00001171586,0.00041731758,0.0000061764154],"about_ca_topic_score_codex":0.21532792,"about_ca_topic_score_gemma":0.3342874,"teacher_disagreement_score":0.21532792,"about_ca_system_score_codex":0.0017211648,"about_ca_system_score_gemma":0.0010767955,"threshold_uncertainty_score":0.42814916},"labels":[],"label_agreement":null},{"id":"W186366751","doi":"","title":"The impact of vegetation on dissolved organic carbon quality and quantity in peatlands","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Biogeochemistry; Vegetation (pathology); Geography; Human geography; Vegetation cover; Archaeology; Engineering; Oceanography; Land use; Civil engineering; Geology","score_opus":0.01302630383963156,"score_gpt":0.2889528217114516,"score_spread":0.27592651787182004,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W186366751","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99943763,0.00010687647,0.00003117451,0.000019694227,0.0000011041882,0.0000014453284,0.000088698645,0.0000014714418,0.00031187164],"genre_scores_gemma":[0.9996873,0.00004406804,0.000038762464,0.000008309662,9.193042e-7,0.0000012082114,0.00007040227,0.0000015070688,0.00014751496],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977475,0.000061642626,0.000015831483,0.000037825976,0.000052025058,0.000057822905],"domain_scores_gemma":[0.99906236,0.00025381334,0.00020185114,0.000033811906,0.00022777692,0.00022032831],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029591,0.000114427494,0.00018704936,0.00045141325,0.00039860315,0.00079509016,0.00022224677,0.00020084114,0.0006806348],"category_scores_gemma":[0.0010852292,0.00017621895,0.00014406288,0.0004702828,0.00065677427,0.00045044482,0.00047286504,0.00016772789,0.00012134895],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00087292993,0.00008453637,0.96892613,0.00006450845,0.000116520314,0.00028571323,0.00057750294,0.0007737238,0.018980503,0.0001778355,0.00022658538,0.008913388],"study_design_scores_gemma":[0.0000020134748,0.00002295511,0.99913603,0.0000026450325,0.000005119867,0.000025703059,0.00020850167,0.00016848884,0.00031238052,0.00004330611,0.00006998373,0.0000027402089],"about_ca_topic_score_codex":0.2053602,"about_ca_topic_score_gemma":0.38517094,"teacher_disagreement_score":0.2053602,"about_ca_system_score_codex":0.0016722056,"about_ca_system_score_gemma":0.00084472564,"threshold_uncertainty_score":0.40832973},"labels":[],"label_agreement":null},{"id":"W188607813","doi":"","title":"The holocene carbon cycle as represented by an intermediate complexity model from 8000 BP to the present.","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Paleontology and Stratigraphy of Fossils","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Holocene; Carbon cycle; Geology; Paleontology; Ecosystem","score_opus":0.019749181752190623,"score_gpt":0.2533883649608797,"score_spread":0.23363918320868907,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W188607813","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95418364,0.000940017,0.0175246,0.0014000458,0.000083589504,0.000018824103,0.0015360088,0.0001914646,0.024121903],"genre_scores_gemma":[0.9967167,0.00013644679,0.0011916099,0.000028719918,0.0000075227313,0.000008383318,0.00032817433,0.000029546,0.0015529604],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99991715,0.000025632376,0.0000036110214,0.000029066181,0.000009011971,0.000015540403],"domain_scores_gemma":[0.9998209,0.000056257028,0.000028440914,0.000024968856,0.000033484175,0.000035892324],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027520276,0.00021464712,0.00016664356,0.0004966136,0.00048023244,0.0012521836,0.00049926824,0.0004099395,0.003602949],"category_scores_gemma":[0.0015338368,0.0001690327,0.00042890722,0.0004993244,0.00046380213,0.0011772655,0.00034135883,0.00052172353,0.0003873572],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004718227,0.00008705539,0.08167644,0.00012600412,0.0003901567,0.00038521903,0.00086189405,0.7130752,0.003110197,0.16177616,0.0061311023,0.031908754],"study_design_scores_gemma":[0.00006385924,0.000064280044,0.07165182,0.000050928953,0.00017659717,0.00022475686,0.00039822905,0.8338553,0.0002996461,0.08312403,0.010046637,0.00004404168],"about_ca_topic_score_codex":0.06861615,"about_ca_topic_score_gemma":0.107630804,"teacher_disagreement_score":0.06861615,"about_ca_system_score_codex":0.0016230103,"about_ca_system_score_gemma":0.0009689526,"threshold_uncertainty_score":0.13643354},"labels":[],"label_agreement":null},{"id":"W20063385","doi":"10.1002/btpr.370","title":"Aminopentol, a possible novel biomarker tracer for methane hydrate stability in sedimentary records","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Methane; Anaerobic oxidation of methane; Chemistry; Environmental chemistry; Authigenic; Organic matter; Mineralogy; Organic chemistry","score_opus":0.03153730577938432,"score_gpt":0.2674096062267546,"score_spread":0.23587230044737026,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W20063385","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9530043,0.011357365,0.024776587,0.0004971437,0.00023813054,0.00006124172,0.0024491702,0.00055409846,0.007061926],"genre_scores_gemma":[0.9811411,0.0017315837,0.013783645,0.000115279225,0.00007699726,0.000028721906,0.0006578584,0.00004827961,0.002416581],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998791,0.000017755741,0.0000051877364,0.000053121097,0.00002863745,0.000016133796],"domain_scores_gemma":[0.9999101,0.0000150365795,0.000030750423,0.0000050685894,0.000027519796,0.000011459371],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016138676,0.00032333322,0.0001976854,0.0010016513,0.000280386,0.00043568786,0.0004004839,0.0007639039,0.0007678703],"category_scores_gemma":[0.0002872961,0.00014488545,0.00012159951,0.00061932346,0.00024693203,0.0006189517,0.00030931053,0.0003460904,0.00031322113],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038734506,0.000050352635,0.095765695,0.00050923834,0.000097089454,0.00056577666,0.0002996721,0.0011931182,0.8579056,0.00068955455,0.0007737875,0.041762818],"study_design_scores_gemma":[0.00006167278,0.000804677,0.33565924,0.0002464621,0.00031639988,0.0016736079,0.0014898776,0.04981781,0.5636038,0.0016607286,0.044547804,0.000117881325],"about_ca_topic_score_codex":0.0025288453,"about_ca_topic_score_gemma":0.0070245126,"teacher_disagreement_score":0.0025288453,"about_ca_system_score_codex":0.0003145018,"about_ca_system_score_gemma":0.00026948302,"threshold_uncertainty_score":0.005028248},"labels":[],"label_agreement":null},{"id":"W201401052","doi":"","title":"The Junction of Hellenic and Cyprus Arcs: the Bey Daglari Lineament, Offshore Termination of the Antalya Basin","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Memorial University of Newfoundland","funders":"","keywords":"Transtension; Geology; Forearc; Transpression; Subduction; Lineament; Structural basin; Seismology; Quaternary; Paleontology; Submarine pipeline; Mediterranean climate; Tectonics; Archaeology; Geography; Oceanography; Sinistral and dextral","score_opus":0.00873163340977616,"score_gpt":0.202732663713652,"score_spread":0.19400103030387583,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W201401052","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98070574,0.00035472377,0.000084209125,0.000110646804,0.00000752396,0.000014607557,0.00012992027,0.000009481363,0.018583125],"genre_scores_gemma":[0.99735993,0.00017409663,0.00024681594,0.000024764196,0.0000047459775,0.0000078031835,0.00013593488,0.0000042541287,0.0020416656],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999025,0.000011181913,0.000008573077,0.000032227028,0.000022481532,0.000023028058],"domain_scores_gemma":[0.999918,0.000008169621,0.00003002206,0.0000055722926,0.000020630063,0.000017662462],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009252827,0.00010498975,0.000102114864,0.0005090277,0.00070248666,0.00089241145,0.00014856241,0.00022234174,0.001674597],"category_scores_gemma":[0.00031595878,0.00010771543,0.000060657363,0.0005823602,0.0005747257,0.00028153142,0.00064617035,0.00014980926,0.00028397513],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006984749,0.00012858496,0.8193033,0.00027340619,0.00009208976,0.006459131,0.007892962,0.0015964146,0.026312457,0.015631631,0.0039949664,0.117616594],"study_design_scores_gemma":[0.0000148205,0.000030919757,0.98298234,0.000034520333,0.000015811223,0.0010685686,0.001469103,0.00026339453,0.0007335242,0.00021548108,0.013165339,0.0000062508993],"about_ca_topic_score_codex":0.022461785,"about_ca_topic_score_gemma":0.04766925,"teacher_disagreement_score":0.022461785,"about_ca_system_score_codex":0.00070134015,"about_ca_system_score_gemma":0.0009901772,"threshold_uncertainty_score":0.04466206},"labels":[],"label_agreement":null},{"id":"W20165929","doi":"10.1007/s11745-010-3392-5","title":"Operational value of ensemble streamflow forecasts for hydropower production: A Canadian case study","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Water resources management and optimization","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"Ministry of Education, Science and Technology","keywords":"Hydropower; Streamflow; Production (economics); Environmental science; Value (mathematics); Stream flow; Natural resource economics; Meteorology; Climatology; Economics; Geography; Statistics; Mathematics; Engineering; Cartography; Drainage basin","score_opus":0.008263729545548151,"score_gpt":0.21065031948778548,"score_spread":0.20238658994223732,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W20165929","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9787927,0.0004898574,0.0075686853,0.0009458809,0.000044008044,0.00009868193,0.0049078255,0.00029552297,0.006856933],"genre_scores_gemma":[0.99406236,0.00023874437,0.0038436113,0.000017358316,0.00000908024,0.000012982082,0.0011606816,0.000023273738,0.00063182187],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9994875,0.00012406301,0.000029520032,0.00010113278,0.00015313702,0.0001045726],"domain_scores_gemma":[0.9987004,0.00045227562,0.000105829575,0.00011457538,0.00046168067,0.00016522803],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014708423,0.000762655,0.00047973922,0.0014908882,0.00081652286,0.0018029647,0.0011393136,0.0010018832,0.001008318],"category_scores_gemma":[0.0032531205,0.00026660622,0.00060835655,0.0024623943,0.00058294414,0.001112627,0.0006863078,0.00072036183,0.000094720766],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031610476,0.00015655067,0.08931762,0.00007766334,0.00015156376,0.0010527228,0.00014303341,0.87372905,0.0010682414,0.0029415018,0.0028928686,0.028153013],"study_design_scores_gemma":[0.000025394163,0.00003662644,0.020448051,0.000015288002,0.00003027316,0.00003542192,0.00027194808,0.9762117,0.00048286267,0.0006443445,0.0017687809,0.000029282297],"about_ca_topic_score_codex":0.7461512,"about_ca_topic_score_gemma":0.68265575,"teacher_disagreement_score":0.2538488,"about_ca_system_score_codex":0.009005518,"about_ca_system_score_gemma":0.0051243976,"threshold_uncertainty_score":0.5106875},"labels":[],"label_agreement":null},{"id":"W202583268","doi":"","title":"A Climatological Data Set from the ACE-FTS instrument for the period of 2004-2009","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Toronto","funders":"","keywords":"Library science; Jet propulsion; Meteorology; Period (music); Engineering; Geography; Physics; Computer science","score_opus":0.05008414049440083,"score_gpt":0.2621689035303967,"score_spread":0.21208476303599585,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W202583268","genre_codex":"dataset","genre_gemma":"dataset","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"dataset","genre_consensus":"dataset","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0962282,0.00022952397,0.0005722789,0.00011471553,0.00006791513,0.00007980142,0.897509,0.00027665077,0.0049219285],"genre_scores_gemma":[0.11194307,0.00027075468,0.0024307899,0.000069580594,0.00007668669,0.00011267774,0.8830357,0.00005945327,0.0020012895],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.99963987,0.000024064173,0.000038533846,0.000074064934,0.00017728578,0.00004618548],"domain_scores_gemma":[0.9986364,0.00008755232,0.00023113031,0.00014129872,0.0007874544,0.00011603378],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039272854,0.0005320784,0.0006162634,0.00268975,0.000522026,0.0007773412,0.0006784145,0.0005235376,0.0031670115],"category_scores_gemma":[0.001075007,0.00018420667,0.00038205984,0.0038058262,0.00015279032,0.00046342803,0.00043207858,0.00045345494,0.0020186575],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015969303,0.0010067405,0.4021524,0.0020112013,0.000892649,0.00077906507,0.0005796959,0.020845653,0.01313131,0.0024432219,0.4872312,0.06732996],"study_design_scores_gemma":[0.00012925177,0.00008213501,0.8303255,0.000104355306,0.0001238142,0.0002693404,0.00028092717,0.005695621,0.00444736,0.00031111005,0.15815699,0.00007368815],"about_ca_topic_score_codex":0.15889923,"about_ca_topic_score_gemma":0.2154901,"teacher_disagreement_score":0.15889923,"about_ca_system_score_codex":0.0011330643,"about_ca_system_score_gemma":0.002022268,"threshold_uncertainty_score":0.31594872},"labels":[],"label_agreement":null},{"id":"W204820387","doi":"","title":"Emplacement of crystal-rich magmas: insights from the Snap Lake kimberlite intrusion (NW Territories, Canada)","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Kimberlite; Olivine; Geology; Xenolith; Diatreme; Phlogopite; Magma; Country rock; Intrusion; Layered intrusion; Geochemistry; Petrology; Volcano; Basalt; Mantle (geology)","score_opus":0.00525058921469898,"score_gpt":0.16781002552990082,"score_spread":0.16255943631520184,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W204820387","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9932968,0.00088018784,0.00007925779,0.0001779578,0.0000031479144,0.0000148007175,0.0009312698,0.000008401718,0.0046081175],"genre_scores_gemma":[0.99468046,0.0012970071,0.00034953078,0.00009068032,0.0000042882352,0.0000056707418,0.0007824322,0.000016147233,0.0027738875],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982953,0.0000053595845,0.0000061155506,0.00002735024,0.00006356714,0.000068084584],"domain_scores_gemma":[0.99971324,0.000016005677,0.000034972687,0.0000062912873,0.00016880901,0.00006082603],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015996439,0.00025781634,0.00033730458,0.0023166863,0.0026483901,0.0014789728,0.00070314837,0.00040679603,0.0017313212],"category_scores_gemma":[0.0004002782,0.00022169207,0.00020089152,0.003093441,0.00088069943,0.00043943935,0.0009852669,0.00041558134,0.00026551238],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024105514,0.000069503505,0.9104944,0.00026184338,0.000110513276,0.003329603,0.017488413,0.00049387064,0.036396038,0.0004825733,0.0015018586,0.029130252],"study_design_scores_gemma":[0.0000020298567,0.0000072873263,0.99012756,0.000027962522,0.00001861878,0.00019423355,0.0063799014,0.0002555566,0.00064859283,0.000032251894,0.002296205,0.000009841283],"about_ca_topic_score_codex":0.9708457,"about_ca_topic_score_gemma":0.9931034,"teacher_disagreement_score":0.0291543,"about_ca_system_score_codex":0.010890827,"about_ca_system_score_gemma":0.0075616557,"threshold_uncertainty_score":0.07901883},"labels":[],"label_agreement":null},{"id":"W209970575","doi":"","title":"Quantifying groundwater contribution to the summer water-budget of a northern peatland complex, Schefferville, Québec, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"McGill University","funders":"","keywords":"Peat; Groundwater; Hydrology (agriculture); Environmental science; Water table; Physical geography; Geography; Geology; Archaeology","score_opus":0.014579024127826985,"score_gpt":0.22740430883745574,"score_spread":0.21282528470962875,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W209970575","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9932187,0.00019114868,0.00054537645,0.00011084635,0.000004130056,0.000043931796,0.0026590023,0.00004554586,0.0031813134],"genre_scores_gemma":[0.9947819,0.00011531572,0.0010388298,0.000033499382,0.0000021000744,0.000022605958,0.0012417713,0.000016770364,0.002747237],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997893,0.000019850922,0.000010864429,0.000046149147,0.00006727461,0.00006659777],"domain_scores_gemma":[0.9993917,0.00005537944,0.000045580222,0.0000136050085,0.0003979113,0.000095841075],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003126325,0.0002950345,0.00035053265,0.0011740095,0.002118111,0.0012324032,0.00089524285,0.0003311921,0.0018222809],"category_scores_gemma":[0.00088601426,0.00020157263,0.00021675229,0.0017651101,0.00038839423,0.0003516873,0.00046377073,0.00024783635,0.00019261664],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023570089,0.00009909746,0.93185043,0.00011552512,0.00019646519,0.00032639116,0.0022007192,0.012887969,0.00959118,0.00067094207,0.004527335,0.03729819],"study_design_scores_gemma":[0.000020603617,0.000018871562,0.97997105,0.000029467363,0.00004429029,0.000035898374,0.0016643553,0.013195675,0.0009781572,0.000074526586,0.0039435285,0.000023507728],"about_ca_topic_score_codex":0.9970408,"about_ca_topic_score_gemma":0.99914384,"teacher_disagreement_score":0.023585804,"about_ca_system_score_codex":0.023585804,"about_ca_system_score_gemma":0.01719604,"threshold_uncertainty_score":0.1711278},"labels":[],"label_agreement":null},{"id":"W215020522","doi":"","title":"Magnetic susceptibility measurements on ancient and modern potsherds using a fast, cheap and portable probe","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cultural Heritage Materials Analysis","field":"Arts and Humanities","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Materials science","score_opus":0.07979547644503275,"score_gpt":0.25112005980284774,"score_spread":0.17132458335781497,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W215020522","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9975668,0.00005462561,0.0009954963,0.000007899077,0.000005015111,0.000003425754,0.00003708621,0.000015952968,0.0013137456],"genre_scores_gemma":[0.99832493,0.000020585412,0.0007514544,0.000004063517,0.0000027078725,0.0000015369777,0.00002336939,0.000004491662,0.0008667568],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99988675,0.000013098021,0.000004409355,0.000031532876,0.00004559484,0.000018494806],"domain_scores_gemma":[0.9998423,0.00003273462,0.00002028058,0.000021849255,0.00006440511,0.000018530813],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016522464,0.00018619008,0.00018437959,0.00067522225,0.0004573074,0.0002128206,0.00028673184,0.00030287696,0.0011333509],"category_scores_gemma":[0.00035173405,0.00017637477,0.00010055911,0.0005487415,0.0006678174,0.00026350675,0.00031226999,0.00027900602,0.00015169432],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012309692,0.000058957055,0.024812786,0.0001121509,0.000034430435,0.00055628567,0.0030985149,0.0006519995,0.9480294,0.0006206436,0.0002416467,0.020552218],"study_design_scores_gemma":[0.000085384534,0.0013686427,0.68897897,0.00003064208,0.00017214395,0.0032307128,0.0054302244,0.0030490297,0.2896663,0.0005065205,0.0074199927,0.00006145456],"about_ca_topic_score_codex":0.0026535415,"about_ca_topic_score_gemma":0.005135987,"teacher_disagreement_score":0.0026535415,"about_ca_system_score_codex":0.00016598894,"about_ca_system_score_gemma":0.00012329107,"threshold_uncertainty_score":0.005276203},"labels":[],"label_agreement":null},{"id":"W21732738","doi":"10.1089/jwh.2010.2485","title":"Spatial and Temporal Variations in Ice Motion, Belcher Glacier and Devon Ice Cap, Nunavut, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Ottawa","funders":"Eunice Kennedy Shriver National Institute of Child Health and Human Development; National Center for Research Resources; National Institute of Allergy and Infectious Diseases","keywords":"Geology; Glacier; Glacier morphology; Cryosphere; Sea ice; Synthetic aperture radar; Geodesy; Ice stream; Tidewater glacier cycle; Climatology; Geomorphology; Physical geography; Remote sensing; Geography; Ice calving","score_opus":0.009312803665445233,"score_gpt":0.19032602577384863,"score_spread":0.1810132221084034,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W21732738","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98161674,0.0012362004,0.00013775636,0.0005226286,0.000037255402,0.00003331286,0.010924986,0.000021591506,0.0054695536],"genre_scores_gemma":[0.99385554,0.0005274801,0.00017865408,0.000055254008,0.000007650506,0.0000134536285,0.0031506182,0.0000097472675,0.0022015271],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997638,0.000021116717,0.000012386772,0.0000558391,0.000054377408,0.000092558825],"domain_scores_gemma":[0.9987031,0.00009860271,0.00013943375,0.000040050254,0.0007627348,0.00025606056],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003149495,0.0002493162,0.00023731627,0.0013034212,0.0022611604,0.0011542311,0.0009092357,0.00029260747,0.0026064063],"category_scores_gemma":[0.0012338086,0.00020479666,0.00023109691,0.0026896808,0.0006352318,0.00029740448,0.0006189234,0.00048603688,0.00024459962],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008971906,0.000024885065,0.989028,0.00002696502,0.00006185354,0.00009631042,0.00079639314,0.00060857023,0.0003321406,0.0002179297,0.0034902254,0.0052269893],"study_design_scores_gemma":[0.0000040113996,0.0000039907104,0.9971528,0.000023066008,0.000010060085,0.000019479436,0.0011607164,0.00036378202,0.00004307847,0.000019703866,0.0011930012,0.0000062208087],"about_ca_topic_score_codex":0.99714667,"about_ca_topic_score_gemma":0.99871135,"teacher_disagreement_score":0.016649177,"about_ca_system_score_codex":0.016649177,"about_ca_system_score_gemma":0.017025556,"threshold_uncertainty_score":0.120798826},"labels":[],"label_agreement":null},{"id":"W2181306627","doi":"","title":"Information-based potential seasonal climate predictability","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Predictability; Climatology; Forcing (mathematics); Sea surface temperature; Environmental science; Forecast skill; Climate model; El Niño Southern Oscillation; Mode (computer interface); Meteorology; Climate change; Computer science; Mathematics; Statistics; Geology; Geography; Oceanography","score_opus":0.008225533198902912,"score_gpt":0.21372485442192649,"score_spread":0.20549932122302358,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2181306627","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.32188818,0.0017653693,0.66007954,0.000667245,0.00008757826,0.000035907477,0.0005858773,0.0002447453,0.014645655],"genre_scores_gemma":[0.9879821,0.0003842508,0.0110493405,0.000018763403,0.000036370653,0.000013117743,0.00014391074,0.000014985277,0.0003572701],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997589,0.000082592844,0.000013236562,0.000037245056,0.00008336855,0.000024623349],"domain_scores_gemma":[0.999138,0.0005722066,0.00008416312,0.00006604036,0.00011586388,0.0000236316],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00081571995,0.00033446698,0.00029607254,0.00065168453,0.00023132045,0.0007708002,0.0003500596,0.0002163676,0.00077722524],"category_scores_gemma":[0.002974027,0.00014973,0.00043324145,0.0006967733,0.00041680192,0.001589514,0.0005211505,0.00031987927,0.000082515726],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006997088,0.000021887789,0.011171771,0.000110337576,0.000103397244,0.00022521985,0.00010202281,0.835216,0.0032476755,0.098625995,0.0006846284,0.050421026],"study_design_scores_gemma":[0.0000034511227,0.000023011118,0.0047681397,0.000013232408,0.00002380228,0.000046759487,0.000024515772,0.9331983,0.00071231567,0.06062222,0.0005485468,0.000015656851],"about_ca_topic_score_codex":0.0013751751,"about_ca_topic_score_gemma":0.0013872359,"teacher_disagreement_score":0.0013751751,"about_ca_system_score_codex":0.00046078025,"about_ca_system_score_gemma":0.00045984806,"threshold_uncertainty_score":0.0043140054},"labels":[],"label_agreement":null},{"id":"W2181477142","doi":"","title":"Unravelling the influence of orogenic inheritance on the architecture and tectonic evolution of hyper-extended rift systems","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Rift; Paleontology; Tectonics; Continental margin; Crust; Mantle (geology); Plate tectonics; Seismology; Continental crust; Oceanic crust; Geophysics; Subduction","score_opus":0.00674771485455766,"score_gpt":0.16911721002664842,"score_spread":0.16236949517209076,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2181477142","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99568945,0.00017523405,0.0024600155,0.00007706956,0.0000019417848,0.0000038108617,0.000060882034,0.000017067097,0.0015145831],"genre_scores_gemma":[0.99799097,0.00022996524,0.0015018366,0.00001184065,0.0000029855994,0.000002932936,0.000056448513,0.000010128752,0.00019291523],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983513,0.00004535445,0.000011271928,0.000056522953,0.000020937201,0.000030609],"domain_scores_gemma":[0.999416,0.00020607036,0.00020265432,0.000072632945,0.000045470617,0.000057175614],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038905157,0.00021609133,0.00032883903,0.0003668437,0.00028817175,0.001215994,0.0003501559,0.00033255573,0.0015667485],"category_scores_gemma":[0.001289561,0.00019616655,0.00026474244,0.00054102397,0.0006372274,0.0008090687,0.0007981182,0.00047782995,0.00014863892],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024190632,0.00008581985,0.55098104,0.00031100542,0.00032532314,0.00043188833,0.001723833,0.27071512,0.10209382,0.01028787,0.0002449522,0.062557444],"study_design_scores_gemma":[0.000014241164,0.000123811,0.8027516,0.0000623282,0.00012016986,0.00009319169,0.0008801736,0.18387312,0.005643876,0.0045306697,0.0018676753,0.000039132086],"about_ca_topic_score_codex":0.01510351,"about_ca_topic_score_gemma":0.019066935,"teacher_disagreement_score":0.01510351,"about_ca_system_score_codex":0.0009995964,"about_ca_system_score_gemma":0.00057470374,"threshold_uncertainty_score":0.030031204},"labels":[],"label_agreement":null},{"id":"W2181619669","doi":"","title":"Penetration of Solar Wind Driven ULF Waves into the Earth's Inner Magnetosphere: Role in Radiation Belt and Ring Current Dynamics","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Ionosphere and magnetosphere dynamics","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Magnetosphere; Van Allen radiation belt; Ring current; Solar wind; Physics; Geophysics; Van Allen Probes; Wave power; Ultra low frequency; Geomagnetic storm; Coronal mass ejection; Earth's magnetic field; Magnetopause; Computational physics; Atmospheric sciences; Plasma; Magnetic field; Astronomy; Power (physics)","score_opus":0.0027478995027076154,"score_gpt":0.1958623390839933,"score_spread":0.19311443958128569,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2181619669","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9980476,0.0002297514,0.0004693537,0.00003565523,0.000002131697,0.0000023305918,0.00011187347,0.000021579926,0.0010797301],"genre_scores_gemma":[0.99952877,0.000092532566,0.00013471334,0.000005429056,0.0000048710735,0.0000015288227,0.000103036145,0.0000046265177,0.00012451225],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999584,0.000005945586,0.0000036549332,0.000011470783,0.0000072889793,0.000013242941],"domain_scores_gemma":[0.9997557,0.00006248642,0.00010491846,0.000021814718,0.000024805886,0.000030305344],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011597982,0.00013827175,0.00016141462,0.000630023,0.00012454821,0.00053778436,0.00016900644,0.00022339102,0.0008260301],"category_scores_gemma":[0.000537992,0.00010079085,0.0001490953,0.00048943964,0.00017580055,0.00046984994,0.0002604925,0.000159624,0.00014700559],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031505004,0.00006223033,0.89588106,0.00008414673,0.00009333677,0.00051726436,0.0007953932,0.0029797792,0.056976616,0.0011039855,0.0004251402,0.04076602],"study_design_scores_gemma":[0.0000039653055,0.000025274278,0.9942655,0.000007666387,0.000010008977,0.00012413615,0.00012493378,0.0036226667,0.0012687307,0.0001606642,0.00038095386,0.0000055421406],"about_ca_topic_score_codex":0.0013466785,"about_ca_topic_score_gemma":0.0011130277,"teacher_disagreement_score":0.0013466785,"about_ca_system_score_codex":0.00013667214,"about_ca_system_score_gemma":0.000043291908,"threshold_uncertainty_score":0.002763331},"labels":[],"label_agreement":null},{"id":"W2181699934","doi":"","title":"What drives intermittent aeolian saltation at high-frequency?","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Aeolian processes and effects","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Lethbridge","funders":"","keywords":"Aeolian processes; Mechanics; Wind tunnel; Sediment transport; Geology; Wind speed; Airflow; Meteorology; Environmental science; Physics; Geomorphology","score_opus":0.00976234562282097,"score_gpt":0.21465294608152075,"score_spread":0.20489060045869978,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2181699934","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99725217,0.00017209291,0.0013187254,0.00023973052,0.000017018832,0.000014533965,0.00010545,0.000054848886,0.000825414],"genre_scores_gemma":[0.9993831,0.000066954264,0.00029537294,0.000029971738,0.000006889635,0.0000052500673,0.00005472314,0.000008678696,0.0001490983],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998136,0.000019062727,0.000016563456,0.000068384914,0.000029472018,0.000052984255],"domain_scores_gemma":[0.9995708,0.00012061804,0.00011814899,0.000036472138,0.000081129154,0.00007282267],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031387398,0.00017736336,0.00042891377,0.0003532592,0.0003502327,0.0008972736,0.0003473864,0.0006230592,0.001432343],"category_scores_gemma":[0.0016056907,0.00037317292,0.0002936563,0.00027989832,0.0004968248,0.00073996524,0.00041283568,0.0003967376,0.00025780773],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00047220557,0.00020440263,0.4069194,0.0003792321,0.00015723938,0.0012505784,0.0012726779,0.0085495645,0.5596116,0.0024310746,0.00103259,0.017719492],"study_design_scores_gemma":[0.000043521006,0.00023603826,0.9158245,0.000055268443,0.00005646622,0.0004200041,0.001271301,0.047966365,0.029629722,0.0024218862,0.0020001105,0.00007483335],"about_ca_topic_score_codex":0.0051243124,"about_ca_topic_score_gemma":0.0038421443,"teacher_disagreement_score":0.0051243124,"about_ca_system_score_codex":0.00053948734,"about_ca_system_score_gemma":0.00025718514,"threshold_uncertainty_score":0.010188937},"labels":[],"label_agreement":null},{"id":"W2182100119","doi":"","title":"Quantifying the climate change-induced variations in Saskatoon's Intensity-Duration-Frequency curves using stochastic rainfall generators and K-nearest neighbors","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"HadCM3; Quantile; Climate change; Environmental science; Climatology; Downscaling; Scale (ratio); Meteorology; Storm; Statistics; Mathematics; General Circulation Model; Geography; Precipitation; Geology; GCM transcription factors","score_opus":0.0748311163824187,"score_gpt":0.28346791005079847,"score_spread":0.20863679366837978,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2182100119","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97539335,0.00005748232,0.018325418,0.000106551124,0.000011455684,0.00004576077,0.0027417438,0.00014204749,0.003176173],"genre_scores_gemma":[0.9938419,0.00004229938,0.0044306424,0.0000138861415,0.0000014354664,0.000014877465,0.0013238781,0.000017426062,0.00031363455],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998292,0.000037332033,0.000011350802,0.00004478148,0.000042103264,0.00003527837],"domain_scores_gemma":[0.999551,0.00014216984,0.00007562114,0.000056719775,0.00014529585,0.00002916208],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004490003,0.0002875836,0.00015891691,0.0005979152,0.0002534469,0.0006413345,0.00032224934,0.00023417667,0.0006700982],"category_scores_gemma":[0.0011135527,0.00015165094,0.00033770228,0.0013027535,0.0003123575,0.00031609315,0.00026793152,0.00028117918,0.000079517944],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003130928,0.000019278896,0.057957213,0.000022083032,0.000057199166,0.00011315287,0.00009426556,0.92694443,0.0021684035,0.0016451083,0.00054000056,0.010407559],"study_design_scores_gemma":[0.0000072185394,0.000010870686,0.07276316,0.000007955598,0.000012766224,0.000023686562,0.00014750732,0.92405516,0.0010625056,0.0009377957,0.0009438165,0.00002751287],"about_ca_topic_score_codex":0.53182244,"about_ca_topic_score_gemma":0.53930074,"teacher_disagreement_score":0.46817756,"about_ca_system_score_codex":0.0044963667,"about_ca_system_score_gemma":0.0029748036,"threshold_uncertainty_score":0.9418695},"labels":[],"label_agreement":null},{"id":"W2182179520","doi":"","title":"Reality and origin of the Kernel of the classical Kuiper Belt","year":2011,"lang":"en","type":"article","venue":"EGUGA","topic":"Astro and Planetary Science","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ecliptic; Kernel (algebra); Sky; Physics; Solar System; Component (thermodynamics); Astrophysics; Sequence (biology); Constraint (computer-aided design); Plane (geometry); Astronomy; Geometry; Mathematics; Pure mathematics; Solar wind; Chemistry","score_opus":0.029642235745876638,"score_gpt":0.2260417446110604,"score_spread":0.1963995088651838,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2182179520","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9862705,0.00046732576,0.0037076708,0.0004310352,0.000005228223,0.0000055311216,0.0002477975,0.000026739883,0.008838265],"genre_scores_gemma":[0.9993129,0.00006808931,0.00033064882,0.000008037835,0.00000677871,0.0000010782551,0.00007690877,0.0000029735825,0.00019267951],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9997439,0.000050649276,0.000009019617,0.00008989489,0.000044698172,0.000061812614],"domain_scores_gemma":[0.99908197,0.0002743562,0.00020613,0.00018330995,0.00012047733,0.00013367368],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005133486,0.00013656479,0.00018061689,0.0006868486,0.0006295347,0.0021726948,0.0005678391,0.00033693016,0.0013681712],"category_scores_gemma":[0.0037926536,0.00023570147,0.00013175674,0.000507752,0.00334295,0.0017172726,0.0006542572,0.0004994239,0.00012466288],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00036710073,0.000052776213,0.35371816,0.00008590387,0.00006916303,0.0009683385,0.007577767,0.009299006,0.0077202274,0.5897521,0.0014333393,0.028956119],"study_design_scores_gemma":[0.00004537854,0.00007836499,0.73382366,0.00009167031,0.0000560286,0.0016274657,0.0056942524,0.040962942,0.0017795947,0.1976402,0.018072866,0.00012760803],"about_ca_topic_score_codex":0.07668387,"about_ca_topic_score_gemma":0.03716486,"teacher_disagreement_score":0.07668387,"about_ca_system_score_codex":0.0023826612,"about_ca_system_score_gemma":0.000628238,"threshold_uncertainty_score":0.15247506},"labels":[],"label_agreement":null},{"id":"W2183460713","doi":"","title":"Wind speed and direction variability evaluation in a multiscale perspective","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Complex Systems and Time Series Analysis","field":"Economics, Econometrics and Finance","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Intermittency; Wind power; Wind speed; Scale (ratio); Wind direction; Orientation (vector space); Computer science; Meteorology; Time series; Range (aeronautics); Detrended fluctuation analysis; Perspective (graphical); Environmental science; Mathematics; Engineering; Geography; Artificial intelligence; Machine learning","score_opus":0.061988571421911144,"score_gpt":0.2638599387026556,"score_spread":0.20187136728074448,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2183460713","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.3240367,0.00031577973,0.6714123,0.00015947262,0.000034293098,0.00004976661,0.0004678044,0.00016161546,0.003362194],"genre_scores_gemma":[0.93775094,0.00016303321,0.061454237,0.000017508106,0.000032952288,0.0000375318,0.00018302123,0.000024188854,0.0003366104],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9996377,0.000110872876,0.000034606826,0.00009050354,0.00009073291,0.000035597754],"domain_scores_gemma":[0.99895287,0.0004433536,0.00025749192,0.00013770882,0.00015985657,0.000048781265],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00096339453,0.00026908788,0.0003822835,0.0018955105,0.00020721897,0.0013225644,0.00024960373,0.00034700093,0.00073136046],"category_scores_gemma":[0.003806309,0.00014953411,0.00051764905,0.0012933341,0.0004073828,0.0012605487,0.0006953666,0.00035748997,0.0000765704],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018930457,0.00012290086,0.09188756,0.00020667406,0.00034945816,0.00058044295,0.00066686893,0.4823625,0.03669726,0.12124819,0.0013215848,0.26436722],"study_design_scores_gemma":[0.00000902293,0.00009874123,0.0629324,0.000034787838,0.000052093597,0.000118160766,0.00027668139,0.89282656,0.0026685253,0.03876699,0.002164377,0.000051585477],"about_ca_topic_score_codex":0.0022125188,"about_ca_topic_score_gemma":0.0016315302,"teacher_disagreement_score":0.0022125188,"about_ca_system_score_codex":0.0002826788,"about_ca_system_score_gemma":0.0002825314,"threshold_uncertainty_score":0.0050949454},"labels":[],"label_agreement":null},{"id":"W2183782348","doi":"","title":"Delta diagram based test for the Halphen (A and B) and the Gamma distributions","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Probabilistic and Robust Engineering Design","field":"Decision Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université de Moncton","funders":"","keywords":"Gamma distribution; Mathematics; Skewness; Statistics; Diagram; Class (philosophy); Combinatorics; Computer science; Artificial intelligence","score_opus":0.04666729649808188,"score_gpt":0.2967891954680778,"score_spread":0.2501218989699959,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2183782348","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.16220608,0.0005549257,0.8277104,0.0003085772,0.00010555203,0.00039972106,0.0009506479,0.00121886,0.0065451795],"genre_scores_gemma":[0.8024636,0.00020826231,0.19249482,0.00020851292,0.000080658356,0.00094124593,0.0013795005,0.00012985354,0.002093403],"study_design_codex":"design_other","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.98936206,0.0060586142,0.00055873767,0.0016891076,0.0020546785,0.00027683377],"domain_scores_gemma":[0.9255396,0.06545165,0.0030976243,0.0022260025,0.0030316447,0.00065350794],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00982741,0.0006185695,0.0011368841,0.0037063179,0.0007789328,0.0018023478,0.0016167976,0.0017240314,0.007507248],"category_scores_gemma":[0.06456997,0.00025442237,0.001058982,0.0018983326,0.0018665644,0.0022727577,0.0015806548,0.0014664899,0.0010081106],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0036306882,0.00067202625,0.21914828,0.0011554606,0.001161186,0.002354082,0.0013558606,0.09330457,0.017802486,0.15669592,0.009321409,0.493398],"study_design_scores_gemma":[0.00040006958,0.0031307887,0.087051444,0.0003808571,0.000319639,0.0043690344,0.0013332575,0.7324482,0.019486599,0.13658328,0.014221967,0.00027481333],"about_ca_topic_score_codex":0.00072768936,"about_ca_topic_score_gemma":0.00050333294,"teacher_disagreement_score":0.00982741,"about_ca_system_score_codex":0.00079905003,"about_ca_system_score_gemma":0.0013063612,"threshold_uncertainty_score":0.051972926},"labels":[],"label_agreement":null},{"id":"W2184473583","doi":"","title":"Seasonality of Arctic Mediterranean Exchanges","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ridge; Oceanography; Seasonality; Arctic; Mediterranean climate; Archipelago; Climatology; Outflow; Geology; Environmental science; Geography","score_opus":0.049751795900160975,"score_gpt":0.24371033185805843,"score_spread":0.19395853595789747,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2184473583","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99385566,0.00017373446,0.0002332343,0.00008351944,0.000008723633,0.000003568762,0.000760928,0.000023698889,0.00485691],"genre_scores_gemma":[0.9987343,0.000056873385,0.00009974558,0.000015547057,0.000014388348,0.0000036194472,0.0005481595,0.000008198578,0.00051904493],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985695,0.000028584727,0.000014783288,0.00004131716,0.00002789858,0.000030459929],"domain_scores_gemma":[0.9994137,0.00013635373,0.00020114487,0.00005001118,0.00014180546,0.000057042158],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00042989026,0.00010077847,0.00017295539,0.0008531518,0.00028154402,0.00068276766,0.0001453777,0.00018148107,0.001355523],"category_scores_gemma":[0.0015354019,0.0000628123,0.00011304159,0.000608062,0.0001888059,0.00027978836,0.00037137288,0.00013486385,0.00020619665],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00054165453,0.00004100648,0.9478954,0.00006199717,0.0001407676,0.00025495386,0.0025141516,0.002660193,0.010092921,0.0014443989,0.002560539,0.031791903],"study_design_scores_gemma":[0.0000030261226,0.000017683238,0.995612,0.000007746394,0.000008378045,0.000045865214,0.00026810344,0.0008078323,0.00034432948,0.00011683678,0.0027619263,0.000006198285],"about_ca_topic_score_codex":0.008978324,"about_ca_topic_score_gemma":0.013959012,"teacher_disagreement_score":0.008978324,"about_ca_system_score_codex":0.00043081428,"about_ca_system_score_gemma":0.00014993973,"threshold_uncertainty_score":0.017852128},"labels":[],"label_agreement":null},{"id":"W2184708628","doi":"","title":"Sedimentary thickness from Receiver Function analysis - a simple approach. Case study from North Greenland.","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Structural basin; Sedimentary rock; Sedimentary basin; Submarine pipeline; Proterozoic; Receiver function; Sedimentary basin analysis; Canada Basin; Sedimentary structures; Geomorphology; Seismology; Paleontology; Oceanography; Sedimentary depositional environment; Lithosphere; Tectonics","score_opus":0.03748628749834407,"score_gpt":0.216938677968858,"score_spread":0.17945239047051392,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2184708628","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9610691,0.000996613,0.025872007,0.0002775225,0.000019609384,0.00010524559,0.0010569985,0.00012633603,0.010476577],"genre_scores_gemma":[0.98081243,0.00036582374,0.0156242205,0.000027171107,0.0000064088017,0.00002153938,0.0003102184,0.00002153359,0.0028105995],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979955,0.0000757233,0.000012112297,0.000029702127,0.000057586814,0.000025370131],"domain_scores_gemma":[0.9996556,0.00016104619,0.00006203457,0.000042085194,0.00006407417,0.000015064613],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006815841,0.00080715085,0.00024734298,0.0013388819,0.0003242837,0.0006747176,0.00067083625,0.00066581497,0.0011694981],"category_scores_gemma":[0.0011373156,0.00024346137,0.00049131917,0.001649366,0.00050865085,0.0005673646,0.0006163336,0.00028642965,0.0001999551],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004525421,0.00033364986,0.46735555,0.00060388044,0.00052812224,0.0222469,0.002066727,0.28722072,0.017184883,0.0113326935,0.0033592856,0.18731514],"study_design_scores_gemma":[0.00007726621,0.0005630986,0.6530365,0.00027319626,0.0005425098,0.0059563923,0.0036560334,0.3058652,0.009029844,0.0070058173,0.013863729,0.00013038593],"about_ca_topic_score_codex":0.113380745,"about_ca_topic_score_gemma":0.26357648,"teacher_disagreement_score":0.113380745,"about_ca_system_score_codex":0.0017186981,"about_ca_system_score_gemma":0.00056320085,"threshold_uncertainty_score":0.22544158},"labels":[],"label_agreement":null},{"id":"W2185730893","doi":"","title":"Comparison of methods for measuring vertical hydraulic properties in a sedimentary rock aquifer","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Groundwater flow and contamination studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Queen's University","funders":"","keywords":"Slug test; Hydraulic conductivity; Aquifer; Geology; Geotechnical engineering; Hydraulic head; Aquifer properties; Groundwater; Aquifer test; Soil science; Soil water; Groundwater recharge","score_opus":0.07270144420254647,"score_gpt":0.3281915775878392,"score_spread":0.2554901333852927,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2185730893","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.84548825,0.002276412,0.14886974,0.000102768936,0.00010380161,0.00047362293,0.000514305,0.0003133818,0.0018576354],"genre_scores_gemma":[0.7648997,0.002399726,0.23022062,0.00007636721,0.000056816923,0.00083368894,0.00051245146,0.000087208435,0.00091343856],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9938129,0.0020392365,0.0005727305,0.0006763497,0.0027116963,0.00018708239],"domain_scores_gemma":[0.9895335,0.0055471435,0.0012200805,0.0010638962,0.0024756647,0.00015977562],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.005024548,0.00097266946,0.0005775537,0.003012054,0.0003203606,0.00077422184,0.0014324473,0.00097587705,0.00036714302],"category_scores_gemma":[0.008972517,0.0006317614,0.0004852148,0.0016202204,0.0006312386,0.0009123786,0.0010826734,0.0006217196,0.00017643094],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024749667,0.00089868024,0.12221098,0.0014948407,0.0005816091,0.00022586083,0.0013096456,0.011249463,0.56130576,0.00061258546,0.00030187052,0.29733366],"study_design_scores_gemma":[0.0002191191,0.012027452,0.29441538,0.00016022757,0.0006280452,0.0012773452,0.0011064975,0.064609416,0.6203253,0.0008173808,0.0039419103,0.0004718922],"about_ca_topic_score_codex":0.0021430107,"about_ca_topic_score_gemma":0.0042616795,"teacher_disagreement_score":0.005024548,"about_ca_system_score_codex":0.00045676154,"about_ca_system_score_gemma":0.00043037592,"threshold_uncertainty_score":0.026572704},"labels":[],"label_agreement":null},{"id":"W2186282226","doi":"","title":"Riparian seed dispersal: transport and depositional processes","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Calgary","funders":"","keywords":"Hydrology (agriculture); Riparian zone; Fluvial; Outflow; Environmental science; Biological dispersal; Deposition (geology); Inflow; Geology; Population; Ecology; Geomorphology; Sediment; Habitat; Oceanography; Biology","score_opus":0.007092500186311568,"score_gpt":0.20508318704209202,"score_spread":0.19799068685578045,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2186282226","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99246913,0.00029126363,0.005044215,0.00009174479,0.000004198266,0.000024543855,0.00019528945,0.0000409386,0.0018387075],"genre_scores_gemma":[0.99846834,0.00017201612,0.0007248108,0.000006991065,0.0000039823403,0.000007770054,0.00009146865,0.000007697524,0.0005169436],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999324,0.000016145706,0.0000063743814,0.0000266409,0.000009208368,0.000009357876],"domain_scores_gemma":[0.9996362,0.00015571748,0.00012592996,0.000020707419,0.00002738125,0.00003400091],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025222014,0.00023520802,0.00020357406,0.00043008188,0.00025395246,0.0007436501,0.00036272127,0.00033872164,0.0011940508],"category_scores_gemma":[0.0009333062,0.00029785535,0.00037959908,0.00040573292,0.00028386305,0.0006457834,0.0002828562,0.00019094476,0.00018876343],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00037864628,0.00028601981,0.5219769,0.00029864567,0.00029478208,0.0014415671,0.000536805,0.3858226,0.04694673,0.012011513,0.0009353434,0.029070444],"study_design_scores_gemma":[0.000044868968,0.0001363396,0.35215792,0.000022770753,0.00009376937,0.00031237476,0.00013868528,0.64218104,0.0017220146,0.0023304722,0.00081658474,0.00004307211],"about_ca_topic_score_codex":0.017249469,"about_ca_topic_score_gemma":0.011070547,"teacher_disagreement_score":0.017249469,"about_ca_system_score_codex":0.0007910346,"about_ca_system_score_gemma":0.00032084106,"threshold_uncertainty_score":0.034298122},"labels":[],"label_agreement":null},{"id":"W2186349984","doi":"","title":"Onset of tropospheric circulation anomalies during Stratospheric Vortex Weakening events: the role of planetary-scale waves","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Stratosphere; Troposphere; Atmospheric sciences; Climatology; Polar vortex; Rossby wave; Geology; Vortex; Zonal flow (plasma); Atmospheric circulation; Atmospheric wave; Environmental science; Geophysics; Wave propagation; Gravity wave; Meteorology; Physics","score_opus":0.004638696810551585,"score_gpt":0.18232746112513595,"score_spread":0.17768876431458436,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2186349984","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990606,0.000059320533,0.0003341151,0.000014241382,0.0000021062287,0.0000021711694,0.00005284608,0.000009353435,0.00046536914],"genre_scores_gemma":[0.9997329,0.00003043185,0.00009577629,0.0000015912595,0.0000024993851,9.950102e-7,0.00007218027,0.0000021601002,0.00006150024],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999622,0.0000069100893,0.0000022159732,0.0000084307085,0.000007622571,0.000012523789],"domain_scores_gemma":[0.99992037,0.000015843501,0.000029095756,0.0000076803635,0.000008922966,0.00001808053],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012571263,0.00012010991,0.00012445728,0.00039024636,0.00015320613,0.00036420673,0.00009904954,0.00014224686,0.00056791404],"category_scores_gemma":[0.0002976697,0.0000839986,0.00016304813,0.00032534217,0.00015159065,0.00024184377,0.00026013335,0.00012307553,0.00005439586],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030205733,0.00012247008,0.8889292,0.000056805144,0.00014602082,0.0002440766,0.00042296547,0.012773561,0.064815596,0.0015227725,0.00040327985,0.03026121],"study_design_scores_gemma":[0.0000059173963,0.000039833118,0.9801757,0.000004027574,0.000020661759,0.00004315687,0.00009623068,0.017481685,0.0015539313,0.00027779385,0.00029630848,0.0000048244956],"about_ca_topic_score_codex":0.0059607355,"about_ca_topic_score_gemma":0.007837729,"teacher_disagreement_score":0.0059607355,"about_ca_system_score_codex":0.0001727118,"about_ca_system_score_gemma":0.00019185945,"threshold_uncertainty_score":0.011852086},"labels":[],"label_agreement":null},{"id":"W2186495568","doi":"","title":"Summertime atmospheric circulation response to Arctic sea ice loss in uncoupled and coupled simulations","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sea ice; Arctic ice pack; Arctic sea ice decline; Climatology; Atmosphere (unit); Arctic; Atmospheric circulation; Drift ice; Arctic geoengineering; Environmental science; Cryosphere; Geology; Antarctic sea ice; Lead (geology); Atmospheric sciences; Arctic dipole anomaly; Northern Hemisphere; Oceanography; Meteorology; Geography","score_opus":0.016482606912251417,"score_gpt":0.23367513431743167,"score_spread":0.21719252740518025,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2186495568","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9977187,0.00003140311,0.00081406685,0.000060487855,0.00001793402,0.000014247286,0.00033738397,0.00007084335,0.0009349745],"genre_scores_gemma":[0.99862635,0.000023504448,0.0006130964,0.000026566804,0.000005151546,0.000028929113,0.00034494785,0.000019208888,0.00031223038],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99977857,0.000063820655,0.000019860898,0.00005578909,0.000029827506,0.00005216083],"domain_scores_gemma":[0.99934775,0.00031687377,0.000078171,0.00007789067,0.000080285434,0.00009905006],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004571333,0.0006145484,0.0006685943,0.00027685254,0.000385437,0.0008827561,0.00070329517,0.0007441311,0.0013758714],"category_scores_gemma":[0.001700622,0.000423968,0.00082395755,0.000293574,0.00065573445,0.0006973739,0.0007344035,0.00086609815,0.00011836791],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035610734,0.00013504791,0.006707082,0.000043930188,0.000120458244,0.00007882129,0.000057719382,0.9878604,0.003094704,0.00031223998,0.00017695191,0.0010565849],"study_design_scores_gemma":[0.00014303198,0.00022913692,0.0090078255,0.0000067344254,0.000046934772,0.000011568261,0.00007245481,0.9885339,0.0015138469,0.00021058191,0.00019878203,0.000025139872],"about_ca_topic_score_codex":0.04864208,"about_ca_topic_score_gemma":0.024869934,"teacher_disagreement_score":0.04864208,"about_ca_system_score_codex":0.0010748197,"about_ca_system_score_gemma":0.0008776292,"threshold_uncertainty_score":0.096717894},"labels":[],"label_agreement":null},{"id":"W2186767099","doi":"","title":"Mechanisms of the North Atlantic multidecadal internal variability in the CNRM-CM5 model","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ocean gyre; Atlantic multidecadal oscillation; Climatology; North Atlantic Deep Water; Geology; Atlantic Equatorial mode; North Atlantic oscillation; Oceanography; Climate model; Shutdown of thermohaline circulation; Thermohaline circulation; Climate change","score_opus":0.024370393463831255,"score_gpt":0.24325668062667274,"score_spread":0.21888628716284148,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2186767099","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96583974,0.0004582997,0.017787179,0.0006169835,0.000078421166,0.000021943468,0.0020593407,0.0007712946,0.012366767],"genre_scores_gemma":[0.9974613,0.000079164274,0.00088670186,0.00004439837,0.000011676208,0.000014531552,0.0005834495,0.00007250589,0.0008462077],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985945,0.000036303543,0.000006677145,0.000043942506,0.000018784684,0.000034768214],"domain_scores_gemma":[0.99981576,0.000046092,0.000045426812,0.000026273274,0.00003787633,0.000028567008],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004414795,0.0005188173,0.00031313545,0.00029658957,0.00031216553,0.0009321016,0.0009630233,0.0006432861,0.0015541798],"category_scores_gemma":[0.0008738555,0.0003414599,0.00063532626,0.00034565385,0.0003119736,0.0005231106,0.0005215329,0.00059067836,0.00022468163],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011223764,0.000045005505,0.02791551,0.00003899127,0.00017788584,0.00015131137,0.00008070678,0.9525632,0.0053272247,0.007599878,0.001832064,0.004155969],"study_design_scores_gemma":[0.000023757004,0.000019495013,0.014522872,0.000009939774,0.000034519817,0.000020821124,0.00001851011,0.9832771,0.00039738513,0.00095952017,0.0006965336,0.000019610776],"about_ca_topic_score_codex":0.034859177,"about_ca_topic_score_gemma":0.017716954,"teacher_disagreement_score":0.034859177,"about_ca_system_score_codex":0.0009825386,"about_ca_system_score_gemma":0.00071812456,"threshold_uncertainty_score":0.06931257},"labels":[],"label_agreement":null},{"id":"W2187362510","doi":"","title":"Testing the kinematics and timing of the opening of the Amerasia Basin through a new coupled plate kinematic and mantle convection model","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Subduction; Plate tectonics; Seismology; Mantle (geology); Transform fault; Seafloor spreading; Paleontology; Tectonics; Rift; Structural basin; Extensional tectonics; Kinematics; Geophysics; Mantle convection","score_opus":0.08789729385994138,"score_gpt":0.2373511993325458,"score_spread":0.14945390547260443,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2187362510","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98335624,0.0000691061,0.013125951,0.00010347485,0.000015220169,0.000018096529,0.0005203613,0.00014100669,0.0026505394],"genre_scores_gemma":[0.9951704,0.00003301474,0.0040772064,0.000011842912,0.0000042150514,0.000014599337,0.00035316858,0.000020410562,0.0003150786],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999925,0.000015786458,0.000005832273,0.000028683757,0.000010422427,0.0000143443185],"domain_scores_gemma":[0.9997464,0.00010473723,0.000042985634,0.000023516182,0.00004201266,0.00004022026],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029936162,0.0003689266,0.00022551631,0.00041278513,0.00021660456,0.0007974477,0.0009108611,0.0004839307,0.001520428],"category_scores_gemma":[0.0009182863,0.00029185382,0.00052868144,0.0002560467,0.00044825985,0.0003486827,0.0005256527,0.00039266454,0.00009406298],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007527081,0.00004366855,0.019336801,0.000024867928,0.000051060917,0.00006296301,0.00006989438,0.9730453,0.0026041823,0.0019132538,0.00016893266,0.0026038373],"study_design_scores_gemma":[0.000024668072,0.00001583881,0.0029424932,0.000003278388,0.000013442109,0.000009316174,0.000017527533,0.99620396,0.00023375865,0.0003973285,0.00013341758,0.0000048912916],"about_ca_topic_score_codex":0.048891947,"about_ca_topic_score_gemma":0.022919534,"teacher_disagreement_score":0.048891947,"about_ca_system_score_codex":0.00069998263,"about_ca_system_score_gemma":0.0010379001,"threshold_uncertainty_score":0.09721476},"labels":[],"label_agreement":null},{"id":"W2187997579","doi":"","title":"Tropical-extratropical teleconnection associated with stratospheric QBO","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Teleconnection; Extratropical cyclone; Climatology; Rossby wave; Stratosphere; Quasi-biennial oscillation; Troposphere; Environmental science; Radiosonde; Atmospheric sciences; Polar vortex; Geology; El Niño Southern Oscillation","score_opus":0.014905957227609469,"score_gpt":0.21572880244528697,"score_spread":0.20082284521767751,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2187997579","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965456,0.00018427057,0.0009777824,0.00012361635,0.000013187528,0.000006543496,0.00042896112,0.00003917047,0.0016807736],"genre_scores_gemma":[0.99941814,0.00007650937,0.0001809455,0.000017972538,0.000006535826,0.0000039408915,0.00017676265,0.0000039787683,0.000115229275],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999572,0.00001034762,0.0000028907766,0.000012471891,0.0000062565177,0.000010958153],"domain_scores_gemma":[0.99980766,0.00005320724,0.00006792634,0.000017646034,0.000028491086,0.000025064075],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016074204,0.00014850803,0.00007989045,0.0002785316,0.00015971625,0.00026270503,0.00010218295,0.00012545708,0.0010552995],"category_scores_gemma":[0.00056103634,0.00010447363,0.00016653666,0.00037954334,0.00015507654,0.00020889842,0.00023471762,0.00013411121,0.00006961976],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003054135,0.000047497135,0.9269553,0.0000717394,0.00015621385,0.00023272377,0.00028004462,0.010159477,0.04152614,0.0013339812,0.0009550573,0.017976413],"study_design_scores_gemma":[0.000012250872,0.000030176616,0.9883273,0.0000066166253,0.000022958604,0.000058587164,0.00004961343,0.009956541,0.00055429054,0.00034036385,0.0006363547,0.0000049989467],"about_ca_topic_score_codex":0.0077723013,"about_ca_topic_score_gemma":0.0115832845,"teacher_disagreement_score":0.0077723013,"about_ca_system_score_codex":0.00018933883,"about_ca_system_score_gemma":0.00016411189,"threshold_uncertainty_score":0.0154541135},"labels":[],"label_agreement":null},{"id":"W2188003932","doi":"","title":"The Svalbard Caledonides - a collage of Laurentian, Timanian and exotic terranes assembled by Silurian - Late (?) Devonian transcurrent faulting.","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Terrane; Geology; Laurentia; Devonian; Paleontology; Paleomagnetism; Subduction; Clockwise; Baltica; Paleozoic; Fold (higher-order function); Ordovician; Tectonics","score_opus":0.015167985159876237,"score_gpt":0.1968092318817644,"score_spread":0.18164124672188817,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2188003932","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.94339913,0.0030138209,0.00062001334,0.00020444319,0.00010583679,0.00006358233,0.0032681818,0.00016886626,0.049156222],"genre_scores_gemma":[0.97758013,0.0005490129,0.001466751,0.00008208076,0.000019040563,0.0000216504,0.004515525,0.000043165623,0.015722675],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990654,0.000005893456,0.000006616087,0.000027197682,0.00002043979,0.000033357923],"domain_scores_gemma":[0.9999194,0.0000040358855,0.000027267948,0.000008080524,0.00001653607,0.000024592004],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009377021,0.00030607468,0.00015249953,0.00230876,0.000987155,0.0011281032,0.00025709465,0.0001692267,0.0030786023],"category_scores_gemma":[0.00018929028,0.00012954285,0.00017107053,0.0013233117,0.0005918581,0.00025501373,0.0006357781,0.00020643961,0.000566469],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029779584,0.000084130654,0.74716127,0.00023303484,0.00023258655,0.0025791493,0.0054131327,0.00063268276,0.022649804,0.009392653,0.016970804,0.19435301],"study_design_scores_gemma":[0.000004899174,0.000015232886,0.95081884,0.000050456438,0.0000186164,0.0006008324,0.0011820492,0.00014525767,0.0005970332,0.00022632748,0.04633485,0.000005486553],"about_ca_topic_score_codex":0.16086844,"about_ca_topic_score_gemma":0.57745355,"teacher_disagreement_score":0.16086844,"about_ca_system_score_codex":0.001257843,"about_ca_system_score_gemma":0.001105832,"threshold_uncertainty_score":0.31986415},"labels":[],"label_agreement":null},{"id":"W2188247594","doi":"","title":"River channel's predisposition to ice jams: a geospatial model","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Channel (broadcasting); Population; Lead (geology); Geology; Sinuosity; Geography; Geomorphology; Computer science","score_opus":0.010937771797282104,"score_gpt":0.20600664314038925,"score_spread":0.19506887134310713,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2188247594","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.90003055,0.00022947908,0.07881238,0.0010607059,0.000050329447,0.00016059533,0.007328177,0.00079051865,0.0115371775],"genre_scores_gemma":[0.98976934,0.00014724625,0.0054626893,0.000030624502,0.0000130817525,0.00008286741,0.0013224008,0.000024305584,0.0031473283],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998548,0.000040075676,0.0000071157947,0.00003855169,0.000019708294,0.000039708557],"domain_scores_gemma":[0.9996278,0.00017998017,0.00006734186,0.000023806677,0.000064147476,0.000036973983],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003763967,0.00044270352,0.0003879444,0.0011395682,0.0005810211,0.0013798788,0.0012039939,0.0008983921,0.00283769],"category_scores_gemma":[0.001064742,0.00033696165,0.000787395,0.0013289712,0.00054357306,0.00062132796,0.0007188257,0.00044534935,0.00035293656],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000028678076,0.000029590165,0.006586347,0.000007632,0.000015059943,0.000054221768,0.000037064296,0.990021,0.00016337557,0.0013348015,0.00030699334,0.0014153661],"study_design_scores_gemma":[0.0000049755813,0.000006794603,0.0014854528,0.0000020684577,0.0000068896934,0.000008059056,0.000028767103,0.99788684,0.000023866194,0.00035405473,0.00018757774,0.000004744384],"about_ca_topic_score_codex":0.2533247,"about_ca_topic_score_gemma":0.12917228,"teacher_disagreement_score":0.2533247,"about_ca_system_score_codex":0.0020024232,"about_ca_system_score_gemma":0.0016375638,"threshold_uncertainty_score":0.5037004},"labels":[],"label_agreement":null},{"id":"W2188369447","doi":"","title":"Climate change impacts on continental weathering through the Middle Jurassic to Lower Cretaceous of Sverdrup Basin, Canadian Arctic","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Aptian; Sverdrup; Paleontology; Cretaceous; Paleoclimatology; Arctic; Structural basin; Climate change; Tethys Ocean; Rift; Period (music); Weathering; Tectonic uplift; Tectonics; Oceanography; Subduction","score_opus":0.04185675579486527,"score_gpt":0.21459311083740448,"score_spread":0.1727363550425392,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2188369447","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99312276,0.0007304542,0.000071519105,0.00009861968,0.000007088202,0.000005976685,0.0022105062,0.000018342558,0.0037347039],"genre_scores_gemma":[0.9981729,0.00031117979,0.00009590676,0.000011509794,0.0000019804365,0.000002452891,0.0006955684,0.0000035711555,0.00070485054],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982244,0.0000105043755,0.000009058862,0.0000429076,0.00004984175,0.00006527359],"domain_scores_gemma":[0.99976104,0.0000148800855,0.000044548797,0.0000068412855,0.00011025996,0.00006245333],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016588165,0.00025783994,0.00015888055,0.0016847847,0.0011575359,0.00085628446,0.00029518048,0.0001464676,0.0016905513],"category_scores_gemma":[0.0004616162,0.00012981106,0.00022481257,0.0016532479,0.0004543902,0.00023597803,0.0003965421,0.00016128815,0.00009434703],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000059894526,0.000012570869,0.977504,0.000053957458,0.00008413633,0.00016599761,0.0010481316,0.0017180385,0.0020205423,0.00054467155,0.0008542352,0.01593372],"study_design_scores_gemma":[9.603382e-7,0.0000027311062,0.9986168,0.0000070242386,0.000007671266,0.000014764418,0.00024766964,0.0001525204,0.00006464738,0.00001586953,0.00086700974,0.000002311469],"about_ca_topic_score_codex":0.96302813,"about_ca_topic_score_gemma":0.9876308,"teacher_disagreement_score":0.036971867,"about_ca_system_score_codex":0.006426997,"about_ca_system_score_gemma":0.006946071,"threshold_uncertainty_score":0.074379146},"labels":[],"label_agreement":null},{"id":"W2188712156","doi":"","title":"Canadian Arctic Plate Reconstructions based on revised geological and geophysical data","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Arctic; Paleontology; Seafloor spreading; Cretaceous; North American Plate; Plate tectonics; Orogeny; Oceanography; Paleogene; Devonian; Canada Basin; Volcanism; Tectonics","score_opus":0.07897659678085629,"score_gpt":0.22452655115400358,"score_spread":0.14554995437314727,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2188712156","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.60664105,0.0050324826,0.04967328,0.0023837376,0.00056922674,0.0003338408,0.21307486,0.00538396,0.11690755],"genre_scores_gemma":[0.78253216,0.0045469124,0.08010646,0.0003261567,0.0000570798,0.00014980725,0.109177865,0.00058855524,0.022514896],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9994332,0.000030646457,0.000025237328,0.00012004044,0.00028525063,0.000105560655],"domain_scores_gemma":[0.99844486,0.00003848495,0.000077983525,0.00009634741,0.0012684597,0.000073938085],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000565172,0.0008460822,0.0003121054,0.004957922,0.0017185106,0.002011345,0.0011652646,0.0004240353,0.005649061],"category_scores_gemma":[0.0019594212,0.0005484471,0.0007153436,0.005202518,0.00038348476,0.0005915414,0.0007559565,0.000803853,0.0014315766],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00043695403,0.000119697776,0.22928749,0.00044218462,0.0008852548,0.0006910357,0.0010659058,0.31996566,0.011714134,0.019837772,0.10031148,0.31524244],"study_design_scores_gemma":[0.00017285105,0.000040490162,0.37430185,0.00028607622,0.00044867216,0.00026691545,0.0012066747,0.2516824,0.006912763,0.0030472076,0.36133194,0.00030213912],"about_ca_topic_score_codex":0.990294,"about_ca_topic_score_gemma":0.995518,"teacher_disagreement_score":0.022835024,"about_ca_system_score_codex":0.022835024,"about_ca_system_score_gemma":0.022428453,"threshold_uncertainty_score":0.16568047},"labels":[],"label_agreement":null},{"id":"W225627245","doi":"","title":"Microtomography experiment for rock texture analysis: 3D shape orientation distribution function of crystals and vesicles in volcanic products","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Volcano; Texture (cosmology); Geology; Physics; Archaeology; Geography; Mineralogy; Seismology","score_opus":0.006274600800576847,"score_gpt":0.2197413084366183,"score_spread":0.21346670763604145,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W225627245","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9899324,0.00040894977,0.007951943,0.0000454555,0.000010072042,0.0000109427165,0.00041009762,0.00006966717,0.0011605162],"genre_scores_gemma":[0.99362814,0.0002078984,0.005234898,0.000009261255,0.000004826131,0.000010764175,0.00018610636,0.0000241593,0.00069397147],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99994445,0.000005399284,0.000003261361,0.000017421658,0.000017354167,0.000012081021],"domain_scores_gemma":[0.99987257,0.00004231381,0.00001869065,0.000014787946,0.000036111414,0.000015503756],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00011618205,0.00012899678,0.00014499326,0.0004699879,0.00023144002,0.00029630805,0.00015866813,0.00021622572,0.0021065602],"category_scores_gemma":[0.00017323084,0.00014459644,0.0001246636,0.0002711549,0.00018749844,0.0002751988,0.00021465922,0.00024746518,0.00026305567],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011452977,0.000016109698,0.0073568043,0.000036224774,0.0000072209086,0.000058831032,0.00010218296,0.000716297,0.98383373,0.0002967621,0.00018782569,0.007273426],"study_design_scores_gemma":[0.000010940325,0.00011139174,0.101178326,0.000013110324,0.000025378624,0.0006086126,0.0003378546,0.036243998,0.8589796,0.00022183824,0.002239766,0.00002918486],"about_ca_topic_score_codex":0.0029450941,"about_ca_topic_score_gemma":0.0033453687,"teacher_disagreement_score":0.0029450941,"about_ca_system_score_codex":0.00021502342,"about_ca_system_score_gemma":0.00012976328,"threshold_uncertainty_score":0.0070471168},"labels":[],"label_agreement":null},{"id":"W2264074065","doi":"","title":"Abstract: Remote assessment of instantaneous changes in water chemistry after liming in a Nova Scotia catchment","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nova scotia; Drainage basin; Nova (rocket); Environmental science; Chemistry; Hydrology (agriculture); Forestry; Geography; Geology; Archaeology; Cartography","score_opus":0.007292271249988301,"score_gpt":0.2228544956101672,"score_spread":0.2155622243601789,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2264074065","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99830306,0.000037945723,0.00011727957,0.0000232384,0.000004388998,0.00001716893,0.00037957565,0.000020792977,0.0010965362],"genre_scores_gemma":[0.99894863,0.00002076771,0.00018454675,0.000012649991,0.000002389258,0.0000074686996,0.00023440312,0.0000023384516,0.00058683025],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998869,0.000010430182,0.0000081980415,0.0000273766,0.000034912704,0.000032113618],"domain_scores_gemma":[0.99969864,0.000040330804,0.000049368362,0.000020350026,0.00011969526,0.000071693124],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022941941,0.00018546646,0.00019528421,0.0005167713,0.0007225574,0.00067016686,0.00039301583,0.00023081791,0.0008361437],"category_scores_gemma":[0.0005350059,0.00012780585,0.00019746518,0.00049629586,0.00040625155,0.0002187041,0.00045227725,0.00021002522,0.00013836342],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011865625,0.0002117458,0.9313766,0.00012660498,0.00011116944,0.001434816,0.001389616,0.0071900086,0.03528562,0.00015190105,0.0010757011,0.020459749],"study_design_scores_gemma":[0.000021997063,0.00002971367,0.9957568,0.000007584189,0.000013751436,0.000042166525,0.00030187107,0.0027638364,0.0006071609,0.000015139772,0.00043337038,0.000006554061],"about_ca_topic_score_codex":0.7710987,"about_ca_topic_score_gemma":0.8709886,"teacher_disagreement_score":0.22890133,"about_ca_system_score_codex":0.002440599,"about_ca_system_score_gemma":0.0020050472,"threshold_uncertainty_score":0.4604987},"labels":[],"label_agreement":null},{"id":"W227668721","doi":"","title":"The participation of the ADMIRARI radiometer to the GPM/GV CHUVA Brazilian campaign, tropical precipitating warm clouds observations and early results","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Precipitation Measurement and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Microwave radiometer; Global Precipitation Measurement; Meteorology; Environmental science; Satellite; Precipitation; Radiometer; Climatology; Remote sensing; Geography; Geology; Physics","score_opus":0.033039737100687784,"score_gpt":0.24996841965308542,"score_spread":0.21692868255239764,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W227668721","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.81615514,0.0017545964,0.035437156,0.0018930018,0.00064375036,0.0015224251,0.04689821,0.0022538535,0.093441814],"genre_scores_gemma":[0.9120209,0.00036132472,0.038770624,0.00043823276,0.00022716122,0.0006627014,0.029505229,0.0005600685,0.017453786],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9990239,0.00032055398,0.000029791041,0.00021717668,0.0002446818,0.0001638923],"domain_scores_gemma":[0.99809796,0.00019248895,0.0001545607,0.00040303072,0.0009752229,0.00017674733],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013545371,0.00047277033,0.00039948092,0.0010489709,0.0007885893,0.0005868023,0.00061101496,0.000326683,0.0034712828],"category_scores_gemma":[0.0018536398,0.00022500599,0.00022324028,0.0010556369,0.00023341588,0.00031990092,0.0011991599,0.00050276547,0.0009934598],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00080044876,0.00048915175,0.35201186,0.0005276786,0.00030885206,0.00035339908,0.0018329908,0.0073084473,0.094015524,0.004251743,0.06627601,0.4718239],"study_design_scores_gemma":[0.00012725248,0.00035388826,0.7330824,0.00008735407,0.000112825925,0.000282041,0.00072046806,0.013972654,0.030682266,0.0006529643,0.21986733,0.000058555313],"about_ca_topic_score_codex":0.05406794,"about_ca_topic_score_gemma":0.09078663,"teacher_disagreement_score":0.05406794,"about_ca_system_score_codex":0.0008512192,"about_ca_system_score_gemma":0.0019991628,"threshold_uncertainty_score":0.107506454},"labels":[],"label_agreement":null},{"id":"W234768321","doi":"","title":"Phoenix 07 MET Pressure Sensor: Instrument, Observations and Their Interpretation Using FMIs Mars Limited Area Model MLAM","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Planetary Science and Exploration","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Phoenix; Mars Exploration Program; Martian; Polar; Environmental science; Meteorology; Martian surface; Atmosphere of Mars; Exploration of Mars; Mars landing; Surface pressure; Atmospheric pressure; Astrobiology; Remote sensing; Geography; Physics; Astronomy; Archaeology","score_opus":0.05054802934713405,"score_gpt":0.23798185616744447,"score_spread":0.1874338268203104,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W234768321","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.49810565,0.0008442777,0.08798264,0.0011347577,0.00028314692,0.0009376847,0.3033204,0.026509281,0.080882214],"genre_scores_gemma":[0.7863522,0.00049584033,0.10783261,0.00033117615,0.00017621927,0.0003564901,0.08855166,0.0010563843,0.014847347],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.99971753,0.000012464789,0.000009746864,0.00007073221,0.00016595628,0.00002342738],"domain_scores_gemma":[0.9998611,0.0000063702087,0.000017266913,0.000020503401,0.00008168366,0.000013082242],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031701033,0.00045282964,0.00030647003,0.0010506426,0.0005132691,0.0008368216,0.00082418916,0.00039598963,0.004948655],"category_scores_gemma":[0.00039765696,0.00023953196,0.00014647779,0.0013332855,0.00014406438,0.00065429334,0.00041644985,0.0005508552,0.0023951477],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016677459,0.00063954707,0.16749668,0.00052225945,0.0002652533,0.0008430959,0.0005318059,0.03334792,0.13221529,0.0022855506,0.37385088,0.286334],"study_design_scores_gemma":[0.00044501282,0.0002786004,0.4840528,0.00010247327,0.000110477784,0.00074470707,0.0002969682,0.2645228,0.11138439,0.0010436556,0.1368921,0.00012602362],"about_ca_topic_score_codex":0.029243203,"about_ca_topic_score_gemma":0.03183406,"teacher_disagreement_score":0.029243203,"about_ca_system_score_codex":0.000832005,"about_ca_system_score_gemma":0.00061508396,"threshold_uncertainty_score":0.058146},"labels":[],"label_agreement":null},{"id":"W240756629","doi":"","title":"Hydro-climatic control of stream water dissolved organic carbon (DOC) across northern catchments within the North-Watch program","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Dissolved organic carbon; Hydrology (agriculture); Oceanography; Geology","score_opus":0.005301145033545945,"score_gpt":0.2241256388330114,"score_spread":0.21882449379946545,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W240756629","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995541,0.000021482667,0.000038847516,0.000019630927,8.091461e-7,0.0000016756803,0.000071638475,0.0000026515756,0.00028913424],"genre_scores_gemma":[0.99956936,0.000025428471,0.00004531935,0.0000064248748,0.0000013238414,0.000003352206,0.00013514886,0.0000025517859,0.00021096984],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998066,0.00005140068,0.00000894033,0.000057104317,0.000026310596,0.00004968175],"domain_scores_gemma":[0.99952376,0.00008500816,0.0000979634,0.000028387105,0.00009046,0.00017451146],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003210369,0.00007505951,0.00018114844,0.00027108198,0.00044669097,0.0006332576,0.00017751413,0.00013027272,0.0006779333],"category_scores_gemma":[0.00074040506,0.00009538699,0.00011881742,0.00046879574,0.00047553054,0.00031442507,0.0006421602,0.00014752416,0.000088024135],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026385157,0.00009251812,0.9831876,0.000015531396,0.000060851027,0.00016007514,0.0020436966,0.00049161195,0.005032333,0.00026543174,0.0005154361,0.007870981],"study_design_scores_gemma":[0.0000025093807,0.0000108066315,0.99895906,0.0000019343763,0.000005680971,0.000014193215,0.0004194444,0.00027337443,0.00006933055,0.000033360757,0.00020879702,0.0000015405141],"about_ca_topic_score_codex":0.12154579,"about_ca_topic_score_gemma":0.27160648,"teacher_disagreement_score":0.12154579,"about_ca_system_score_codex":0.0010044675,"about_ca_system_score_gemma":0.00087429816,"threshold_uncertainty_score":0.24167663},"labels":[],"label_agreement":null},{"id":"W240999709","doi":"","title":"The freshwater export from the Arctic Ocean and the circulation of liquid freshwater around Greenland - constraints, interactions & consequences","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Archipelago; Arctic; Sea ice; Arctic dipole anomaly; Outflow; Arctic ice pack; Bay; Arctic geoengineering; Geology; Arctic sea ice decline; Environmental science; Antarctic sea ice","score_opus":0.01092382922262043,"score_gpt":0.21128546964399694,"score_spread":0.20036164042137652,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W240999709","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9725425,0.000897584,0.00030818765,0.0012841644,0.00002134335,0.0000025805305,0.00044588785,0.0000135006285,0.024484323],"genre_scores_gemma":[0.9969555,0.0007211631,0.00014929465,0.00007928025,0.000010602635,0.0000016975235,0.00013755924,0.000011127351,0.0019337214],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990416,0.000017779028,0.0000031921488,0.000017786286,0.000014874198,0.000042137715],"domain_scores_gemma":[0.99977607,0.000020756623,0.00006764306,0.0000112815005,0.000045722554,0.0000784534],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018659192,0.000227328,0.0001706891,0.0005628491,0.0006718039,0.0015869281,0.00020117461,0.00009981612,0.0027167355],"category_scores_gemma":[0.00033399474,0.00007514946,0.0001806665,0.0010447562,0.0008722329,0.000513142,0.0009571794,0.00018067632,0.00012014678],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005438415,0.00007326557,0.83346194,0.00018478729,0.00028200005,0.0014530628,0.0027498181,0.0076702656,0.011543079,0.04545723,0.0034493292,0.093131445],"study_design_scores_gemma":[0.000005930031,0.000031050848,0.97832984,0.00006896906,0.000049396498,0.00008395498,0.0019555578,0.0010411767,0.00056144083,0.0051684217,0.012688437,0.000015847383],"about_ca_topic_score_codex":0.23996428,"about_ca_topic_score_gemma":0.32569513,"teacher_disagreement_score":0.23996428,"about_ca_system_score_codex":0.0029285208,"about_ca_system_score_gemma":0.0021852758,"threshold_uncertainty_score":0.47713506},"labels":[],"label_agreement":null},{"id":"W245235097","doi":"","title":"Investigating Future Air Quality: Combining AURAMS and the CRCM to project future ozone and particulate matter concentrations over North America","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Air quality index; Particulates; Environmental science; Meteorology; Political science; Geography","score_opus":0.01256923946101372,"score_gpt":0.23905973624287666,"score_spread":0.22649049678186295,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W245235097","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98536915,0.00030063823,0.0031446954,0.00060077145,0.000020743324,0.000067827415,0.005448943,0.00045684172,0.004590413],"genre_scores_gemma":[0.98025984,0.00015823523,0.014684256,0.00007148823,0.000027076769,0.000058704816,0.0038157792,0.00005301258,0.0008715351],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9992949,0.0002727272,0.000032403077,0.000153277,0.00016291403,0.00008377239],"domain_scores_gemma":[0.9983841,0.0003794745,0.0002443629,0.00017859462,0.0006257468,0.0001877335],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0016839796,0.00047958834,0.00036614476,0.0012098178,0.0005338256,0.0012319448,0.00053857843,0.0004974384,0.0009840393],"category_scores_gemma":[0.0031962257,0.00021649286,0.00055192574,0.0018603986,0.00020776698,0.001022549,0.0010162726,0.00038827665,0.00023650353],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019334548,0.0001516274,0.90739083,0.00005768958,0.0004851438,0.000101783065,0.00034079468,0.021094523,0.0012239767,0.0007852355,0.004330694,0.06384429],"study_design_scores_gemma":[0.000076979755,0.00018470745,0.82602835,0.000038399812,0.0003347329,0.00007764487,0.0010816368,0.1629777,0.0013736829,0.0007880118,0.0069776676,0.000060467988],"about_ca_topic_score_codex":0.30760288,"about_ca_topic_score_gemma":0.48195815,"teacher_disagreement_score":0.30760288,"about_ca_system_score_codex":0.0013524997,"about_ca_system_score_gemma":0.002061364,"threshold_uncertainty_score":0.61162484},"labels":[],"label_agreement":null},{"id":"W248351494","doi":"","title":"The response of polar glaciers to Late Holocene climate change reconstructed from terrestrial geomorphological evidence on Svalbard","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Physical geography; Geography; Queen (butterfly); Archaeology","score_opus":0.05507967190999102,"score_gpt":0.28491018877171687,"score_spread":0.22983051686172584,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W248351494","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99903524,0.00017342911,0.00004721948,0.000033654003,0.0000044784274,9.17969e-7,0.00018080013,0.0000043039913,0.0005198861],"genre_scores_gemma":[0.999164,0.00010551622,0.000049658815,0.000006653451,0.0000029593969,8.9216553e-7,0.0005307222,0.0000056042154,0.00013405297],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971944,0.000070392845,0.000021064632,0.000095584015,0.000027975144,0.00006546778],"domain_scores_gemma":[0.9993031,0.00018931416,0.00018678412,0.00007278852,0.00014427419,0.00010372908],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00051643496,0.00025383697,0.00034332633,0.002018084,0.00048572358,0.0015244416,0.00029319612,0.00034282706,0.0013250489],"category_scores_gemma":[0.0019824216,0.00027622847,0.0003186648,0.0011967431,0.00064438256,0.00043163027,0.00076745,0.00029346626,0.0003514264],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025482045,0.000020611844,0.9842764,0.000027007029,0.0002497569,0.0001917076,0.00065568154,0.0033758206,0.00108197,0.00027743267,0.00043162686,0.0091571035],"study_design_scores_gemma":[0.00000433228,0.000009842892,0.996472,0.000020699828,0.00003352207,0.00004963628,0.0006622028,0.0018837661,0.000096960386,0.00009118407,0.00066834653,0.0000075690723],"about_ca_topic_score_codex":0.115168095,"about_ca_topic_score_gemma":0.19083072,"teacher_disagreement_score":0.115168095,"about_ca_system_score_codex":0.000788092,"about_ca_system_score_gemma":0.0004563309,"threshold_uncertainty_score":0.2289955},"labels":[],"label_agreement":null},{"id":"W2513324569","doi":"","title":"Global Patterns of Annual Actual Evapotranspiration with Land-Cover Type: Emerging Patterns from New Databases","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Plant Water Relations and Carbon Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Dalhousie University","funders":"","keywords":"Database; Land cover; Evapotranspiration; Cover (algebra); Geography; Computer science; Environmental science; Land use; Engineering; Ecology","score_opus":0.008547068039439231,"score_gpt":0.21440197628220134,"score_spread":0.20585490824276212,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2513324569","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.953069,0.0026690348,0.001158957,0.00021185608,0.0000092446635,0.000008621774,0.041498303,0.00009764288,0.0012773853],"genre_scores_gemma":[0.9526329,0.0013598708,0.001435187,0.000045315235,0.00001637857,0.000018396015,0.044221673,0.000039766364,0.00023053196],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9991603,0.00011242025,0.00022712373,0.00029238232,0.00014148439,0.00006630056],"domain_scores_gemma":[0.9902974,0.0044026496,0.0026519678,0.0010786672,0.0012357761,0.00033366066],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012648351,0.00023285171,0.00047048635,0.0037355055,0.00020846368,0.0012424298,0.00046116518,0.00026215683,0.00091058476],"category_scores_gemma":[0.0077316333,0.00021701615,0.00046977267,0.008368087,0.00038644782,0.0015311335,0.0011457758,0.00027347542,0.00023953289],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015301861,0.000015302145,0.97421455,0.00024310862,0.00033453872,0.00005675469,0.00071868295,0.0006535207,0.00081012293,0.00052646373,0.0019178168,0.02035607],"study_design_scores_gemma":[0.000007381846,0.000014823547,0.99228,0.000052883748,0.00011151992,0.00013506862,0.00055789103,0.0011487876,0.00027259463,0.00022936561,0.0051759174,0.0000136854505],"about_ca_topic_score_codex":0.026704505,"about_ca_topic_score_gemma":0.046724457,"teacher_disagreement_score":0.026704505,"about_ca_system_score_codex":0.00044940689,"about_ca_system_score_gemma":0.00046325487,"threshold_uncertainty_score":0.053098083},"labels":[],"label_agreement":null},{"id":"W2613896627","doi":"","title":"Merging the SAGE II and OSIRIS Stratospheric Aerosol Records","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Osiris; Aerosol; Meteorology; Environmental science; Geography","score_opus":0.007944935629102636,"score_gpt":0.1947380727303732,"score_spread":0.18679313710127055,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2613896627","genre_codex":"empirical","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9380589,0.0008909233,0.013473251,0.000445134,0.0004960433,0.00008237231,0.02581494,0.0038799762,0.016858468],"genre_scores_gemma":[0.9277733,0.00034992225,0.024485288,0.00022385799,0.00016682231,0.000047728252,0.040438052,0.00036669825,0.006148321],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.9997503,0.000024246801,0.000013525386,0.00008668436,0.000058671805,0.000066668],"domain_scores_gemma":[0.99960726,0.000034961973,0.000041524,0.000081185055,0.0001869818,0.000048197904],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037824054,0.00032548857,0.00038111256,0.0009974061,0.0004581028,0.0012628579,0.00040173007,0.00043806396,0.0020979093],"category_scores_gemma":[0.0010788327,0.00024807797,0.00041296834,0.0015671155,0.00016616516,0.0007745321,0.00080508075,0.00040684975,0.00068129937],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016582326,0.0006517638,0.3560372,0.0005347476,0.0016799289,0.0008969987,0.0021376067,0.05805936,0.14191648,0.005921945,0.0716096,0.35889605],"study_design_scores_gemma":[0.00033641662,0.00013007747,0.7688227,0.00009456932,0.00090768404,0.00019495607,0.0013441504,0.09347698,0.021320026,0.0011372777,0.11209135,0.00014374418],"about_ca_topic_score_codex":0.1468558,"about_ca_topic_score_gemma":0.30042607,"teacher_disagreement_score":0.1468558,"about_ca_system_score_codex":0.0005535766,"about_ca_system_score_gemma":0.0022066685,"threshold_uncertainty_score":0.29200202},"labels":[],"label_agreement":null},{"id":"W263332107","doi":"","title":"Aquifer Characterization using electromagnetic and geoelectric methods for the study of Keritis Basin in Western Crete, Greece","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysical and Geoelectrical Methods","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Aquifer; Geology; Structural basin; Seismology; Geomorphology; Geotechnical engineering; Groundwater","score_opus":0.02493499164327412,"score_gpt":0.3050610771329394,"score_spread":0.2801260854896653,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W263332107","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987463,0.000041018327,0.00040711917,0.000011478368,9.946123e-7,0.000027849099,0.00010966977,0.00001286062,0.00064271555],"genre_scores_gemma":[0.9980599,0.00005488499,0.0012491533,0.00001095771,0.0000018420242,0.000035439385,0.00016621128,0.0000070063766,0.00041460255],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998367,0.000021571077,0.000020859246,0.000056348985,0.000029718078,0.000034783505],"domain_scores_gemma":[0.9998807,0.000022365994,0.000024834222,0.000012670611,0.00004110814,0.000018356754],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022343107,0.00034486424,0.00037183307,0.0015712109,0.00053300656,0.00064188364,0.00068118866,0.00048438137,0.0005155285],"category_scores_gemma":[0.00042734967,0.00020099017,0.00022843087,0.0011281004,0.0004857497,0.00047978407,0.0009145801,0.00014133491,0.00015123],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044495417,0.0004484074,0.84925175,0.00019534434,0.0002356878,0.0038163892,0.005962438,0.010805949,0.059625335,0.0006191593,0.000423051,0.06817157],"study_design_scores_gemma":[0.000032243217,0.00009369169,0.9829432,0.00002569124,0.000046358506,0.00058476225,0.0033941786,0.009030028,0.002375972,0.00016844478,0.0012861833,0.000019146079],"about_ca_topic_score_codex":0.07099816,"about_ca_topic_score_gemma":0.12134117,"teacher_disagreement_score":0.07099816,"about_ca_system_score_codex":0.0006389621,"about_ca_system_score_gemma":0.0009640698,"threshold_uncertainty_score":0.14116979},"labels":[],"label_agreement":null},{"id":"W2733468830","doi":"","title":"Rifted Continental Margins: The Case for Depth-Dependent Extension","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Dalhousie University","funders":"","keywords":"Geology; Lithosphere; Crust; Mantle (geology); Underplating; Rift; Continental crust; Oceanic crust; Asthenosphere; Seafloor spreading; Continental margin; Petrology; Geophysics; Seismology; Subduction; Tectonics","score_opus":0.013230720244551507,"score_gpt":0.21026243260790087,"score_spread":0.19703171236334935,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2733468830","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9909259,0.00020477331,0.0036414128,0.00020672844,0.000008654715,0.000010078411,0.00012305319,0.000041204294,0.0048381756],"genre_scores_gemma":[0.99952745,0.000034878227,0.0001456491,0.000008328754,0.0000022853496,0.000002170258,0.000014636725,0.00000561962,0.00025904656],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99988663,0.0000316199,0.000006602014,0.000026197773,0.00001559431,0.000033374345],"domain_scores_gemma":[0.9994106,0.00016842943,0.00015609206,0.00011141236,0.000048736554,0.0001047512],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033018106,0.00048236625,0.0002975403,0.00022106981,0.000294498,0.0008943731,0.0006435372,0.0005397682,0.0023980858],"category_scores_gemma":[0.0018875387,0.00029871648,0.00044645325,0.00018702244,0.0006602694,0.0008742911,0.000978281,0.0004452653,0.00012181699],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004347829,0.000080893056,0.122768596,0.00015105968,0.00023004434,0.0013338003,0.00028843145,0.7927091,0.042116854,0.02977647,0.00042463705,0.009685316],"study_design_scores_gemma":[0.00012162957,0.00023195344,0.08327855,0.000055684217,0.00010495779,0.00033884458,0.00019892471,0.898413,0.004094626,0.011833405,0.0012800222,0.00004826408],"about_ca_topic_score_codex":0.0033407628,"about_ca_topic_score_gemma":0.0025555964,"teacher_disagreement_score":0.0033407628,"about_ca_system_score_codex":0.00046667055,"about_ca_system_score_gemma":0.0002729188,"threshold_uncertainty_score":0.008022368},"labels":[],"label_agreement":null},{"id":"W273705438","doi":"","title":"Examining the moisture and temperature sensitivity of soil organic matter decomposition in shallow and deep temperate forest soils","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"St. Francis Xavier University","funders":"","keywords":"Soil water; Microcosm; Environmental science; Water content; Moisture; Soil science; Soil respiration; Temperate forest; Soil organic matter; Organic matter; Temperate climate; Environmental chemistry; Ecology; Chemistry; Geology; Biology","score_opus":0.007477593897184798,"score_gpt":0.19976418716978295,"score_spread":0.19228659327259814,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W273705438","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997805,0.000049920673,0.00007079821,0.0000015223486,4.1028352e-7,0.0000024431454,0.000033478413,0.0000014682578,0.00005954949],"genre_scores_gemma":[0.99950695,0.000059890248,0.00022126354,0.0000074908903,0.0000016250151,0.000005476947,0.00012539062,0.0000015916905,0.000070266164],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9998714,0.000017436441,0.000012569745,0.000044162203,0.000025119109,0.00002929566],"domain_scores_gemma":[0.99969757,0.000070727496,0.00012376513,0.000016786247,0.000031475,0.000059672402],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002517183,0.00022979334,0.00021665827,0.000312256,0.000146046,0.00029121205,0.00016942303,0.00022022346,0.0002521843],"category_scores_gemma":[0.00029618066,0.00021866239,0.00022913521,0.00019678233,0.00021329778,0.00023645979,0.00024061625,0.00019388659,0.00007137054],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004955716,0.00007985948,0.15381712,0.000056584147,0.000052773925,0.00007600315,0.00014484947,0.00030234878,0.8414661,0.000021991516,0.000012966694,0.003473789],"study_design_scores_gemma":[0.000004174065,0.00020408313,0.9859278,0.000001650644,0.000013081096,0.000062861574,0.00005373109,0.0004717706,0.013189584,0.000015121753,0.00005234265,0.0000038514872],"about_ca_topic_score_codex":0.0035841458,"about_ca_topic_score_gemma":0.0061805383,"teacher_disagreement_score":0.0035841458,"about_ca_system_score_codex":0.00019573496,"about_ca_system_score_gemma":0.00013049215,"threshold_uncertainty_score":0.0071265697},"labels":[],"label_agreement":null},{"id":"W274554667","doi":"","title":"Terrestrial climate variability and seasonality changes in the Mediterranean area over the last 15,000 years from marine pollen cores","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Seasonality; Geography; Physical geography; Mediterranean climate; Archaeology; Forestry; Ecology; Biology","score_opus":0.024944222630752914,"score_gpt":0.2533027790641647,"score_spread":0.2283585564334118,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W274554667","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9968035,0.00037563613,0.00007132146,0.000035898644,0.000007413532,0.000002758366,0.002323053,0.0000079047395,0.00037247338],"genre_scores_gemma":[0.9960944,0.00023658307,0.00021329944,0.000019863071,0.000020784702,0.000006300596,0.0031073075,0.0000069815237,0.00029443213],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998368,0.0000261371,0.000027046442,0.00006665069,0.000024323408,0.000019048832],"domain_scores_gemma":[0.99931455,0.000103150414,0.00030072476,0.00005522297,0.00014013574,0.000086324246],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006313373,0.00019380248,0.00023032175,0.000988376,0.00017737351,0.00047332296,0.00026643265,0.00030663895,0.0006359681],"category_scores_gemma":[0.0012818883,0.00012992584,0.00027911537,0.00119846,0.00014384284,0.00030969977,0.00034956806,0.00016310909,0.00023059838],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010848384,0.000010914149,0.99038094,0.000037305872,0.00023020411,0.00007859349,0.00024443388,0.00036456212,0.0008704237,0.00003939019,0.00052083516,0.0071139536],"study_design_scores_gemma":[0.0000019697159,0.0000088211655,0.999199,0.0000044337885,0.000013657616,0.000026696664,0.00003710518,0.00014675943,0.000039219183,0.00000572134,0.0005152298,0.0000013442059],"about_ca_topic_score_codex":0.020669015,"about_ca_topic_score_gemma":0.03839061,"teacher_disagreement_score":0.020669015,"about_ca_system_score_codex":0.00045824345,"about_ca_system_score_gemma":0.00019271199,"threshold_uncertainty_score":0.041097403},"labels":[],"label_agreement":null},{"id":"W277251099","doi":"","title":"Using erosion associated with glaciovolcanic features to document the existence of pre-LGM ice-sheets: examples from the Kawdy Plateau, northern British Columbia","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Plateau (mathematics); Pleistocene; Bedrock; Ice sheet; Erosion; Glacial period; Last Glacial Maximum; Physical geography; Paleontology; Glacier; Horseshoe (symbol); Geomorphology; Geography","score_opus":0.02110432003237351,"score_gpt":0.2398352799014051,"score_spread":0.2187309598690316,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W277251099","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9869135,0.00085724273,0.00017716779,0.00013468656,0.0000026090302,0.000015591813,0.00045428652,0.000012596639,0.011432281],"genre_scores_gemma":[0.99596584,0.0008297581,0.00075169,0.00003944246,0.0000018139498,0.0000066690036,0.00044756543,0.000010068176,0.0019471962],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998652,0.000011109981,0.000008268939,0.00002510875,0.000046247464,0.000044125343],"domain_scores_gemma":[0.9994436,0.00007444685,0.000065431865,0.000037338137,0.00029992755,0.00007932863],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021849295,0.00022555845,0.00016911025,0.0026178267,0.0023576242,0.0013228555,0.00033031453,0.00027711134,0.0010516695],"category_scores_gemma":[0.0007785469,0.00011246497,0.000094376715,0.004642516,0.0008312038,0.00026532717,0.00063968264,0.0003098235,0.00012694253],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010875309,0.00002185412,0.92305493,0.00013120155,0.00006236427,0.0031891298,0.01345767,0.00041465767,0.012709047,0.0005099085,0.0012783811,0.045062035],"study_design_scores_gemma":[0.0000019398053,0.0000036669553,0.99262094,0.000027759985,0.00000973815,0.00047117186,0.003525352,0.00011955959,0.0004360055,0.00004784069,0.0027290827,0.000006941657],"about_ca_topic_score_codex":0.9020671,"about_ca_topic_score_gemma":0.98417366,"teacher_disagreement_score":0.097932875,"about_ca_system_score_codex":0.0048779743,"about_ca_system_score_gemma":0.002569312,"threshold_uncertainty_score":0.19701922},"labels":[],"label_agreement":null},{"id":"W2805706195","doi":"","title":"First assessment for geothermal utilization of two regionally extensive Devonian carbonate aquifers in Alberta, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geothermal Energy Systems and Applications","field":"Energy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Devonian; Outcrop; Petrophysics; Geothermal gradient; Carbonate; Aquifer; Geochemistry; Carbonate rock; Facies; Sedimentary rock; Petrology; Structural basin; Geomorphology; Groundwater; Paleontology; Porosity; Geotechnical engineering","score_opus":0.01786480667181176,"score_gpt":0.26529926459800085,"score_spread":0.2474344579261891,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2805706195","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9933137,0.00023750534,0.00020336852,0.000046089255,0.0000020515286,0.000036917532,0.0014478135,0.000010737939,0.004701898],"genre_scores_gemma":[0.9966318,0.00021890554,0.00044742538,0.000022814807,0.0000014220511,0.00000975773,0.0009288605,0.0000035987384,0.0017354102],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995759,0.000016277865,0.000014905193,0.000063132946,0.00021740695,0.000112286434],"domain_scores_gemma":[0.9992681,0.000035849633,0.00006774978,0.000017834946,0.0005000728,0.000110392],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023400571,0.00037703628,0.00024999265,0.0018742656,0.0016974856,0.0011878354,0.00081282074,0.00024833757,0.0010412922],"category_scores_gemma":[0.0005434606,0.00020366724,0.0002821306,0.0025330698,0.0006178775,0.00020238922,0.0005773456,0.00017972956,0.00013342102],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022008603,0.0000677343,0.9644263,0.00009126493,0.000066386834,0.0007338272,0.0019654348,0.0018316983,0.007006016,0.00042785556,0.000793599,0.022369787],"study_design_scores_gemma":[0.000003334339,0.000018421602,0.99517906,0.000013211698,0.000013798826,0.00006932992,0.0017379392,0.00090099446,0.0005006976,0.000024003213,0.0015323362,0.0000068991335],"about_ca_topic_score_codex":0.98478335,"about_ca_topic_score_gemma":0.99655765,"teacher_disagreement_score":0.017789012,"about_ca_system_score_codex":0.017789012,"about_ca_system_score_gemma":0.009102645,"threshold_uncertainty_score":0.12906891},"labels":[],"label_agreement":null},{"id":"W28592521","doi":"10.1098/rsbl.2017.0197","title":"Impact of atmospheric circulation regimes on air temperature and precipitation patterns in Northern Eurasia.","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Natural Sciences and Engineering Research Council of Canada","keywords":"Climatology; Precipitation; Atmospheric circulation; Environmental science; Circulation (fluid dynamics); Atmospheric sciences; Meteorology; Surface air temperature; Air temperature; Geography; Geology","score_opus":0.015101026586745319,"score_gpt":0.24704300865303155,"score_spread":0.23194198206628625,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W28592521","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99922276,0.000113035676,0.0000317829,0.00004220424,0.000003798867,8.9749375e-7,0.0002044036,0.00000353009,0.00037760593],"genre_scores_gemma":[0.99954224,0.00004676144,0.000044630935,0.00001231567,0.0000035165563,0.0000013973134,0.00022641239,0.0000022554925,0.00012052215],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999275,0.000021420632,0.00000746109,0.00002193074,0.000007857143,0.000013757114],"domain_scores_gemma":[0.9998288,0.000028067681,0.00006220445,0.000012738942,0.000025995372,0.00004208976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022421147,0.00010991974,0.0001588245,0.00020092867,0.00016250258,0.00027761696,0.0001711823,0.00018564709,0.0009511227],"category_scores_gemma":[0.00038601022,0.000090522284,0.00015026995,0.0002442193,0.00022555995,0.00021729193,0.00024642708,0.00016314238,0.00013258273],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016428388,0.000022261942,0.98571616,0.000019909987,0.00011930235,0.0001666256,0.00030139327,0.00028220357,0.0073001445,0.00007963273,0.00024322272,0.0055847806],"study_design_scores_gemma":[0.0000017678453,0.0000060962957,0.9996315,0.0000011731753,0.000006121294,0.000015619531,0.000065145774,0.00012547048,0.000041790867,0.00001009795,0.00009426765,8.91682e-7],"about_ca_topic_score_codex":0.025416574,"about_ca_topic_score_gemma":0.04902327,"teacher_disagreement_score":0.025416574,"about_ca_system_score_codex":0.00033582814,"about_ca_system_score_gemma":0.00021460907,"threshold_uncertainty_score":0.05053729},"labels":[],"label_agreement":null},{"id":"W286651324","doi":"","title":"Paleolimnological records of Holocene carbon cycling: a late-glacial - Holocene record from Boswell Lake, British Columbia","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Physical geography; Glacial period; Geology; Boreal; Holocene climatic optimum; Carbon cycle; Climate change; Oceanography; Ecology; Ecosystem; Paleontology; Geography","score_opus":0.016360106657561418,"score_gpt":0.22640906500255825,"score_spread":0.21004895834499684,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W286651324","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98988473,0.0010869983,0.00010672951,0.00015916867,0.0000060121547,0.000021614087,0.0041425084,0.000020113046,0.004572151],"genre_scores_gemma":[0.99058586,0.0005886782,0.00031895784,0.000102837264,0.000003963034,0.00002356168,0.0039054311,0.000011973673,0.004458633],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998123,0.000009624901,0.000011453094,0.000030760762,0.000063635736,0.00007223855],"domain_scores_gemma":[0.9993243,0.000029269244,0.000093603005,0.00002327864,0.0003936041,0.0001359069],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017702782,0.00022731238,0.0002482294,0.001822162,0.0023596585,0.001236246,0.0006353338,0.00028454562,0.0030164046],"category_scores_gemma":[0.00047528744,0.00022491204,0.000108581684,0.0043622497,0.00053532596,0.0003481227,0.0006807467,0.00037056903,0.0004592527],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000074406074,0.00003518947,0.9686788,0.0000873498,0.00005125006,0.00028473654,0.002368168,0.00012796633,0.004166559,0.00011898711,0.0024569372,0.021549614],"study_design_scores_gemma":[0.0000012554492,0.000002400155,0.9974099,0.000013468832,0.000006023295,0.000027687242,0.0004734464,0.000049465852,0.00009397359,0.0000056550175,0.0019132576,0.0000034322713],"about_ca_topic_score_codex":0.9808811,"about_ca_topic_score_gemma":0.99706596,"teacher_disagreement_score":0.019118905,"about_ca_system_score_codex":0.009238929,"about_ca_system_score_gemma":0.005624046,"threshold_uncertainty_score":0.06703341},"labels":[],"label_agreement":null},{"id":"W287805110","doi":"","title":"Linking postseismic and interseismic deformation along the North Anatolian Fault Zone: The role of transient rheology and low-viscosity shear zones","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia","funders":"","keywords":"Geology; Crust; Rheology; Shear zone; Mantle (geology); Viscoelasticity; Seismology; Shear (geology); Upper crust; North Anatolian Fault; Petrology; Geophysics; Fault (geology); Tectonics; Materials science","score_opus":0.004822590367086582,"score_gpt":0.1858167237061662,"score_spread":0.18099413333907963,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W287805110","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993974,0.000095211755,0.000101665646,0.00001783933,0.0000012451691,0.0000018478114,0.000019735002,0.000004390413,0.00036069544],"genre_scores_gemma":[0.99967647,0.00008099625,0.00007271218,0.000003008856,0.0000014866309,0.0000016032701,0.00004749895,0.000001947139,0.00011434182],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989045,0.00002317086,0.000013070255,0.00003644878,0.000011896291,0.000024831103],"domain_scores_gemma":[0.9996082,0.00009889464,0.00014349756,0.00003795995,0.000071590446,0.000039878396],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024145901,0.00024946834,0.00020280549,0.001008494,0.00031223547,0.0007390844,0.0002737783,0.00043093195,0.00085059484],"category_scores_gemma":[0.0007876182,0.00027776125,0.00015744407,0.0006529755,0.0003306315,0.00077062426,0.0004892136,0.00018928268,0.00014534623],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018534882,0.00008614812,0.9711701,0.000033551725,0.00009523958,0.0002193643,0.00039581786,0.003400628,0.010154011,0.0002724233,0.000058910504,0.0139284395],"study_design_scores_gemma":[0.00000452281,0.00002306667,0.9934701,0.000006270204,0.000022435393,0.00004478573,0.0001888618,0.00549695,0.0005108276,0.000106821775,0.000120331206,0.000005054565],"about_ca_topic_score_codex":0.017754177,"about_ca_topic_score_gemma":0.030288035,"teacher_disagreement_score":0.017754177,"about_ca_system_score_codex":0.0006685105,"about_ca_system_score_gemma":0.00039385952,"threshold_uncertainty_score":0.035301626},"labels":[],"label_agreement":null},{"id":"W2907182050","doi":"","title":"Upper stratospheric O 3 recovery as observed by IASI over 10 years of measurements","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Stratosphere; Environmental science; Ozone layer; Atmospheric sciences; Climatology; Latitude; Meteorology; Total Ozone Mapping Spectrometer; Geology; Geography; Geodesy","score_opus":0.03222664701697553,"score_gpt":0.23082748010349652,"score_spread":0.198600833086521,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2907182050","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9952434,0.00028962,0.00084688095,0.00005047246,0.000010842602,0.000010415084,0.00256445,0.000060385915,0.0009235793],"genre_scores_gemma":[0.99615866,0.00009199825,0.00041542485,0.000021636213,0.0000057086,0.000009149144,0.0030524905,0.000004722168,0.0002401927],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976474,0.000029626408,0.000015120293,0.00006469047,0.00006998564,0.00005585305],"domain_scores_gemma":[0.9992976,0.00010860209,0.0002790371,0.00009680739,0.00016571405,0.00005220236],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00081068435,0.00021520143,0.00020941535,0.00048405598,0.00018576201,0.00036028473,0.00029790733,0.000263693,0.0004513003],"category_scores_gemma":[0.0019575572,0.00007336145,0.00019083555,0.0006650457,0.00016545907,0.00032559692,0.0003906139,0.00024366016,0.00016086946],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020088274,0.000041333067,0.9756672,0.000042538777,0.00015147527,0.00005918758,0.00013835597,0.0029725572,0.006172945,0.00010743612,0.0006714572,0.013774629],"study_design_scores_gemma":[0.0000013624234,0.00003948389,0.9963904,0.000003906483,0.00001983751,0.00002877131,0.000044788798,0.0016955974,0.0010095882,0.0000146508555,0.0007479294,0.0000036998606],"about_ca_topic_score_codex":0.055333342,"about_ca_topic_score_gemma":0.06988614,"teacher_disagreement_score":0.055333342,"about_ca_system_score_codex":0.00052864815,"about_ca_system_score_gemma":0.00052806124,"threshold_uncertainty_score":0.110022545},"labels":[],"label_agreement":null},{"id":"W2910589912","doi":"","title":"Single well thermal tracer test, a new experimental set up for characterizing thermal transport in fractured media","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geothermal Energy Systems and Applications","field":"Energy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Guelph","funders":"","keywords":"Borehole; TRACER; Thermal; Aquifer; Geology; Geothermal gradient; SIGNAL (programming language); Mineralogy; Geotechnical engineering; Groundwater; Geophysics; Meteorology","score_opus":0.03367917289776613,"score_gpt":0.26804782774982394,"score_spread":0.23436865485205782,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2910589912","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8534159,0.0004650402,0.14142676,0.00006570065,0.00010701353,0.0003534474,0.0013110753,0.0010962365,0.0017589225],"genre_scores_gemma":[0.94068223,0.000313309,0.055618126,0.00005216073,0.000017398213,0.0004445521,0.0005384598,0.00012002282,0.0022137463],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99938154,0.000056233643,0.000035105346,0.00015537348,0.000289094,0.00008253711],"domain_scores_gemma":[0.99914634,0.00017266248,0.00021633196,0.00013993346,0.00023394609,0.000090766865],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005832354,0.0006475189,0.0005475113,0.00061135663,0.0004061274,0.0005222131,0.0007650422,0.0007251557,0.0014061152],"category_scores_gemma":[0.000709898,0.00030604986,0.00047136645,0.00043898716,0.00062282174,0.00085360266,0.00054252875,0.0006185312,0.0003266487],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018250261,0.00008466489,0.002112305,0.00010248322,0.00001393189,0.000120367855,0.000071578936,0.0012237844,0.9907907,0.00027086926,0.00011365754,0.0049132146],"study_design_scores_gemma":[0.000019821235,0.0008883948,0.0036884341,0.000009311944,0.000026508267,0.00015622684,0.00006202409,0.011062791,0.9825021,0.00011119973,0.0014393999,0.000033803506],"about_ca_topic_score_codex":0.0012599739,"about_ca_topic_score_gemma":0.0021255112,"teacher_disagreement_score":0.0014061152,"about_ca_system_score_codex":0.00050264347,"about_ca_system_score_gemma":0.0005414511,"threshold_uncertainty_score":0.0047038794},"labels":[],"label_agreement":null},{"id":"W293092380","doi":"","title":"Subduction of shallowly formed arc cumulates: Evidence from clinopyroxene compositions of garnet peridotites in the Rio San Juan Complex, northern Dominican Republic","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Ottawa","funders":"","keywords":"Subduction; Geology; Geochemistry; Seismology; Tectonics","score_opus":0.04893577638476081,"score_gpt":0.26031957770194764,"score_spread":0.21138380131718681,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W293092380","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992867,0.00006752856,0.000013657356,0.0000134627735,4.858911e-7,0.000002438792,0.000051727726,0.0000023898115,0.0005616689],"genre_scores_gemma":[0.9996118,0.00010188685,0.00003032373,0.0000063691787,0.0000014988196,0.000002612388,0.00008907465,0.0000026117627,0.00015384116],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990404,0.000010124697,0.000008131257,0.000029629322,0.000020190437,0.000027962891],"domain_scores_gemma":[0.9996685,0.000047810292,0.00013498966,0.000027400916,0.00006796697,0.000053387786],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016777667,0.00026546483,0.0002057583,0.0013312072,0.00084818783,0.0011464893,0.0004901558,0.0002833523,0.0008081918],"category_scores_gemma":[0.0007287348,0.0002245662,0.000115408904,0.0012448177,0.0009068115,0.00036461232,0.00073449133,0.00017760435,0.00009084708],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024434386,0.000034464432,0.9614921,0.000053149797,0.000058098052,0.00047094535,0.0035187963,0.00037456604,0.027627306,0.00019029391,0.000068729736,0.005867167],"study_design_scores_gemma":[0.000006410955,0.0000109069415,0.9979043,0.0000058063383,0.000013413132,0.000048341208,0.0009360153,0.00013306802,0.00057200936,0.0000179492,0.00034993602,0.0000019030543],"about_ca_topic_score_codex":0.19605245,"about_ca_topic_score_gemma":0.33802107,"teacher_disagreement_score":0.19605245,"about_ca_system_score_codex":0.0014096053,"about_ca_system_score_gemma":0.0008513372,"threshold_uncertainty_score":0.38982254},"labels":[],"label_agreement":null},{"id":"W2982951321","doi":"","title":"Making Room for Wetlands - Implementation of Managed Realignment and Salt Marsh Restoration to Enhance Resilience of Dykeland Communities to Climate Change Impacts in the Bay of Fundy, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Wetland; Salt marsh; Climate change; Marsh; Resilience (materials science); Environmental resource management; Environmental science; Psychological resilience; Oceanography; Geography; Environmental protection; Environmental planning; Ecology; Geology","score_opus":0.021194448373938028,"score_gpt":0.3034742978766182,"score_spread":0.2822798495026802,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2982951321","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9863349,0.00016780359,0.00080387946,0.0038376409,0.000043017182,0.0002618318,0.00012395903,0.00007272997,0.008354243],"genre_scores_gemma":[0.9930536,0.00011929012,0.0022185212,0.0003062731,0.0000067657966,0.00006552681,0.00007153964,0.0000068711624,0.00415162],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9990043,0.00017570144,0.000025145,0.00007543784,0.00017267169,0.0005467134],"domain_scores_gemma":[0.9984465,0.00008557578,0.00010609742,0.00008641854,0.00041775074,0.00085769384],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010792526,0.00016518353,0.00016438377,0.00033862737,0.0034165876,0.0017669365,0.0014755706,0.00065821176,0.0021461393],"category_scores_gemma":[0.0020615219,0.00017535155,0.00028596146,0.00029735203,0.0014886601,0.0005391262,0.0017578439,0.00070938235,0.0001225426],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0016233802,0.0031056758,0.48973858,0.0005716833,0.00026327732,0.0024117846,0.020730501,0.011194151,0.032716956,0.009807501,0.022076022,0.40576047],"study_design_scores_gemma":[0.0001402802,0.00066124194,0.93206465,0.00013572391,0.00006424627,0.0001348579,0.025555646,0.0040364806,0.0026364843,0.00094223145,0.03357464,0.0000534838],"about_ca_topic_score_codex":0.918481,"about_ca_topic_score_gemma":0.98840535,"teacher_disagreement_score":0.08151901,"about_ca_system_score_codex":0.024112413,"about_ca_system_score_gemma":0.100485764,"threshold_uncertainty_score":0.17494863},"labels":[],"label_agreement":null},{"id":"W2987019066","doi":"","title":"Protracted tectono-metamorphic history of the SE Superior Province : contribution of 40Ar/39Ar thermochronology in the Abitibi-Opatica contact zone, Québec, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Thermochronology; Geology; Metamorphic rock; Geochemistry; Metamorphism; Zircon","score_opus":0.019967818414001016,"score_gpt":0.20979304626213827,"score_spread":0.18982522784813724,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2987019066","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9828063,0.0021465241,0.00020354606,0.00048920844,0.00001900694,0.00002211068,0.0031261095,0.00002495598,0.011162151],"genre_scores_gemma":[0.99548954,0.0005567415,0.00015980433,0.00004313979,0.0000043862387,0.000004173688,0.000623128,0.000011306236,0.003107877],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997178,0.00001906652,0.00001719946,0.00005210789,0.00009540818,0.00009841095],"domain_scores_gemma":[0.9991339,0.00004241635,0.000103166196,0.000026373607,0.0006064854,0.000087680855],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00044800717,0.0002695881,0.0002805692,0.0021722391,0.002203,0.001486333,0.000614164,0.00036875447,0.0032534779],"category_scores_gemma":[0.0007995611,0.00023083464,0.00022636722,0.004350248,0.00088309427,0.0004766894,0.0005987832,0.0003842247,0.00030393334],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029483516,0.00005997027,0.9387334,0.00015952985,0.00019183167,0.0006817056,0.0035014378,0.002899948,0.0070690294,0.0019099873,0.0027338332,0.041764535],"study_design_scores_gemma":[0.0000065527624,0.000008134042,0.9923195,0.000046363813,0.000021769176,0.000059080638,0.0009892414,0.00076099904,0.00021119288,0.000052019925,0.0055137426,0.000011230771],"about_ca_topic_score_codex":0.99598014,"about_ca_topic_score_gemma":0.9986998,"teacher_disagreement_score":0.023976984,"about_ca_system_score_codex":0.023976984,"about_ca_system_score_gemma":0.021774702,"threshold_uncertainty_score":0.17396599},"labels":[],"label_agreement":null},{"id":"W2988375462","doi":"","title":"Investigating the sources of sediment in a Canadian agricultural watershed using a colour-based fingerprinting technique","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Watershed; Sediment; Agriculture; Environmental science; Geography; Hydrology (agriculture); Remote sensing; Water resource management; Computer science; Geology; Archaeology; Computer vision","score_opus":0.02174052204811277,"score_gpt":0.21036093606474632,"score_spread":0.18862041401663354,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2988375462","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9977552,0.000074676675,0.00065070175,0.00004766453,0.0000026266368,0.000023007575,0.00015601852,0.000016637276,0.0012734601],"genre_scores_gemma":[0.99626714,0.00011974258,0.0022798842,0.000021874042,0.0000018939263,0.00000980701,0.00011872602,0.0000061244295,0.0011748429],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99973494,0.000008632708,0.0000056539798,0.00004971236,0.00011178745,0.000089333116],"domain_scores_gemma":[0.99969625,0.000035658453,0.000027683043,0.000006823497,0.00018952363,0.00004417692],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002342593,0.0002773294,0.00030074248,0.0017660889,0.0040724655,0.0011210814,0.0009549309,0.0004452314,0.0005344157],"category_scores_gemma":[0.0005865554,0.00023136192,0.00016103,0.0027449308,0.00095350575,0.0003131056,0.0004532505,0.00041217997,0.00008760545],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041917156,0.00026535164,0.6751008,0.00013729263,0.0000864981,0.0021910581,0.0069385,0.00315028,0.23571764,0.0010969462,0.0010787692,0.073817775],"study_design_scores_gemma":[0.00001244915,0.00003731532,0.9811179,0.000010622742,0.00004561255,0.0002296545,0.0029440257,0.0056878803,0.007716658,0.000110501656,0.0020612746,0.000026067884],"about_ca_topic_score_codex":0.97379184,"about_ca_topic_score_gemma":0.98837984,"teacher_disagreement_score":0.026208162,"about_ca_system_score_codex":0.0077655967,"about_ca_system_score_gemma":0.011116455,"threshold_uncertainty_score":0.056343555},"labels":[],"label_agreement":null},{"id":"W298930419","doi":"","title":"GPS ionospheric scintillation and HF radar backscatter – A comparison between GISTM network and SuperDARN at high latitudes","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"GNSS positioning and interference","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Global Positioning System; Latitude; Geodesy; Backscatter (email); Ionosphere; Geology; Scintillation; Radar; Remote sensing; Geophysics; Telecommunications; Computer science","score_opus":0.007904013548442135,"score_gpt":0.21028938778560713,"score_spread":0.202385374237165,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W298930419","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9928469,0.0002484875,0.0023176474,0.00006630034,0.000027793274,0.000009924893,0.00093359867,0.00008372455,0.0034656185],"genre_scores_gemma":[0.9961894,0.00010247531,0.001578599,0.0000158644,0.000020818705,0.0000044238586,0.001827009,0.000024398747,0.00023698526],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99954504,0.000093228264,0.000029142753,0.00009272329,0.00016572584,0.000073999734],"domain_scores_gemma":[0.99867934,0.00026709324,0.00022579967,0.00013881945,0.0005987171,0.0000901355],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007716903,0.00021071383,0.00020855214,0.00082222925,0.00016605762,0.0005846354,0.00023730494,0.00023649543,0.00050895393],"category_scores_gemma":[0.0026432264,0.0001308787,0.00014650713,0.0014228082,0.00013387854,0.00072435895,0.00044593174,0.00014335812,0.00023261187],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001326693,0.00005293062,0.8947779,0.000082657105,0.00010923263,0.00023355089,0.0003606809,0.02283061,0.012062905,0.00078905665,0.0017245475,0.06564918],"study_design_scores_gemma":[0.000059816084,0.00017281606,0.9530513,0.000028723234,0.00006618341,0.00023643667,0.00026547594,0.039223213,0.0038257728,0.00018375114,0.0028613056,0.000025156327],"about_ca_topic_score_codex":0.015160346,"about_ca_topic_score_gemma":0.025297385,"teacher_disagreement_score":0.015160346,"about_ca_system_score_codex":0.0004536698,"about_ca_system_score_gemma":0.0003296542,"threshold_uncertainty_score":0.030144215},"labels":[],"label_agreement":null},{"id":"W2990284147","doi":"","title":"Oceanography of a tidally choked fjord: Lake Melville, Labrador","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Ecology and biodiversity studies","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Fjord; Oceanography; Geology","score_opus":0.004692031833545193,"score_gpt":0.1676668045789564,"score_spread":0.16297477274541122,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2990284147","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993048,0.000019430945,0.000017403509,0.0000297749,9.71916e-7,0.0000022712172,0.000081443264,0.000004422568,0.00053952745],"genre_scores_gemma":[0.9990989,0.000017436632,0.00006774277,0.000017357725,0.0000013484532,0.0000021990645,0.000090227484,0.000002055234,0.0007027781],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990857,0.000013948142,0.0000068986697,0.000021422657,0.000014322567,0.000034820525],"domain_scores_gemma":[0.9998511,0.000016575563,0.00002642513,0.0000075351127,0.000033969874,0.00006435508],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014862546,0.00012117678,0.00024935303,0.0005740451,0.0014681589,0.00073002314,0.00063408224,0.00043910102,0.0014759094],"category_scores_gemma":[0.00038339192,0.00015801046,0.00016644681,0.00068357046,0.000669831,0.00035409152,0.0010012339,0.00019708145,0.00018523705],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00056842493,0.000087601045,0.95583665,0.000081669124,0.0001073459,0.0029969274,0.012979667,0.00078213675,0.01238464,0.0002968481,0.0008867065,0.012991332],"study_design_scores_gemma":[0.0000061052965,0.000034401084,0.99450916,0.000009314563,0.000015370613,0.000163601,0.0036817705,0.0004485894,0.00022264359,0.000016137541,0.0008859673,0.000007048423],"about_ca_topic_score_codex":0.583444,"about_ca_topic_score_gemma":0.8457085,"teacher_disagreement_score":0.416556,"about_ca_system_score_codex":0.0018858623,"about_ca_system_score_gemma":0.001468347,"threshold_uncertainty_score":0.83801836},"labels":[],"label_agreement":null},{"id":"W2990791626","doi":"","title":"Modelling of seasonal dynamics of Wetland-Groundwater flow interaction in the Canadian Prairies","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Wetland; Groundwater; Hydrology (agriculture); Environmental science; Groundwater flow; Flow (mathematics); Water resource management; Geography; Ecology; Aquifer; Geology; Mathematics; Biology; Geotechnical engineering","score_opus":0.027603744497154678,"score_gpt":0.2288082018508917,"score_spread":0.20120445735373704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2990791626","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9966336,0.000054214655,0.0012057914,0.00014880004,0.0000056663844,0.000015627644,0.00025607296,0.000039344286,0.0016409837],"genre_scores_gemma":[0.9982394,0.000045797573,0.0008013007,0.000012818689,0.0000018316339,0.000008353875,0.00009754126,0.00000747468,0.00078553054],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99979204,0.000031169035,0.000009609014,0.000056418947,0.000028684208,0.00008196064],"domain_scores_gemma":[0.9996271,0.0001438985,0.000043576692,0.00001979836,0.00010000999,0.00006557101],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003955963,0.00039511596,0.00043588458,0.000362475,0.0013119245,0.0015638957,0.0017039696,0.000980273,0.0012586232],"category_scores_gemma":[0.0013536117,0.00045456956,0.00046868448,0.00066994654,0.0010257507,0.00064401515,0.0005189444,0.000672201,0.000079282996],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006618591,0.00007817721,0.030786963,0.000022031136,0.000045276964,0.00008803021,0.00018071983,0.96265054,0.0013022572,0.000882927,0.00049067946,0.0034062343],"study_design_scores_gemma":[0.000015774694,0.000016935079,0.017763313,0.0000038311746,0.000015834652,0.000008956165,0.00018624777,0.98124266,0.00019581785,0.00014881686,0.0003860323,0.00001572024],"about_ca_topic_score_codex":0.9618294,"about_ca_topic_score_gemma":0.9619138,"teacher_disagreement_score":0.038170576,"about_ca_system_score_codex":0.010189048,"about_ca_system_score_gemma":0.0101786945,"threshold_uncertainty_score":0.07679069},"labels":[],"label_agreement":null},{"id":"W2991025087","doi":"","title":"Mechanisms of decadal variability in the Labrador Sea and the wider North Atlantic in a high-resolution climate model","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ocean gyre; North Atlantic oscillation; Climatology; Oceanography; Thermohaline circulation; Atlantic multidecadal oscillation; Climate model; Ridge; Ocean current; North Atlantic Deep Water; Geology; Climate change; Sea surface temperature","score_opus":0.009614185575229224,"score_gpt":0.2018175602443437,"score_spread":0.19220337466911447,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2991025087","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.988154,0.0003148896,0.0041092406,0.0005916435,0.000041725427,0.000013846386,0.0022065311,0.0003367919,0.004231381],"genre_scores_gemma":[0.997437,0.00012016019,0.0009170478,0.000053918324,0.000010688833,0.000014944276,0.0007817098,0.000049961644,0.0006144479],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985445,0.00004564079,0.000009714603,0.000045793084,0.000015344085,0.000028995006],"domain_scores_gemma":[0.99978906,0.000055250774,0.000042293086,0.00004459298,0.000032583313,0.000036225287],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00054205966,0.00040637393,0.0004004799,0.00033929467,0.0003870809,0.001428579,0.00089655904,0.00085013744,0.0015562811],"category_scores_gemma":[0.0010991561,0.00031338749,0.00081633695,0.0006475143,0.00043048628,0.0006238528,0.0004950395,0.00069779134,0.00021793474],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000201346,0.00008859338,0.0633265,0.000048780275,0.0002970515,0.00021058765,0.00014190165,0.92004037,0.0036919755,0.004787701,0.0017950884,0.0053701797],"study_design_scores_gemma":[0.000067375455,0.000038261303,0.049979318,0.000018382378,0.00009139209,0.00004178162,0.00012177729,0.9458709,0.0005416974,0.0013561654,0.0018312468,0.000041872885],"about_ca_topic_score_codex":0.062771015,"about_ca_topic_score_gemma":0.041944556,"teacher_disagreement_score":0.062771015,"about_ca_system_score_codex":0.0010234675,"about_ca_system_score_gemma":0.00083159155,"threshold_uncertainty_score":0.12481129},"labels":[],"label_agreement":null},{"id":"W2991122877","doi":"","title":"The 3D distribution of cordierite and biotite in hornfels from the Bugaboo contact aureole (British Columbia, Canada)","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Mineralogy and Gemology Studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Hornfels; Cordierite; Biotite; Geology; Andalusite; Geochemistry; Metamorphism; Materials science; Paleontology; Metallurgy","score_opus":0.004555168335085417,"score_gpt":0.16050664689162156,"score_spread":0.15595147855653613,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2991122877","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99417746,0.00023136793,0.000100868885,0.000042576612,0.0000039707743,0.000016076316,0.0018732969,0.000027586198,0.0035267929],"genre_scores_gemma":[0.9970393,0.00014081063,0.00025728263,0.000024895166,0.0000017338198,0.000008581364,0.0008211042,0.000012369593,0.0016939339],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978286,0.0000053201634,0.000009395595,0.000049736984,0.00007398797,0.00007863836],"domain_scores_gemma":[0.99970067,0.000017437955,0.000032369033,0.000007919885,0.00015952362,0.00008206765],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000106302694,0.00029306114,0.0002943453,0.0043948335,0.0026693754,0.0014656243,0.00067068153,0.0006143018,0.002569757],"category_scores_gemma":[0.00034655546,0.00037268546,0.00026629452,0.0032068898,0.0008778044,0.00028876716,0.0009204118,0.000339703,0.000536166],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022087229,0.00003848128,0.9569935,0.00007566449,0.000065799286,0.0007423919,0.003353721,0.0006487409,0.0155031085,0.00014506903,0.0010393123,0.021173304],"study_design_scores_gemma":[0.0000024685885,0.0000033946399,0.9972976,0.0000097489155,0.000006967342,0.00006569793,0.0013991393,0.00023146234,0.00018901569,0.000008072137,0.00078093325,0.0000054161414],"about_ca_topic_score_codex":0.9757613,"about_ca_topic_score_gemma":0.99197173,"teacher_disagreement_score":0.024238706,"about_ca_system_score_codex":0.0072044246,"about_ca_system_score_gemma":0.0042990223,"threshold_uncertainty_score":0.05227202},"labels":[],"label_agreement":null},{"id":"W2991281995","doi":"","title":"Permanent Access to the Seafloor Through Ocean Networks Canada - Key Discoveries From Nine Years of Data","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Seafloor spreading; Oceanography; Key (lock); Geology; Geography; Computer science; Computer security","score_opus":0.04285118430638781,"score_gpt":0.2640892559803582,"score_spread":0.2212380716739704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2991281995","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.07749658,0.008628309,0.0068087545,0.015598049,0.0015508407,0.0003931292,0.7973333,0.0022642743,0.08992666],"genre_scores_gemma":[0.3466316,0.012395526,0.022910465,0.0037087034,0.00050065754,0.00039661644,0.5131202,0.001164842,0.099171355],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.9973225,0.000117710915,0.00010403914,0.0003281102,0.0015516407,0.0005759846],"domain_scores_gemma":[0.9838696,0.0007056118,0.0010752334,0.0013771844,0.010023058,0.0029492825],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002243772,0.0006094223,0.0005109539,0.0043284474,0.0024385543,0.0043199826,0.0016750803,0.0007586017,0.013858937],"category_scores_gemma":[0.010214346,0.0004150059,0.00046783412,0.011926731,0.0012550899,0.0022846046,0.004241708,0.0017833053,0.0035517244],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004339567,0.00006307097,0.23111792,0.0010220152,0.0002713307,0.00044061252,0.0020976623,0.0016469429,0.0024019757,0.009814278,0.53226346,0.21842673],"study_design_scores_gemma":[0.000028847693,0.000023343668,0.2210089,0.0005491803,0.00006577659,0.0000692514,0.0016655816,0.0010385556,0.0010583195,0.001346671,0.7730536,0.00009190372],"about_ca_topic_score_codex":0.98357785,"about_ca_topic_score_gemma":0.99008685,"teacher_disagreement_score":0.016422153,"about_ca_system_score_codex":0.014754447,"about_ca_system_score_gemma":0.07841872,"threshold_uncertainty_score":0.10705149},"labels":[],"label_agreement":null},{"id":"W2991699728","doi":"","title":"Reconstructing decades of glacial mass loss in the Canadian Arctic Archipelago","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Glacial period; Arctic; Physical geography; The arctic; Oceanography; Geography; Geology; Paleontology","score_opus":0.035291750589267416,"score_gpt":0.24468895628689202,"score_spread":0.2093972056976246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2991699728","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9941829,0.0010266012,0.00035940338,0.00030665298,0.000013493401,0.000004701207,0.0019869874,0.000029202418,0.0020899877],"genre_scores_gemma":[0.9974734,0.00034051255,0.0003657489,0.00004345926,0.0000054840834,0.0000034683637,0.0012510539,0.0000129405735,0.0005038791],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998122,0.000018554834,0.000010044389,0.000045411358,0.000036473015,0.00007744568],"domain_scores_gemma":[0.9991596,0.000114394905,0.0001006296,0.00007682769,0.00038371157,0.00016474108],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007969763,0.00032874878,0.0003194295,0.002571553,0.0017094048,0.001499847,0.0006313084,0.00057565706,0.0010961832],"category_scores_gemma":[0.0020486698,0.0003276855,0.00032870207,0.002800462,0.000610909,0.0005933498,0.0008256685,0.0005044335,0.00017921464],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004408097,0.00006540358,0.91733396,0.00009141723,0.00054603734,0.00034933412,0.0018509129,0.034396935,0.0035013475,0.0015740985,0.0039566043,0.035893157],"study_design_scores_gemma":[0.00001575466,0.000011868948,0.9771054,0.00007855005,0.00008432931,0.00005027414,0.0017146048,0.013132435,0.0003739256,0.0003172724,0.0070813773,0.000034295103],"about_ca_topic_score_codex":0.9633252,"about_ca_topic_score_gemma":0.98014945,"teacher_disagreement_score":0.036674798,"about_ca_system_score_codex":0.009024739,"about_ca_system_score_gemma":0.009311173,"threshold_uncertainty_score":0.07378149},"labels":[],"label_agreement":null},{"id":"W299198297","doi":"","title":"Diurnally, Seasonally and Regionally Varying Background Ozone and Decadal Trends in the Planetary Boundary Layer Over Canada and the United States from 1997 to 2006","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ozone; Environmental science; Climatology; Percentile; Atmospheric sciences; Principal component analysis; Residence; Ozone layer; Meteorology; Geography; Statistics; Demography; Geology; Mathematics","score_opus":0.012224662664595865,"score_gpt":0.20991426974045352,"score_spread":0.19768960707585764,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W299198297","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99501795,0.00043156932,0.000120214274,0.00008894784,0.0000053022154,0.0000069397975,0.0035075534,0.000014615711,0.00080691266],"genre_scores_gemma":[0.9947184,0.0004552274,0.00028146734,0.000027934366,0.0000030907918,0.0000055711507,0.003475782,0.0000043167934,0.0010283082],"study_design_codex":"observational","study_design_gemma":"not_applicable","domain_scores_codex":[0.9998636,0.000006453347,0.000006096008,0.000025360627,0.000052134037,0.000046341123],"domain_scores_gemma":[0.99944717,0.00002768029,0.00007083843,0.000012473307,0.00035265484,0.00008908665],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021862007,0.0001885048,0.00020302083,0.00092613813,0.0007742325,0.0006819866,0.000343643,0.00015219445,0.00050992146],"category_scores_gemma":[0.00050675066,0.00012334375,0.00018985459,0.0019791326,0.00024469526,0.00017802822,0.00030803515,0.0002325877,0.0000691643],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016121974,0.000024270466,0.98272264,0.00003472839,0.000105984676,0.00008541217,0.0005589015,0.0011176718,0.0013832654,0.00015480164,0.0012032974,0.012447811],"study_design_scores_gemma":[0.0000019973631,0.0000039590664,0.9985214,0.0000040435402,0.000015411431,0.000011858348,0.00023467833,0.00040515172,0.00014577195,0.00000858547,0.00064414495,0.000002956873],"about_ca_topic_score_codex":0.987944,"about_ca_topic_score_gemma":0.9938712,"teacher_disagreement_score":0.012055993,"about_ca_system_score_codex":0.009789796,"about_ca_system_score_gemma":0.0072955056,"threshold_uncertainty_score":0.07103026},"labels":[],"label_agreement":null},{"id":"W2992657408","doi":"10.6084/m9.figshare.c.3296963","title":"Combining near infrared spectra of feces and geostatistics to generate forage nutritional quality maps across landscapes","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Genetic and phenotypic traits in livestock","field":"Biochemistry, Genetics and Molecular Biology","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Forage; Geostatistics; Feces; Environmental science; Quality (philosophy); Remote sensing; Geography; Mathematics; Agronomy; Biology; Ecology; Statistics; Spatial variability","score_opus":0.01398215416569197,"score_gpt":0.280253620285452,"score_spread":0.26627146611976,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2992657408","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.4632267,0.0002532371,0.5238266,0.0001947724,0.000027834041,0.00016634571,0.003214485,0.0064586084,0.0026314708],"genre_scores_gemma":[0.61280054,0.00016993574,0.3832376,0.000056978257,0.00002216584,0.00007811927,0.0025804166,0.00022366409,0.00083064917],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99983037,0.000029236711,0.000012557523,0.000052771175,0.000055961005,0.000019108698],"domain_scores_gemma":[0.99934334,0.00022847678,0.00013033718,0.000066735236,0.00019217722,0.00003897134],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00062466704,0.0005945975,0.00033711843,0.004115126,0.00021405912,0.00083825574,0.0003500042,0.0002307748,0.00085405423],"category_scores_gemma":[0.0015008007,0.00022277207,0.0005309142,0.002474488,0.00019940773,0.00037717578,0.00046315067,0.00026797215,0.0003161664],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00045005218,0.00041504897,0.17265949,0.00032294253,0.0005223896,0.0003733336,0.00052181724,0.12662338,0.054072008,0.0017932612,0.003907316,0.63833904],"study_design_scores_gemma":[0.000043651045,0.00018002494,0.16922377,0.00004047439,0.00014392905,0.00026337252,0.00070066133,0.8102793,0.011388952,0.004369507,0.0032630963,0.00010316649],"about_ca_topic_score_codex":0.02991051,"about_ca_topic_score_gemma":0.058734678,"teacher_disagreement_score":0.02991051,"about_ca_system_score_codex":0.00038173306,"about_ca_system_score_gemma":0.00073866785,"threshold_uncertainty_score":0.0594728},"labels":[],"label_agreement":null},{"id":"W2993305956","doi":"","title":"Elastic finite-difference modeling of volcanic-hosted massive sulphide deposits, Halfmile Lake, New Brunswick, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydraulic Fracturing and Reservoir Analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Volcano; Geochemistry; Archaeology; Geography","score_opus":0.010303168658905628,"score_gpt":0.1925098287171809,"score_spread":0.18220666005827527,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2993305956","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9731857,0.00019804365,0.0075548105,0.00033513445,0.000034813427,0.00004405579,0.0011024929,0.00013143236,0.017413415],"genre_scores_gemma":[0.99191755,0.00010846901,0.0014558615,0.00002464302,0.0000036043755,0.000018233097,0.00029501558,0.000024870738,0.0061518257],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998933,0.0000075208995,0.000006138297,0.000017543793,0.000034266857,0.000041270658],"domain_scores_gemma":[0.99970055,0.000093032344,0.000026863674,0.000013449865,0.00012680158,0.00003935993],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018647702,0.00041940538,0.0004282511,0.0006546389,0.0013742168,0.0012557595,0.0015610333,0.0011013892,0.0025701772],"category_scores_gemma":[0.0009408775,0.00045415552,0.00038763814,0.0007605206,0.0010311749,0.00034230258,0.0004894242,0.0004729493,0.00018209087],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000036686124,0.000033878066,0.0070209475,0.000018868286,0.00001330248,0.00010034428,0.00005877569,0.9885675,0.00079902547,0.00093146035,0.0003600887,0.0020591647],"study_design_scores_gemma":[0.000009933231,0.0000058336564,0.003212893,0.000006792777,0.0000054915554,0.000009727365,0.00011193733,0.99581075,0.00027019365,0.00014339427,0.00040271773,0.000010244831],"about_ca_topic_score_codex":0.9283605,"about_ca_topic_score_gemma":0.9320286,"teacher_disagreement_score":0.07163948,"about_ca_system_score_codex":0.007462995,"about_ca_system_score_gemma":0.010764477,"threshold_uncertainty_score":0.14412272},"labels":[],"label_agreement":null},{"id":"W2993374313","doi":"","title":"Volumetric and Area Changes of the Kaskawulsh Glacier, Yukon Territory, Canada","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Geology; Physical geography; Geography; Archaeology","score_opus":0.010941410189156479,"score_gpt":0.16646257148384744,"score_spread":0.15552116129469096,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2993374313","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99169064,0.00028440345,0.00005749961,0.000075763885,0.0000063548646,0.000008111231,0.005350088,0.00002337533,0.0025037231],"genre_scores_gemma":[0.9957278,0.00012848184,0.000060038805,0.000014014964,0.000001978955,0.000004383801,0.0026180581,0.000008308622,0.0014369907],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999838,0.0000075069256,0.000008585141,0.000036643014,0.000047436002,0.000061794155],"domain_scores_gemma":[0.9993793,0.000027996794,0.00005098753,0.000018602386,0.00044089038,0.00008217344],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015662337,0.00026980255,0.00025907622,0.00143719,0.0012290756,0.0010489823,0.0006776911,0.00034335614,0.001947503],"category_scores_gemma":[0.0005759186,0.00018187915,0.00031016336,0.0027592345,0.00046585032,0.00037889896,0.00044244237,0.0002738574,0.00031322558],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026844477,0.000041854528,0.9761727,0.00007559465,0.00024259136,0.00019166521,0.001408096,0.0033964596,0.00278332,0.0004242017,0.0031423261,0.011852746],"study_design_scores_gemma":[0.0000025895185,0.0000026482794,0.9985648,0.000004401526,0.000008211441,0.0000130673625,0.00035639806,0.00037383373,0.00006841123,0.000009735523,0.0005915893,0.00000431921],"about_ca_topic_score_codex":0.9900191,"about_ca_topic_score_gemma":0.9942471,"teacher_disagreement_score":0.011511729,"about_ca_system_score_codex":0.011511729,"about_ca_system_score_gemma":0.008675871,"threshold_uncertainty_score":0.08352381},"labels":[],"label_agreement":null},{"id":"W2993638163","doi":"","title":"How accurately do we know the temperature of the surface of the earth","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Series (stratigraphy); Statistics; Range (aeronautics); Term (time); Mathematics; Scale (ratio); Scaling; Observational error; Time series; Mean squared error; Econometrics; Geography; Geology; Physics","score_opus":0.020715907315792544,"score_gpt":0.22526541126655758,"score_spread":0.20454950395076504,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2993638163","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6085342,0.024374131,0.28308016,0.023270437,0.0026806532,0.000095816584,0.016363053,0.0016239737,0.039977476],"genre_scores_gemma":[0.95017654,0.0061447774,0.03204186,0.001917637,0.0012818143,0.000068705245,0.006727743,0.00024635546,0.001394679],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9959122,0.0010406689,0.0002775338,0.0014712542,0.0010065053,0.00029184736],"domain_scores_gemma":[0.98311424,0.007305776,0.0026128006,0.0030728073,0.0034822426,0.00041218073],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0047854106,0.0008862376,0.001240715,0.0020803479,0.0004944342,0.0041114404,0.0012286754,0.0029067986,0.0018406397],"category_scores_gemma":[0.04693437,0.0004808852,0.00078566663,0.0020666656,0.002248644,0.013003736,0.0014385305,0.0020046837,0.0028623543],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00047786132,0.0003057936,0.42693517,0.0015990793,0.0017189462,0.0002058412,0.0026289155,0.13058235,0.011088049,0.047185097,0.029284088,0.34798887],"study_design_scores_gemma":[0.000098848555,0.00047074162,0.44428948,0.0011708296,0.00062657084,0.0007153061,0.003264249,0.2044887,0.020608254,0.18454155,0.1388999,0.0008256125],"about_ca_topic_score_codex":0.01020156,"about_ca_topic_score_gemma":0.0052684112,"teacher_disagreement_score":0.01020156,"about_ca_system_score_codex":0.0010871191,"about_ca_system_score_gemma":0.001040262,"threshold_uncertainty_score":0.025307953},"labels":[],"label_agreement":null},{"id":"W2993917466","doi":"","title":"Land-Sea relationships of climate-related records: example of the Holocene in the eastern Canadian Arctic and Greenland","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Arctic; Physical geography; Oceanography; Geology; Climatology; Geography","score_opus":0.05079715355778224,"score_gpt":0.2480864816124737,"score_spread":0.19728932805469146,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2993917466","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99145234,0.0014546417,0.00014995328,0.00024309942,0.00000589848,0.000006100565,0.002264766,0.000023843711,0.004399305],"genre_scores_gemma":[0.9980671,0.00043762618,0.00017447711,0.000018514394,0.000002099764,0.000001543613,0.00068362075,0.000005623485,0.0006093894],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998074,0.00002008762,0.000013042699,0.00003258149,0.000033186927,0.0000938138],"domain_scores_gemma":[0.99879396,0.00017485197,0.00016230183,0.00006480533,0.00064082106,0.00016321514],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005305371,0.00019957645,0.00028861195,0.0028674013,0.0021788846,0.0014761798,0.000540313,0.00032724562,0.0016656717],"category_scores_gemma":[0.0019950182,0.00016735231,0.0003015228,0.0062047695,0.00085281045,0.00048235175,0.0007482458,0.00032990164,0.00010866539],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014123847,0.0000127600215,0.9735327,0.00006683408,0.00019511905,0.00026038996,0.002537411,0.0012705592,0.001436555,0.0013872387,0.0011650263,0.017994069],"study_design_scores_gemma":[0.0000015295257,0.000003378096,0.99708194,0.000011588095,0.0000338345,0.000035642955,0.00087126653,0.0004314162,0.00007200735,0.00006612159,0.0013855643,0.0000057994516],"about_ca_topic_score_codex":0.9847461,"about_ca_topic_score_gemma":0.99518245,"teacher_disagreement_score":0.0152539015,"about_ca_system_score_codex":0.006784345,"about_ca_system_score_gemma":0.0077769333,"threshold_uncertainty_score":0.04922414},"labels":[],"label_agreement":null},{"id":"W2994764418","doi":"","title":"Geochemical and petrological control on the reservoir quality of the unconventional petroleum systems in western Canada","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Petroleum; Petroleum engineering; Tight oil; Unconventional oil; Geochemistry; Petroleum reservoir; Earth science; Mining engineering; Oil shale; Paleontology","score_opus":0.014615633983192702,"score_gpt":0.2156104270875053,"score_spread":0.2009947931043126,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2994764418","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99804974,0.00006828947,0.000069468806,0.00004457819,9.360574e-7,0.0000055818555,0.00028258807,0.0000042885167,0.0014745231],"genre_scores_gemma":[0.998855,0.00005284327,0.00007429969,0.0000085286265,3.901412e-7,0.0000013348383,0.000121130644,0.0000022610034,0.00088429346],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962187,0.00002897696,0.00001775771,0.000035825815,0.00014597047,0.0001496113],"domain_scores_gemma":[0.999005,0.00007878984,0.00011411571,0.000025058622,0.0006395585,0.00013756349],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024792925,0.0001539904,0.000201175,0.0009876799,0.0017912528,0.0012221163,0.0005972173,0.00020435273,0.0010353111],"category_scores_gemma":[0.0009051636,0.00019252686,0.00020103867,0.002148713,0.00084575143,0.00034819258,0.00059251563,0.00030096795,0.00010293061],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017876491,0.000051719177,0.9775997,0.00003806473,0.00007035693,0.000250175,0.0025420475,0.0020191874,0.002943133,0.0006887353,0.0005757832,0.01304232],"study_design_scores_gemma":[0.0000024443675,0.000013634315,0.9927861,0.000013077551,0.000014053853,0.00004321982,0.0034275493,0.0017095801,0.0007302048,0.000044078057,0.001205945,0.000010155825],"about_ca_topic_score_codex":0.9945208,"about_ca_topic_score_gemma":0.9981792,"teacher_disagreement_score":0.018216861,"about_ca_system_score_codex":0.018216861,"about_ca_system_score_gemma":0.017693011,"threshold_uncertainty_score":0.13217324},"labels":[],"label_agreement":null},{"id":"W2994907106","doi":"","title":"Ocean Networks Canada: Live Sensing of a Dynamic Ocean System","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Underwater Acoustics Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Ocean observations; Ocean dynamics; Remote sensing; Geology; Environmental science; Meteorology; Computer science; Climatology; Ocean current; Geography","score_opus":0.0075813071052202655,"score_gpt":0.18748848612193614,"score_spread":0.17990717901671588,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2994907106","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.5544324,0.0030456984,0.07839475,0.0073599494,0.0017577402,0.0012128644,0.15435897,0.021497332,0.17794037],"genre_scores_gemma":[0.8308728,0.0011890293,0.07386299,0.0006063482,0.00013531419,0.00025357067,0.046009615,0.00077471073,0.046295654],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.99929214,0.00004452901,0.000012952132,0.00008427506,0.0003944399,0.00017164131],"domain_scores_gemma":[0.9990214,0.00006872074,0.000028962755,0.000076827775,0.00064757507,0.00015642312],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006351101,0.0006176617,0.00035110256,0.0008804364,0.0016556808,0.001292506,0.0011356133,0.0005115211,0.0063196328],"category_scores_gemma":[0.0012573693,0.00029922754,0.00018506916,0.0019735405,0.0005780207,0.00090256653,0.0012240695,0.00076778024,0.001217263],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0009991423,0.00031583884,0.08293694,0.00047084285,0.00019749333,0.00073056965,0.0019570738,0.047568668,0.041240163,0.01372345,0.45383117,0.3560286],"study_design_scores_gemma":[0.0004029396,0.0002715623,0.15168734,0.00019187521,0.0001311321,0.0003562756,0.00458228,0.4188106,0.023040272,0.0037138774,0.39650106,0.00031078642],"about_ca_topic_score_codex":0.9663263,"about_ca_topic_score_gemma":0.9818366,"teacher_disagreement_score":0.9663263,"about_ca_system_score_codex":0.005944382,"about_ca_system_score_gemma":0.018472334,"threshold_uncertainty_score":0.06774396},"labels":[],"label_agreement":null},{"id":"W2994956337","doi":"","title":"Mercury's inner core size and core crystallization regime","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Planetary Science and Exploration","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Inner core; Outer core; Geophysics; Mantle (geology); Dynamo; Geology; Core–mantle boundary; Snow; Physics; Magnetic field","score_opus":0.017424082814844654,"score_gpt":0.22430883175234959,"score_spread":0.20688474893750494,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2994956337","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99805033,0.000050365292,0.00018523754,0.000013978789,6.7380074e-7,7.686128e-7,0.00011244004,0.000020801499,0.0015653628],"genre_scores_gemma":[0.9996927,0.000009896947,0.0000658277,0.0000023112798,0.0000010318344,3.7844518e-7,0.00010921473,0.000005014528,0.00011362091],"study_design_codex":"observational","study_design_gemma":"not_applicable","domain_scores_codex":[0.9999219,0.0000034525322,0.0000036648623,0.000032495413,0.000017794304,0.000020699119],"domain_scores_gemma":[0.99969316,0.00006486238,0.00009292002,0.000031552998,0.0000641009,0.000053328447],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013316797,0.000108038956,0.00014302059,0.0005522736,0.000243499,0.0003936865,0.00018857041,0.00012564038,0.0012027101],"category_scores_gemma":[0.00046648015,0.000118307085,0.00014055676,0.00016017792,0.00030785723,0.00031782192,0.00047505618,0.00009480282,0.00021317638],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004987329,0.000024991687,0.6371928,0.000060954506,0.00010409381,0.00023698727,0.0004911118,0.003583334,0.33482632,0.0016256728,0.00048439292,0.020870708],"study_design_scores_gemma":[0.0000055461323,0.000023669694,0.96409535,0.0000034876525,0.0000162206,0.00013163865,0.00009528704,0.0027137634,0.03195143,0.00022402676,0.0007306632,0.000008936628],"about_ca_topic_score_codex":0.007978697,"about_ca_topic_score_gemma":0.0057911356,"teacher_disagreement_score":0.007978697,"about_ca_system_score_codex":0.000445987,"about_ca_system_score_gemma":0.00015003484,"threshold_uncertainty_score":0.015864551},"labels":[],"label_agreement":null},{"id":"W2994992526","doi":"","title":"Multi-decadal water-table manipulation alters peatland hydraulic structure and moisture retention.","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McMaster University","funders":"","keywords":"Peat; Hydraulic conductivity; Water content; Moisture; Water retention; Hydrology (agriculture); Sphagnum; Soil science; Water table; Environmental science; Bulk density; Geology; Chemistry; Soil water; Ecology; Geotechnical engineering; Groundwater","score_opus":0.02010375996745919,"score_gpt":0.22718840668417278,"score_spread":0.2070846467167136,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2994992526","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9997086,0.00004353928,0.000080539,0.0000036567149,9.2195427e-7,0.0000010937061,0.00006636562,0.000004047174,0.0000911641],"genre_scores_gemma":[0.9996474,0.00002169189,0.00010236127,0.0000052201285,8.9184925e-7,0.0000023733458,0.000104986255,0.0000019130005,0.000113160735],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99992263,0.000009756415,0.000004835758,0.000034267763,0.000011162586,0.00001728516],"domain_scores_gemma":[0.99976665,0.000037319158,0.00010307472,0.000018905395,0.000027002641,0.000047018093],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001793851,0.00016799344,0.00022727683,0.00033750513,0.00015568295,0.00033948672,0.0001990901,0.00022175378,0.00038217183],"category_scores_gemma":[0.00026552734,0.00014124882,0.00017912188,0.00020902873,0.00027864662,0.0002757572,0.0003748973,0.00023148216,0.00008850331],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048476618,0.00010204378,0.48209172,0.00005192156,0.00016673774,0.0002914711,0.00039560045,0.0010019473,0.50562286,0.000105683976,0.000105199484,0.009579957],"study_design_scores_gemma":[0.0000013195182,0.000052455336,0.9972596,6.3756215e-7,0.0000070716924,0.000024712048,0.00005503242,0.00038363025,0.0020821125,0.000009165616,0.00012221067,0.000001981795],"about_ca_topic_score_codex":0.006717903,"about_ca_topic_score_gemma":0.015523851,"teacher_disagreement_score":0.006717903,"about_ca_system_score_codex":0.0005213239,"about_ca_system_score_gemma":0.00015873456,"threshold_uncertainty_score":0.01335758},"labels":[],"label_agreement":null},{"id":"W2995004713","doi":"","title":"Deglacial to postglacial marine environments of SE Barrow Strait, Canadian Arctic Archipelago","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Oceanography; Arctic; Geology","score_opus":0.010990963557843757,"score_gpt":0.22428894710767908,"score_spread":0.2132979835498353,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995004713","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99749196,0.00035554796,0.000030829444,0.0000585261,0.000004534312,0.0000047669564,0.0006149836,0.000004694247,0.0014342084],"genre_scores_gemma":[0.99819934,0.0002895619,0.00008512017,0.000021164578,0.0000021194542,0.000004066863,0.0005669158,0.000004021576,0.00082755],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997708,0.000020066398,0.0000123395575,0.000040158622,0.00004140345,0.00011518181],"domain_scores_gemma":[0.99929595,0.000032686108,0.00007475634,0.000014157289,0.0004336481,0.00014871056],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000319294,0.00020805126,0.00024330521,0.0019193031,0.003311447,0.001049919,0.00058251625,0.0002492444,0.0013958286],"category_scores_gemma":[0.00074857776,0.00018604564,0.00022640414,0.002789885,0.00076739147,0.00040463326,0.00070448586,0.00030168472,0.00015330841],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044101523,0.00003638032,0.97451144,0.00005822164,0.00010416146,0.00022312997,0.0060233953,0.00082975614,0.003216605,0.0004350149,0.001099679,0.013021351],"study_design_scores_gemma":[0.0000015855395,0.0000059610943,0.9977108,0.0000082441375,0.000008156845,0.000015462949,0.001464682,0.00008711886,0.000048716898,0.000012189206,0.00063397305,0.0000030958743],"about_ca_topic_score_codex":0.9920142,"about_ca_topic_score_gemma":0.99801195,"teacher_disagreement_score":0.011066643,"about_ca_system_score_codex":0.011066643,"about_ca_system_score_gemma":0.012800993,"threshold_uncertainty_score":0.08029449},"labels":[],"label_agreement":null},{"id":"W2995047585","doi":"","title":"Forecasting method of ice blocks fall by logistic model and melting degree-days calculation: a case study in northern Gaspésie, Québec, Canada.","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Smart Materials for Construction","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Degree (music); Degree day; Logistic regression; Climatology; Meteorology; Geology; Environmental science; Statistics; Geography; Mathematics; Physics","score_opus":0.03659727247587414,"score_gpt":0.24948548199946102,"score_spread":0.2128882095235869,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995047585","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95329165,0.0003313647,0.03547571,0.0005966905,0.000038656442,0.00012807,0.0032215791,0.0006343145,0.0062819333],"genre_scores_gemma":[0.9845941,0.000109454995,0.012201933,0.000014392273,0.000005864973,0.000033967775,0.0010212427,0.000036869773,0.0019821213],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985695,0.00003060689,0.000007926731,0.000038220616,0.000028750761,0.000037464033],"domain_scores_gemma":[0.99962986,0.00012586733,0.000026269743,0.0000164501,0.0001626488,0.000038880782],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00046954773,0.00068475975,0.0003788731,0.0006884637,0.00084292097,0.00058635586,0.0010210673,0.00052669516,0.0016905796],"category_scores_gemma":[0.0010557692,0.00027147718,0.00044623797,0.0009719145,0.00022546298,0.00035148938,0.00025175288,0.00044513567,0.0002877964],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021567031,0.00012309507,0.0740441,0.0000755333,0.00006395425,0.0004848955,0.00020401152,0.876476,0.0019361576,0.0007588511,0.003807112,0.041810613],"study_design_scores_gemma":[0.00000797819,0.000011450978,0.009409887,0.000005199356,0.000011427685,0.000013036472,0.00014844458,0.98957133,0.0003237199,0.000100615005,0.00038723787,0.000009742064],"about_ca_topic_score_codex":0.9016214,"about_ca_topic_score_gemma":0.89162076,"teacher_disagreement_score":0.0983786,"about_ca_system_score_codex":0.0047689267,"about_ca_system_score_gemma":0.0040125814,"threshold_uncertainty_score":0.19791591},"labels":[],"label_agreement":null},{"id":"W2995257719","doi":"","title":"Monitoring of the permafrost surface active layer in Quebec and in the Arctic using remote sensing","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Arctic; Remote sensing; The arctic; Layer (electronics); Active layer; Geology; Environmental science; Physical geography; Geography; Oceanography","score_opus":0.04985171799270602,"score_gpt":0.2618950940823215,"score_spread":0.21204337608961546,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995257719","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9877008,0.00088261697,0.0007891924,0.00039673684,0.000021955591,0.000045017736,0.0050277966,0.0000708523,0.0050651166],"genre_scores_gemma":[0.994013,0.00024115256,0.0009951391,0.000081068705,0.000006858544,0.000021336253,0.0016245239,0.000008669449,0.0030081884],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975127,0.00003179177,0.000011690186,0.000055109125,0.00008073924,0.0000694657],"domain_scores_gemma":[0.9991454,0.00008155322,0.00010474767,0.000026673628,0.0005076091,0.00013406557],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048471714,0.00027165274,0.00024288779,0.0009965801,0.0012860304,0.0008870431,0.00063176884,0.00041872862,0.0015472965],"category_scores_gemma":[0.0008719658,0.00014431847,0.0002130307,0.0015610141,0.00043796375,0.00043082974,0.00035587244,0.00029521427,0.00017852357],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00036298833,0.00011482462,0.93936193,0.000100449295,0.00024432596,0.00021848855,0.0011202104,0.0052722474,0.0061279326,0.00065109367,0.005709127,0.0407163],"study_design_scores_gemma":[0.000018889885,0.0000125492925,0.9905318,0.000023180552,0.000021962232,0.000022997594,0.00043436504,0.004497428,0.00028869376,0.000027458316,0.004104716,0.000015870843],"about_ca_topic_score_codex":0.9956066,"about_ca_topic_score_gemma":0.9977099,"teacher_disagreement_score":0.014184523,"about_ca_system_score_codex":0.014184523,"about_ca_system_score_gemma":0.010163799,"threshold_uncertainty_score":0.10291636},"labels":[],"label_agreement":null},{"id":"W2995303021","doi":"","title":"Variability and trends in streamflow input to Hudson Bay, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Streamflow; Geography; Environmental science; Climatology; Oceanography; Geology; Cartography; Drainage basin","score_opus":0.004364285013999866,"score_gpt":0.1895567528244571,"score_spread":0.18519246781045723,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995303021","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9951324,0.00020592655,0.000051992454,0.00019343219,0.000018030954,0.0000069726793,0.002687285,0.000018015555,0.0016859418],"genre_scores_gemma":[0.9961577,0.00020486407,0.00008303482,0.000047790003,0.0000065439317,0.000004212897,0.0013771675,0.0000074545133,0.0021113094],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962497,0.000026278234,0.000028471946,0.000078382465,0.00012592015,0.00011590686],"domain_scores_gemma":[0.9981316,0.00017891865,0.00016704717,0.00005197939,0.0011351659,0.00033534682],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003997226,0.00021543118,0.000263285,0.0013758275,0.001073703,0.0014339042,0.000683251,0.00029890792,0.0019133731],"category_scores_gemma":[0.0018463404,0.00024323355,0.00027269666,0.0024282213,0.0005439169,0.00033582412,0.0005912492,0.0004241222,0.0002595544],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000116191106,0.000031811112,0.99022806,0.00001783438,0.00008204996,0.00009360672,0.0006268121,0.0007300351,0.00070308836,0.00015360105,0.0019717123,0.005245216],"study_design_scores_gemma":[0.000003878877,0.0000040678674,0.99834013,0.000006534993,0.000008566909,0.000012685461,0.00040557564,0.0004608689,0.00007211554,0.000010885867,0.0006705837,0.0000039860915],"about_ca_topic_score_codex":0.99056995,"about_ca_topic_score_gemma":0.9951643,"teacher_disagreement_score":0.01579633,"about_ca_system_score_codex":0.01579633,"about_ca_system_score_gemma":0.013900052,"threshold_uncertainty_score":0.11461097},"labels":[],"label_agreement":null},{"id":"W2995337498","doi":"","title":"Resource utilisation by deep-sea megabenthos in the Canadian High Arctic (Baffin Bay and Parry Channel)","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and environmental studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Oceanography; PARRY; Arctic; Channel (broadcasting); Geology; Resource (disambiguation); The arctic; Environmental science; Engineering; Telecommunications","score_opus":0.008962284686736644,"score_gpt":0.16374928701763353,"score_spread":0.15478700233089687,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995337498","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993698,0.000090703914,0.00001193059,0.000016048376,8.943412e-7,0.0000010119592,0.00011563838,6.854262e-7,0.0003932303],"genre_scores_gemma":[0.9987212,0.00017219526,0.00006776335,0.000019381467,0.0000012216377,0.0000022058139,0.00018510997,0.0000018301845,0.0008291292],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998,0.00001727416,0.00000914377,0.00003414867,0.000040645817,0.00009876091],"domain_scores_gemma":[0.999622,0.000030018497,0.00008168119,0.000012384968,0.00011104679,0.00014291648],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022334182,0.00021391183,0.00019960273,0.0008799784,0.0015895874,0.00089736545,0.00038934863,0.00030320862,0.0010996835],"category_scores_gemma":[0.00058766396,0.00022853764,0.0001919535,0.00121723,0.00059540675,0.0003950922,0.00069986354,0.00021825996,0.00017546327],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025972532,0.000023743702,0.9814275,0.000036394216,0.00007963554,0.00013867402,0.0046350323,0.00037009726,0.0038411645,0.00023340851,0.0004150476,0.008539638],"study_design_scores_gemma":[0.0000019142722,0.000012585852,0.9963721,0.000007127988,0.000011473985,0.000029791636,0.0027402162,0.00013281101,0.000094025985,0.00001993099,0.0005736188,0.000004579994],"about_ca_topic_score_codex":0.94932854,"about_ca_topic_score_gemma":0.9904038,"teacher_disagreement_score":0.05067146,"about_ca_system_score_codex":0.0047172005,"about_ca_system_score_gemma":0.0031671366,"threshold_uncertainty_score":0.10193968},"labels":[],"label_agreement":null},{"id":"W2995572491","doi":"","title":"Chronology and dynamics of the Amundsen Gulf Ice Stream in Arctic Canada during the last glacial-interglacial transition","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Interglacial; Glacial period; Chronology; Geology; Oceanography; Arctic; Climatology; Arctic ice pack; Sea ice; Physical geography; Geography; Geomorphology; Paleontology","score_opus":0.005984136338105358,"score_gpt":0.19581774303199678,"score_spread":0.18983360669389143,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995572491","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9830814,0.001905303,0.00014663381,0.0002691392,0.000050695395,0.000014040852,0.011092711,0.000032449756,0.0034076497],"genre_scores_gemma":[0.9907126,0.001018976,0.00031330695,0.000052901116,0.000008357425,0.000012146562,0.0044340137,0.000012311726,0.0034353938],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998118,0.0000123729415,0.000021592172,0.000040802424,0.000053259602,0.000060213577],"domain_scores_gemma":[0.99800795,0.00009354873,0.00024689434,0.000035396402,0.0013456758,0.00027053998],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036702788,0.00018006835,0.00015707982,0.0032924942,0.0015801573,0.0010607895,0.0004991497,0.00030728776,0.0017633883],"category_scores_gemma":[0.0012146456,0.00016181034,0.00017890937,0.0033942196,0.00054796087,0.00031805958,0.0005141341,0.00030221153,0.00022091495],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015322375,0.00001781028,0.97599334,0.000092609145,0.00008522039,0.00016691934,0.0029919725,0.0008145172,0.0013241664,0.00051375706,0.003466485,0.014379963],"study_design_scores_gemma":[0.000002711209,0.0000046972937,0.99107015,0.00003855513,0.00001335842,0.000045361077,0.0010998267,0.00031951698,0.00017086079,0.000027199532,0.007201735,0.0000060503526],"about_ca_topic_score_codex":0.98390454,"about_ca_topic_score_gemma":0.995581,"teacher_disagreement_score":0.01609546,"about_ca_system_score_codex":0.0094258925,"about_ca_system_score_gemma":0.013718462,"threshold_uncertainty_score":0.06838995},"labels":[],"label_agreement":null},{"id":"W2995728774","doi":"","title":"Historic (1940 to present) changes in Lillooet River planform (BC, Canada)","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Planform; Geography; Geology; Engineering","score_opus":0.011595095429247913,"score_gpt":0.21422116900854848,"score_spread":0.20262607357930057,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995728774","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9628155,0.0015583803,0.0003663034,0.0005928552,0.00006019504,0.000022718486,0.018102424,0.00006307514,0.01641863],"genre_scores_gemma":[0.98623013,0.0007896979,0.0004339598,0.00007842511,0.000013416532,0.000008868556,0.0041830516,0.000014708782,0.008247761],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99974316,0.000010914782,0.000014755212,0.00004642409,0.0000764772,0.00010823663],"domain_scores_gemma":[0.9992842,0.00002040051,0.00008621862,0.000021205045,0.0004779572,0.00011006874],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002776487,0.0001737584,0.00013470667,0.0025299992,0.0019629102,0.00095292734,0.0005601622,0.00027967503,0.004087786],"category_scores_gemma":[0.00085970626,0.00019482744,0.00017925496,0.0046880813,0.0010801855,0.00046124277,0.00058061746,0.00045673322,0.00048859965],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000096827214,0.00003700832,0.9305925,0.0001385488,0.00008793789,0.0003046849,0.0036498536,0.0009792052,0.00085267983,0.0015939487,0.011588933,0.05007781],"study_design_scores_gemma":[0.0000018511573,0.0000057421403,0.97783047,0.000029057725,0.00000962758,0.00009042339,0.0009316833,0.0001518873,0.00010825834,0.000038361315,0.02079625,0.000006322405],"about_ca_topic_score_codex":0.98965853,"about_ca_topic_score_gemma":0.9973124,"teacher_disagreement_score":0.019741695,"about_ca_system_score_codex":0.019741695,"about_ca_system_score_gemma":0.011398709,"threshold_uncertainty_score":0.1432367},"labels":[],"label_agreement":null},{"id":"W2995729313","doi":"","title":"The influence of competition between plant functional types in the Canadian Terrestrial Ecosystem Model (CTEM) v. 2.0","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Botany and Plant Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ecosystem; Competition (biology); Terrestrial ecosystem; Natural resource economics; Environmental science; Ecology; Economics; Biology","score_opus":0.0611786597334716,"score_gpt":0.20966705960772314,"score_spread":0.14848839987425155,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995729313","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9645023,0.0010625162,0.00820298,0.0017476757,0.00011051872,0.00004788549,0.0067782775,0.0004661973,0.017081738],"genre_scores_gemma":[0.99271095,0.0001977599,0.002999384,0.00012972108,0.000012578328,0.000021986696,0.0013235133,0.00015913202,0.0024450058],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9992101,0.00033103034,0.000023529448,0.00010798915,0.00009689995,0.00023043531],"domain_scores_gemma":[0.99697304,0.0014666765,0.00013735767,0.0001120512,0.00075924036,0.0005516363],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0020443655,0.0009512106,0.0009279078,0.000783761,0.0018401508,0.0019322637,0.0028637825,0.0011496936,0.00453642],"category_scores_gemma":[0.0068447017,0.00044611865,0.0011411828,0.000853127,0.0009586553,0.0012678414,0.0010111126,0.0012407965,0.00035286558],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033703787,0.00009128197,0.039949637,0.00015158157,0.00025400976,0.00013888738,0.000134408,0.9256733,0.0010729525,0.01724811,0.009362123,0.005586635],"study_design_scores_gemma":[0.00009962739,0.00005488076,0.017063819,0.000037285205,0.00015961396,0.000049080638,0.00020377454,0.9771339,0.00020009598,0.002926774,0.001991598,0.00007938232],"about_ca_topic_score_codex":0.9277076,"about_ca_topic_score_gemma":0.92813575,"teacher_disagreement_score":0.07229239,"about_ca_system_score_codex":0.009507696,"about_ca_system_score_gemma":0.011514731,"threshold_uncertainty_score":0.14543623},"labels":[],"label_agreement":null},{"id":"W2995950730","doi":"","title":"A concept of ephemeral wetlands as water-transmitting landscape units in Canada's Western Boreal Plain","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ephemeral key; Wetland; Boreal; Hydrology (agriculture); Environmental science; Marsh; Geography; Physical geography; Geology; Ecology; Archaeology; Biology","score_opus":0.00889545102086122,"score_gpt":0.2181063458443457,"score_spread":0.20921089482348448,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995950730","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.786955,0.002264381,0.035378184,0.002296015,0.00012625818,0.00021777458,0.00051978166,0.0000943298,0.17214832],"genre_scores_gemma":[0.9859449,0.0002666505,0.008402642,0.00008380358,0.000008163948,0.000025216521,0.000058623682,0.000011280989,0.0051988075],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"observational","domain_scores_codex":[0.9995796,0.00007426933,0.000018889785,0.00007974998,0.00008430791,0.00016311424],"domain_scores_gemma":[0.9991748,0.00008273768,0.00007708147,0.00004746271,0.00031953192,0.00029837326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005083755,0.00020974026,0.0001589889,0.0015914744,0.0046780556,0.005913824,0.001108482,0.00041019384,0.001967667],"category_scores_gemma":[0.00094587356,0.00015653513,0.00021307255,0.0015289373,0.009173739,0.001378165,0.0010151303,0.0006764157,0.00010388452],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000706401,0.00006925701,0.07072887,0.00007194437,0.000027406977,0.00034672522,0.020222584,0.0032807696,0.0027970732,0.8423063,0.003931342,0.056147106],"study_design_scores_gemma":[0.00005072052,0.000101214086,0.44387692,0.0004896198,0.00017225342,0.0014513647,0.12843442,0.023244252,0.0016315494,0.20631756,0.1940788,0.00015130454],"about_ca_topic_score_codex":0.8885953,"about_ca_topic_score_gemma":0.965394,"teacher_disagreement_score":0.11140472,"about_ca_system_score_codex":0.016301652,"about_ca_system_score_gemma":0.024180323,"threshold_uncertainty_score":0.22412157},"labels":[],"label_agreement":null},{"id":"W2995966067","doi":"","title":"Restoring the Nitrogen Cycle in the Boreal Forest - a Case Study from Northern Alberta","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Taiga; Boreal; Environmental science; Forestry; Climatology; Geography; Geology","score_opus":0.00932443113748026,"score_gpt":0.22332004395418562,"score_spread":0.21399561281670534,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995966067","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99356973,0.00020788319,0.00013387662,0.00026311347,0.000005686129,0.000030882053,0.000045083652,0.000011365195,0.005732446],"genre_scores_gemma":[0.9960517,0.0003575451,0.0005360315,0.00007788755,0.0000040832533,0.0000073721944,0.000076934986,0.000004558558,0.0028839125],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995524,0.000068323636,0.000011819251,0.000026556165,0.000087483655,0.00025338487],"domain_scores_gemma":[0.999559,0.00007838656,0.000050190993,0.000032165608,0.00012666325,0.00015364068],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00063433585,0.000311098,0.00026846133,0.00047317686,0.0046369177,0.0015768133,0.0009242015,0.0006755618,0.00084764324],"category_scores_gemma":[0.0011320065,0.00013136608,0.00019142711,0.0012434651,0.0012924789,0.00037017374,0.0009816848,0.00054720667,0.00006387335],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002172778,0.0019641705,0.5848165,0.0005870004,0.00025382923,0.06359919,0.048480064,0.039340094,0.019254444,0.010154181,0.008132208,0.22124559],"study_design_scores_gemma":[0.0001423611,0.00069614296,0.78008133,0.0002038517,0.00023586152,0.004440557,0.13955608,0.010852171,0.0037698091,0.002021335,0.05790517,0.00009521464],"about_ca_topic_score_codex":0.9341324,"about_ca_topic_score_gemma":0.98869264,"teacher_disagreement_score":0.0658676,"about_ca_system_score_codex":0.01577785,"about_ca_system_score_gemma":0.015951082,"threshold_uncertainty_score":0.13251096},"labels":[],"label_agreement":null},{"id":"W2995969988","doi":"","title":"Trace gas emissions following deposition of excreta by grazing dairy cows in eastern Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Odor and Emission Control Technologies","field":"Chemical Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Grazing; Environmental science; Deposition (geology); Dairy cattle; Trace gas; Environmental chemistry; Animal science; Agronomy; Geography; Chemistry; Biology; Meteorology","score_opus":0.011481677848864238,"score_gpt":0.22904043542504365,"score_spread":0.21755875757617943,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2995969988","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99869066,0.00009275499,0.000059701397,0.000029082405,0.0000026245898,0.0000063397524,0.00029720514,0.000002899427,0.0008186801],"genre_scores_gemma":[0.9966853,0.00013841853,0.00016034151,0.00004059934,0.0000019039736,0.000004694241,0.0003885236,0.0000038323583,0.0025764115],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982184,0.00001193709,0.0000062443933,0.000028978222,0.0000512164,0.000079805075],"domain_scores_gemma":[0.9996449,0.00003295026,0.000033012977,0.0000061853634,0.00021213578,0.000070895156],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017786959,0.00022074184,0.00031019148,0.00044678847,0.0022257268,0.0011957233,0.00045966438,0.00040892145,0.0008758078],"category_scores_gemma":[0.0003989352,0.00020286873,0.00021555877,0.0008398243,0.00046260777,0.00019018922,0.0003636537,0.00037747994,0.0001458299],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019312629,0.00011532252,0.95861197,0.00007671271,0.000116412026,0.0006551579,0.004617432,0.0007474606,0.021134328,0.00016368921,0.0006503065,0.011179889],"study_design_scores_gemma":[0.000005825706,0.000054759686,0.99446505,0.0000110476385,0.000020312511,0.00005063323,0.002579592,0.00039752462,0.0015917493,0.000015661733,0.0008006631,0.000007170007],"about_ca_topic_score_codex":0.98417455,"about_ca_topic_score_gemma":0.9916083,"teacher_disagreement_score":0.01582545,"about_ca_system_score_codex":0.014348348,"about_ca_system_score_gemma":0.007866849,"threshold_uncertainty_score":0.104105055},"labels":[],"label_agreement":null},{"id":"W2996011912","doi":"","title":"On the interpretation of millennium-scale level variations of the Black Sea during the first quarter of the Holocene","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and environmental studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Quarter (Canadian coin); Interpretation (philosophy); Scale (ratio); Oceanography; History; Geography; Geology; Archaeology; Cartography; Computer science","score_opus":0.009002904165151742,"score_gpt":0.16803922593472514,"score_spread":0.1590363217695734,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996011912","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9723895,0.00286572,0.0026236605,0.0027922462,0.00017624228,0.0000097867705,0.00065043784,0.00003856086,0.01845392],"genre_scores_gemma":[0.9983997,0.00048480838,0.00057372556,0.000053856118,0.000024774297,0.000001943032,0.000101637204,0.000016737968,0.00034287613],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998604,0.000057345012,0.0000122901,0.00002900298,0.000015906075,0.000025123769],"domain_scores_gemma":[0.9994404,0.00021479436,0.00014876116,0.000041411757,0.000119898745,0.000034695953],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00080361444,0.0002422564,0.00020001727,0.0009805579,0.0008099025,0.0017956892,0.00043849307,0.00031411948,0.001687153],"category_scores_gemma":[0.0031445408,0.00014031517,0.0002568286,0.0012252366,0.00090014254,0.0006842587,0.00072154077,0.0004444543,0.00013151522],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005012793,0.000041979045,0.84111625,0.00025497872,0.00030031445,0.0008088545,0.016803956,0.007419193,0.008210203,0.024108622,0.0040183677,0.09641605],"study_design_scores_gemma":[0.000007235108,0.000018247385,0.9804094,0.000103624654,0.000067725014,0.00006722246,0.0054478557,0.0036337418,0.00045210202,0.003638031,0.006141982,0.000012883764],"about_ca_topic_score_codex":0.06580422,"about_ca_topic_score_gemma":0.12545504,"teacher_disagreement_score":0.06580422,"about_ca_system_score_codex":0.0011695069,"about_ca_system_score_gemma":0.00094946264,"threshold_uncertainty_score":0.13084239},"labels":[],"label_agreement":null},{"id":"W2996051540","doi":"","title":"Gyre scale deep convection in the subpolar North Atlantic Ocean during winter 2014-2015","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Thermocline; Ocean gyre; Argo; Mixed layer; Geology; Oceanography; Deep sea; Convection; Climatology; Thermohaline circulation; Convective mixing; North Atlantic Deep Water; Deep convection; Structural basin; Deep water; Subtropics; Meteorology; Geography; Geomorphology","score_opus":0.006662005073185505,"score_gpt":0.19885300862832528,"score_spread":0.19219100355513977,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996051540","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994363,0.000030927677,0.00003609738,0.000015245926,0.0000053806766,0.0000014345384,0.00023946457,0.0000057899574,0.00022929195],"genre_scores_gemma":[0.99935144,0.00001962992,0.00005712385,0.0000079520405,0.0000047117696,0.000002149617,0.00041923998,0.0000018121281,0.00013584037],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999168,0.000010716919,0.0000064923097,0.000030135157,0.0000117858235,0.000024089464],"domain_scores_gemma":[0.999843,0.000016819908,0.00005110351,0.000013592836,0.000025875088,0.000049595976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022919533,0.00015448559,0.00015835465,0.0003821835,0.00026460743,0.00041666845,0.0001435963,0.00019219783,0.0005276629],"category_scores_gemma":[0.00037491496,0.000097789045,0.0001833435,0.00022290826,0.00020545756,0.00026694042,0.00044839765,0.00013298765,0.00013778267],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019024167,0.00004353016,0.9863296,0.000015383606,0.00008758117,0.00008879314,0.00035601886,0.0007431461,0.0062823654,0.0000813387,0.0005207042,0.005261121],"study_design_scores_gemma":[0.0000031623351,0.000015908068,0.99833065,0.0000036262195,0.000010802594,0.000014518344,0.00012859124,0.0009275295,0.00021179226,0.000015042523,0.00033503116,0.0000032794485],"about_ca_topic_score_codex":0.026833614,"about_ca_topic_score_gemma":0.061693847,"teacher_disagreement_score":0.026833614,"about_ca_system_score_codex":0.00044036188,"about_ca_system_score_gemma":0.00022593427,"threshold_uncertainty_score":0.05335486},"labels":[],"label_agreement":null},{"id":"W2996187048","doi":"","title":"Acid Deposition Simulations for Alberta, Saskatchewan, and the Canadian Oil Sands, using the Global Environmental Multiscale - Modelling Air-quality and CHemistry (GEM-MACH) System","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oil sands; Deposition (geology); Acid deposition; Environmental science; Air quality index; Quality (philosophy); Earth science; Petroleum engineering; Meteorology; Geology; Environmental protection; Archaeology; Geography; Soil science; Geomorphology","score_opus":0.013225220968958009,"score_gpt":0.23330515432994686,"score_spread":0.22007993336098886,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996187048","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9802027,0.00027674326,0.0009615261,0.00039295206,0.00005765056,0.000044418408,0.006265619,0.0002051052,0.011593292],"genre_scores_gemma":[0.9904107,0.00023498648,0.0019781366,0.00009329991,0.000016167374,0.000035304845,0.0037668326,0.000057169666,0.003407416],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998221,0.000028266055,0.000011656656,0.00003490685,0.000039547136,0.00006347568],"domain_scores_gemma":[0.99958664,0.0001229965,0.00002517142,0.000022289245,0.00013556867,0.000107311374],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037019915,0.00089517114,0.0007586118,0.0007481852,0.0016819198,0.001214254,0.0016628671,0.0016042672,0.0040797284],"category_scores_gemma":[0.00096050656,0.0005777929,0.000799229,0.0013319668,0.0008347573,0.000476746,0.000849722,0.0008414083,0.00031325995],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002667693,0.00014041568,0.015442229,0.00007047574,0.00009820176,0.00017103841,0.00007280836,0.975993,0.0014267119,0.0015933686,0.0020822587,0.0026427158],"study_design_scores_gemma":[0.00042201046,0.000065910746,0.01934569,0.000017745524,0.000057347097,0.000027595484,0.00033834245,0.9761252,0.0008625161,0.00064389425,0.0020353235,0.000058486257],"about_ca_topic_score_codex":0.92326576,"about_ca_topic_score_gemma":0.9177727,"teacher_disagreement_score":0.076734245,"about_ca_system_score_codex":0.007882679,"about_ca_system_score_gemma":0.008479152,"threshold_uncertainty_score":0.15437227},"labels":[],"label_agreement":null},{"id":"W2996361801","doi":"","title":"Graduate training in Earth science across borders and disciplines: ArcTrain -\"Processes and impacts of climate change in the North Atlantic Ocean and the Canadian Arctic\"","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climate change; Training (meteorology); Arctic; Oceanography; The arctic; Earth system science; Geography; Environmental science; Climatology; Physical geography; Geology; Meteorology","score_opus":0.08526522226335165,"score_gpt":0.2841765842314805,"score_spread":0.19891136196812886,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996361801","genre_codex":"commentary","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.2972839,0.006362496,0.0025437453,0.35542485,0.017065234,0.00046362873,0.007271382,0.0006985453,0.3128862],"genre_scores_gemma":[0.5834188,0.0059059425,0.0057267207,0.023187937,0.0019166186,0.0002139261,0.007861081,0.00037079485,0.37139818],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.99832016,0.00022650271,0.000061232684,0.00015614883,0.0005249163,0.00071087637],"domain_scores_gemma":[0.98774856,0.00087270094,0.00020553016,0.0004181279,0.0018916667,0.008863489],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0050084377,0.00030651153,0.00024869584,0.00080799,0.0047195745,0.0024897724,0.00197175,0.0013484327,0.026351077],"category_scores_gemma":[0.0073524527,0.0001990489,0.0003510015,0.001229533,0.0012677562,0.0018253061,0.0050542643,0.0024931452,0.0025308789],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001562867,0.00047991492,0.043653935,0.00029608773,0.000023438164,0.0003288783,0.014177782,0.0012449115,0.0008469984,0.018504694,0.6618278,0.25845918],"study_design_scores_gemma":[0.00006054551,0.0001289678,0.15470706,0.00062852865,0.000027433229,0.00015982041,0.028007492,0.0013948662,0.0008972439,0.005366212,0.8085785,0.000043414926],"about_ca_topic_score_codex":0.55817723,"about_ca_topic_score_gemma":0.77296025,"teacher_disagreement_score":0.44182277,"about_ca_system_score_codex":0.010766534,"about_ca_system_score_gemma":0.10808541,"threshold_uncertainty_score":0.8888495},"labels":[],"label_agreement":null},{"id":"W2996381172","doi":"","title":"Detachment folds versus thrust-folds: numerical modelling and applications to the Swiss Jura Mountains and the Canadian Foothills","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Foothills; Geology; Thrust; Fold and thrust belt; Paleontology; Geomorphology; Geography; Foreland basin; Cartography; Structural basin; Engineering","score_opus":0.011617400189199293,"score_gpt":0.2258633931888103,"score_spread":0.214245992999611,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996381172","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9886628,0.000529694,0.0034269816,0.0003889969,0.000025006531,0.0000366448,0.00029618168,0.00009995193,0.0065338477],"genre_scores_gemma":[0.9966272,0.00029593954,0.001403022,0.000019219971,0.0000072123503,0.000013849185,0.00008679134,0.000016427393,0.0015302009],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998247,0.000027174923,0.000007817605,0.000026598786,0.00004065531,0.00007300864],"domain_scores_gemma":[0.9996774,0.0001383126,0.00003339512,0.0000129430955,0.0000888443,0.000049052604],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030949168,0.0006906879,0.0005398173,0.0008026153,0.002211337,0.0026992771,0.0012768747,0.0017463946,0.0017998753],"category_scores_gemma":[0.0015623821,0.00041408555,0.00052103004,0.0017407658,0.0019476338,0.00051872456,0.00090676313,0.0007249836,0.0001332415],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008738212,0.00006053718,0.02207624,0.0000462995,0.000024132949,0.0001896327,0.00031242525,0.9641699,0.001135704,0.002573419,0.0005357387,0.008788607],"study_design_scores_gemma":[0.000030888878,0.000025821697,0.019375889,0.000021335054,0.000018967847,0.00002495822,0.00079700624,0.97818714,0.0002861309,0.000559701,0.00064248417,0.00002972884],"about_ca_topic_score_codex":0.92897,"about_ca_topic_score_gemma":0.93004274,"teacher_disagreement_score":0.07103002,"about_ca_system_score_codex":0.006069828,"about_ca_system_score_gemma":0.006743562,"threshold_uncertainty_score":0.1428966},"labels":[],"label_agreement":null},{"id":"W2996448008","doi":"","title":"Short-lived radium isotopes on the Scotian Shelf: Unique distribution and tracers of cross-shelf CO2 and nutrient transport","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Dalhousie University","funders":"","keywords":"Oceanography; Radium; Continental shelf; Water column; Nutrient; Environmental science; Isotope; Geology; Chemistry; Ecology; Radiochemistry; Biology","score_opus":0.011004361259938669,"score_gpt":0.2232057307716165,"score_spread":0.21220136951167784,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996448008","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99914575,0.000072813855,0.00007918718,0.0000074139066,9.821039e-7,0.0000022605811,0.00014204961,0.0000040467867,0.0005454778],"genre_scores_gemma":[0.99947315,0.000048424365,0.000110233894,0.000005404511,8.625589e-7,0.0000017666048,0.00012685206,0.0000024646038,0.00023087018],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993324,0.0000040951527,0.000003046407,0.000019351044,0.000016399994,0.000023736182],"domain_scores_gemma":[0.99987745,0.000013918169,0.000031048276,0.000009151239,0.00003923837,0.00002921462],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000095370706,0.00021154582,0.00015843139,0.0007623702,0.0004360741,0.00046114583,0.00025334905,0.0001825808,0.0004751588],"category_scores_gemma":[0.00018456463,0.00014252696,0.00012411253,0.0007188374,0.00042062497,0.00015652782,0.00037509034,0.00010997489,0.0000933549],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030983935,0.000026494346,0.7865424,0.000036347963,0.00007198634,0.00031284566,0.00070826185,0.0009147325,0.2036652,0.00019711386,0.00014957356,0.0070651826],"study_design_scores_gemma":[0.0000042876254,0.000014264198,0.9961204,0.0000028858485,0.000008723397,0.000043313226,0.00019152602,0.00063933793,0.0027270825,0.000014204752,0.00023015717,0.0000038526173],"about_ca_topic_score_codex":0.38988551,"about_ca_topic_score_gemma":0.61932296,"teacher_disagreement_score":0.61011446,"about_ca_system_score_codex":0.0011018483,"about_ca_system_score_gemma":0.00078364636,"threshold_uncertainty_score":0.77523226},"labels":[],"label_agreement":null},{"id":"W2996520217","doi":"","title":"Lagrangian Observations of Labrador Sea Water Export Pathways from the Subpolar North Atlantic","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; North Atlantic Deep Water; Gulf Stream; Geology; Thermohaline circulation; Climatology","score_opus":0.03935307400497449,"score_gpt":0.18360844790715872,"score_spread":0.14425537390218424,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996520217","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99769247,0.000031124644,0.0001074523,0.000034427736,0.0000024077458,0.0000027395579,0.0010615377,0.000023613933,0.0010442202],"genre_scores_gemma":[0.99703526,0.000057595436,0.00033125936,0.000016801141,0.0000029217283,0.0000040894342,0.0018635364,0.000006945106,0.00068157597],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999528,0.000004842439,0.0000040074847,0.000011369064,0.000012271583,0.0000146282],"domain_scores_gemma":[0.99984133,0.000019271863,0.00004988678,0.000011840123,0.000045399996,0.000032198757],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009097443,0.00012857716,0.00010808656,0.000437061,0.00040022764,0.00054138346,0.00014368423,0.00013732491,0.000933621],"category_scores_gemma":[0.00032657242,0.00011598856,0.00011334002,0.0005084058,0.00011722444,0.00023104626,0.00034272656,0.00018909074,0.00017847522],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025616924,0.00006764758,0.96017873,0.00003596668,0.00008919582,0.00013438672,0.0009951263,0.005026878,0.009851184,0.00031186186,0.0018132555,0.021239568],"study_design_scores_gemma":[0.00002427838,0.00001780547,0.9915132,0.0000090812655,0.000029256902,0.00002082443,0.0003334439,0.0048004864,0.00079166755,0.000033454133,0.0024170992,0.000009371055],"about_ca_topic_score_codex":0.34041864,"about_ca_topic_score_gemma":0.6084026,"teacher_disagreement_score":0.65958136,"about_ca_system_score_codex":0.0010653898,"about_ca_system_score_gemma":0.0010355755,"threshold_uncertainty_score":0.6768744},"labels":[],"label_agreement":null},{"id":"W2996657313","doi":"","title":"Origin of S and M and reversed S and M shaped profiles in two Proterozoic mafic sills from the Franklin magmatic event, Victoria Island, NWT, Canada.","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mafic; Proterozoic; Sill; Geology; Event (particle physics); Geochemistry; Seismology; Tectonics","score_opus":0.010443349507730201,"score_gpt":0.23395929340965613,"score_spread":0.22351594390192592,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996657313","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9962443,0.00013336826,0.00011814274,0.000037254125,0.0000037716404,0.000006847415,0.0004188061,0.000011195898,0.0030263213],"genre_scores_gemma":[0.99843365,0.000041934374,0.00011044802,0.000013809591,0.0000010722143,0.0000025205536,0.0002383119,0.0000068885206,0.0011514421],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991405,0.000003902899,0.0000037331977,0.000021782913,0.000019580864,0.00003704939],"domain_scores_gemma":[0.9997557,0.000018056255,0.000044173856,0.00001007948,0.000113999835,0.000057935504],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000100341196,0.00015548934,0.00013251726,0.0010840177,0.0017257844,0.00083713146,0.00041097743,0.00035401928,0.0018536883],"category_scores_gemma":[0.00048777153,0.00020143816,0.00012564757,0.0011167007,0.0009762676,0.00014540473,0.00048278572,0.0003285429,0.00034687243],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00077166065,0.000057018104,0.872148,0.00008809737,0.00006764284,0.0013736916,0.008337293,0.00088064314,0.08696135,0.0018542837,0.0008338888,0.026626335],"study_design_scores_gemma":[0.0000029060373,0.000007341985,0.99656135,0.0000070618626,0.000007128519,0.00009065065,0.0012534121,0.00019046667,0.00067397754,0.000040942145,0.001160424,0.000004203288],"about_ca_topic_score_codex":0.8178775,"about_ca_topic_score_gemma":0.908493,"teacher_disagreement_score":0.18212253,"about_ca_system_score_codex":0.004275595,"about_ca_system_score_gemma":0.0029710906,"threshold_uncertainty_score":0.3663901},"labels":[],"label_agreement":null},{"id":"W2996973765","doi":"","title":"Seaglider observations of vertical velocity in the Labrador Sea","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and fisheries research","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Geodesy; Oceanography","score_opus":0.03476282908864984,"score_gpt":0.253389694969399,"score_spread":0.21862686588074917,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2996973765","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99793184,0.00004835748,0.0000806662,0.000040035316,0.0000039220267,0.0000016157236,0.0004895329,0.000028639632,0.001375461],"genre_scores_gemma":[0.99814475,0.00006261366,0.0002675783,0.000021495467,0.0000039811566,0.0000026913763,0.0008248531,0.000007996361,0.0006640591],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985397,0.000017639264,0.000008621609,0.000029210843,0.000044102468,0.00004643942],"domain_scores_gemma":[0.99979776,0.00001912195,0.000048515492,0.00002057332,0.00007058014,0.00004344602],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020712968,0.00018103431,0.00020190465,0.00052428665,0.00041389803,0.00044836814,0.0002798348,0.00025011782,0.0007004744],"category_scores_gemma":[0.00045138656,0.00014047461,0.00010532467,0.0006717911,0.00022073532,0.00037217545,0.00038887325,0.00032645042,0.0002188743],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00057659356,0.0001421044,0.9489127,0.000028831739,0.00012962379,0.0002334695,0.0011223772,0.0017341743,0.017871,0.00019560051,0.0022535704,0.026799954],"study_design_scores_gemma":[0.000013832442,0.00003717741,0.99682546,0.0000052077608,0.000019832622,0.000027745033,0.00034868537,0.00094001554,0.0006909965,0.00001567421,0.0010682412,0.0000071248],"about_ca_topic_score_codex":0.27071396,"about_ca_topic_score_gemma":0.4859996,"teacher_disagreement_score":0.7292861,"about_ca_system_score_codex":0.0009200234,"about_ca_system_score_gemma":0.00066175737,"threshold_uncertainty_score":0.53827643},"labels":[],"label_agreement":null},{"id":"W2997063586","doi":"","title":"An eastern Mediterranean analogue for the Late Palaeozoic evolution of the Pangaean suture zone in SW Iberia","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geophysical Studies Worldwide","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"St. Francis Xavier University","funders":"","keywords":"Paleozoic; Geology; Paleontology; Fibrous joint; Mediterranean climate; Archaeology; Geography; Anatomy; Biology","score_opus":0.01190968951414087,"score_gpt":0.2019399875779754,"score_spread":0.19003029806383454,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997063586","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9856146,0.0010691537,0.00012752949,0.00017823052,0.000016281889,0.0000068955665,0.00013992637,0.000009428367,0.012838046],"genre_scores_gemma":[0.9983524,0.00023159469,0.00023522586,0.000042778123,0.00001117749,0.000005476508,0.00010913375,0.0000072983594,0.0010049156],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992526,0.000012105158,0.000005042832,0.000027930622,0.0000058033293,0.00002380041],"domain_scores_gemma":[0.9999112,0.000008284024,0.00003705684,0.000008842307,0.000020974388,0.0000136842145],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00031934545,0.00015642054,0.0001682387,0.0010152395,0.00048387513,0.0007293671,0.000213911,0.00021329899,0.0033136855],"category_scores_gemma":[0.00032961398,0.000087358094,0.00009822633,0.00091978634,0.0005295176,0.0003074193,0.0005460867,0.00016124616,0.00024316074],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018779046,0.0001746029,0.7094463,0.0003371039,0.0002994558,0.0015431247,0.01481541,0.0012668885,0.060606647,0.014885845,0.002552504,0.1921943],"study_design_scores_gemma":[0.000014004725,0.000018854314,0.9926763,0.00003600477,0.000014514153,0.0001124355,0.0008874698,0.00012339535,0.00021561701,0.00021326926,0.005685339,0.0000028066377],"about_ca_topic_score_codex":0.028413732,"about_ca_topic_score_gemma":0.049247414,"teacher_disagreement_score":0.028413732,"about_ca_system_score_codex":0.0009190948,"about_ca_system_score_gemma":0.00046303152,"threshold_uncertainty_score":0.05649674},"labels":[],"label_agreement":null},{"id":"W2997130433","doi":"","title":"Paleomagnetism of the ~1.1 Ga Coldwell Complex (Ontario, Canada): Implications for Proterozoic geomagnetic field morphology and plate velocities","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geomagnetism and Paleomagnetism Studies","field":"Biochemistry, Genetics and Molecular Biology","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Paleomagnetism; Geology; Geomagnetic pole; Laurentia; Paleontology; Earth's magnetic field; Geomagnetic reversal; Polarity (international relations); Polar wander; Proterozoic; Volcanic rock; Rift; Polarity reversal; Geophysics; Magnetostratigraphy; Apparent polar wander; Seismology; Volcano; Paleozoic; Magnetic field; Tectonics; Physics","score_opus":0.022120027341978887,"score_gpt":0.2293773401033526,"score_spread":0.2072573127613737,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997130433","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9921091,0.00035785697,0.00011747836,0.00010440902,0.000003916894,0.000013948499,0.0013491735,0.000014952928,0.0059292177],"genre_scores_gemma":[0.9978472,0.00015330577,0.00015815608,0.000023513585,0.0000022124798,0.000005505515,0.0005176851,0.0000070347814,0.0012852849],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987125,0.0000027907695,0.0000046412615,0.000037493235,0.000043607502,0.000040210332],"domain_scores_gemma":[0.99958307,0.000018689534,0.00008180842,0.000018085915,0.00022920144,0.00006912685],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001020989,0.00028511562,0.00024665226,0.0018560482,0.002105057,0.0010249121,0.0006684848,0.0002723428,0.002168023],"category_scores_gemma":[0.00046245786,0.00023113083,0.00019164791,0.0019350058,0.0010707934,0.00025281578,0.0005328097,0.00027274896,0.00025186042],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015330192,0.000018788307,0.9571842,0.00007382915,0.0000708578,0.00035379975,0.0030998024,0.0008822825,0.023360388,0.000604736,0.00087165314,0.013326439],"study_design_scores_gemma":[0.000003531589,0.0000042395886,0.9972742,0.000008104081,0.000008113964,0.000047928006,0.00041030475,0.00017274723,0.0003575492,0.00002403765,0.0016843146,0.000004935685],"about_ca_topic_score_codex":0.98543304,"about_ca_topic_score_gemma":0.9945971,"teacher_disagreement_score":0.01695099,"about_ca_system_score_codex":0.01695099,"about_ca_system_score_gemma":0.007702798,"threshold_uncertainty_score":0.12298858},"labels":[],"label_agreement":null},{"id":"W2997187031","doi":"","title":"Source Rupture Models and Tsunami Simulations of Destructive October 28, 2012 Queen Charlotte Islands, British Columbia (Mw: 7.8) and September 16, 2015 Illapel, Chile (Mw: 8.3) Earthquakes","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Queen (butterfly); Seismology; Geology; Geography; Oceanography","score_opus":0.00914114655942844,"score_gpt":0.20064193784728893,"score_spread":0.1915007912878605,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997187031","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98348284,0.00020130374,0.0010608736,0.00055948197,0.000056843553,0.000027061486,0.0050226995,0.00037275074,0.009216133],"genre_scores_gemma":[0.9946786,0.00011114073,0.0005748763,0.000047345395,0.000014720616,0.000029622395,0.0026203461,0.0000730296,0.0018503823],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998647,0.00003165203,0.000012295817,0.000029693356,0.000021625567,0.000040104747],"domain_scores_gemma":[0.99879265,0.0005813154,0.00011488227,0.000074476666,0.00027957972,0.00015709974],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004285966,0.00074879464,0.0006766598,0.0012180071,0.0007364373,0.001245323,0.0020774098,0.0020840366,0.005148716],"category_scores_gemma":[0.002562913,0.00079595664,0.00057339115,0.0015167991,0.00060768897,0.0008238103,0.00054554775,0.0013446957,0.00056323817],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002536921,0.00015197165,0.010436769,0.000039705203,0.000080223086,0.00015429097,0.000104304054,0.98259914,0.0003746304,0.0012858979,0.0024600832,0.0020592122],"study_design_scores_gemma":[0.00009699361,0.000025989293,0.00514359,0.000010788945,0.000021204643,0.000015023959,0.00010401647,0.99365944,0.00014340469,0.00036666443,0.00039638337,0.000016400452],"about_ca_topic_score_codex":0.43899077,"about_ca_topic_score_gemma":0.36166325,"teacher_disagreement_score":0.5610092,"about_ca_system_score_codex":0.0038123818,"about_ca_system_score_gemma":0.0021449,"threshold_uncertainty_score":0.8728711},"labels":[],"label_agreement":null},{"id":"W2997228497","doi":"","title":"Rift flank uplift and thermal evolution of an intracratonic rift basin (eastern Canada) determined by combined apatite and zircon (U-Th)/He thermochronology","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Thermochronology; Geology; Zircon; Rift; Paleontology; Structural basin; Fission track dating; Apatite; Flank; Geomorphology; Geochemistry","score_opus":0.006402981395539225,"score_gpt":0.1698466150048605,"score_spread":0.1634436336093213,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997228497","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99852234,0.00009795321,0.000049718685,0.000017174765,9.9564e-7,0.000004334872,0.00037592513,0.000006068614,0.00092544855],"genre_scores_gemma":[0.99873406,0.00006664489,0.00014226719,0.000011483078,7.245903e-7,0.0000028324146,0.00031430135,0.0000038758144,0.00072373403],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998838,0.00000469582,0.0000047078233,0.00003083022,0.000030981595,0.000045031164],"domain_scores_gemma":[0.99969256,0.000022860118,0.00004634203,0.000011308369,0.00015701068,0.00006981014],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013147724,0.00018196745,0.00017374184,0.0010222597,0.0012646803,0.00076402625,0.00045881473,0.00029938706,0.0011640476],"category_scores_gemma":[0.0004196477,0.00022863525,0.00014978954,0.0013999816,0.00062876963,0.00023258058,0.00037345247,0.00021175004,0.00017088045],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021117402,0.000035370405,0.96238303,0.000036236204,0.000071601346,0.00028419308,0.0015575993,0.0014787473,0.020873867,0.0003526453,0.00047055192,0.012244857],"study_design_scores_gemma":[0.0000031689738,0.0000050307494,0.99835443,0.0000045762836,0.000009280528,0.00003553443,0.00032356672,0.00048125838,0.00030828672,0.000013832378,0.00045772656,0.0000032510027],"about_ca_topic_score_codex":0.9776579,"about_ca_topic_score_gemma":0.9913292,"teacher_disagreement_score":0.022342086,"about_ca_system_score_codex":0.008294151,"about_ca_system_score_gemma":0.0060253604,"threshold_uncertainty_score":0.060178578},"labels":[],"label_agreement":null},{"id":"W2997277399","doi":"","title":"Source apportionment of speciated PM2.5 over Halifax, Nova Scotia, during BORTAS-B, using pragmatic mass closure and principal component analysis","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nova scotia; Apportionment; Nova (rocket); Principal component analysis; Component (thermodynamics); Environmental science; Mathematics; Statistics; Oceanography; Political science; Geology; Engineering; Aeronautics; Physics","score_opus":0.010480415666703762,"score_gpt":0.20803316582007478,"score_spread":0.197552750153371,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997277399","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97786725,0.00020769947,0.0007455951,0.00019542957,0.000044063356,0.00004503775,0.017896201,0.00020050527,0.002798146],"genre_scores_gemma":[0.99070334,0.000080313024,0.00082394166,0.00003049391,0.000009168166,0.000025046511,0.0066818185,0.00003641251,0.0016093325],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984205,0.000013851826,0.000014776612,0.000045751043,0.000045316065,0.000038264432],"domain_scores_gemma":[0.9995142,0.000070864124,0.00006002792,0.00003206139,0.0002756874,0.000047055113],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002898111,0.00049550174,0.0003077102,0.0012930066,0.00066806126,0.00088780536,0.00054116396,0.00044382113,0.0011880221],"category_scores_gemma":[0.00083355594,0.0002710484,0.00044099306,0.0011908858,0.00026810862,0.00021765522,0.00050644594,0.00024107298,0.00027820122],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023204912,0.00011398733,0.8946629,0.0004529779,0.0006267845,0.0017996003,0.0021327296,0.028656617,0.02231611,0.00079989637,0.012452035,0.03366578],"study_design_scores_gemma":[0.000038371654,0.000013758051,0.98319733,0.000030565458,0.000068737,0.00006372849,0.00043411733,0.01248648,0.0014295308,0.00006501549,0.00214851,0.000023850758],"about_ca_topic_score_codex":0.93390745,"about_ca_topic_score_gemma":0.9330518,"teacher_disagreement_score":0.06609255,"about_ca_system_score_codex":0.0037360217,"about_ca_system_score_gemma":0.0032696803,"threshold_uncertainty_score":0.13296354},"labels":[],"label_agreement":null},{"id":"W2997297239","doi":"","title":"Aquatic impacts of an environmental disaster in a relatively pristine watershed: the breach of the Mount Polley Mine tailings impoundment, British Columbia, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Tailings Management and Properties","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Tailings; Mount; Tailings dam; Watershed; Water resource management; Geography; Hydrology (agriculture); Environmental protection; Environmental science; Environmental resource management; Environmental planning; Engineering; Geotechnical engineering","score_opus":0.008016615140063292,"score_gpt":0.16638515427690975,"score_spread":0.15836853913684645,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997297239","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9955577,0.00006607386,0.00003789869,0.00053908967,0.000008108284,0.000026176183,0.00023190382,0.0000052653836,0.0035278753],"genre_scores_gemma":[0.99650663,0.00018966448,0.00010944367,0.0001302372,0.000003812149,0.000012348903,0.0001482064,0.0000030912324,0.0028965042],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996075,0.000029900635,0.000009105812,0.000029442177,0.00012332089,0.0002007653],"domain_scores_gemma":[0.999488,0.00003097429,0.0000407903,0.000012120942,0.00025644636,0.00017173684],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018806245,0.00025470706,0.00027308488,0.00060725206,0.0063014347,0.0018694958,0.0010173382,0.00087276835,0.0017438934],"category_scores_gemma":[0.0007883301,0.00022919726,0.00019490064,0.0013856982,0.0018487885,0.00046080662,0.0017133118,0.0010891706,0.00017179156],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006971543,0.0007057638,0.90584946,0.0001525665,0.00013912856,0.010847393,0.014288706,0.0039768997,0.0063580624,0.0011272418,0.011519911,0.044337798],"study_design_scores_gemma":[0.00001617611,0.00007598837,0.95370805,0.000033585424,0.000020687512,0.00023533197,0.040562805,0.00094966864,0.0002788561,0.0001621857,0.0039349026,0.00002164793],"about_ca_topic_score_codex":0.9859319,"about_ca_topic_score_gemma":0.9976943,"teacher_disagreement_score":0.028849442,"about_ca_system_score_codex":0.028849442,"about_ca_system_score_gemma":0.024772504,"threshold_uncertainty_score":0.20931828},"labels":[],"label_agreement":null},{"id":"W2997683848","doi":"","title":"The Canadian coupled multi-seasonal forecasting system","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meteorology; Climatology; Computer science; Environmental science; Econometrics; Geography; Economics; Geology","score_opus":0.01153943186122463,"score_gpt":0.17916556506283676,"score_spread":0.16762613320161213,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997683848","genre_codex":"empirical","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.630984,0.004185954,0.05817692,0.010987273,0.0015141779,0.00035563388,0.15888576,0.0066312784,0.12827894],"genre_scores_gemma":[0.92863655,0.0014841371,0.024857253,0.000377694,0.000121221354,0.00010654893,0.02826992,0.00032270377,0.015823929],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99952364,0.000054463202,0.000024167646,0.00012331008,0.00016632762,0.00010805384],"domain_scores_gemma":[0.9985065,0.00009561256,0.00007834362,0.00008176031,0.0010519163,0.00018593951],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007065554,0.0008496532,0.0006743483,0.0013286922,0.0024273552,0.0025795924,0.0019247743,0.0008758937,0.0050274977],"category_scores_gemma":[0.0029466094,0.00042127463,0.0005994567,0.004450553,0.00051342207,0.0009850139,0.0007975199,0.0009635919,0.00063947175],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":true,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003288351,0.000070653055,0.03571569,0.00016720827,0.0002934641,0.00019954749,0.00026346126,0.79211193,0.001348265,0.013759439,0.09258286,0.0631586],"study_design_scores_gemma":[0.000082746345,0.0000138405185,0.022584377,0.000047177717,0.000117763506,0.000020048825,0.00019243816,0.93443084,0.00044701886,0.0024660407,0.039468415,0.00012939319],"about_ca_topic_score_codex":0.9957743,"about_ca_topic_score_gemma":0.9942419,"teacher_disagreement_score":0.9727704,"about_ca_system_score_codex":0.02722963,"about_ca_system_score_gemma":0.042780377,"threshold_uncertainty_score":0.19756573},"labels":[],"label_agreement":null},{"id":"W2997929663","doi":"","title":"Management of hydro-biogeochemical connectivity of geographically isolated wetlands to reduce the risk of eutrophication of Lake Winnipeg","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Ecology and biodiversity studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Biogeochemical cycle; Eutrophication; Wetland; Environmental science; Water resource management; Environmental protection; Hydrology (agriculture); Environmental resource management; Geography; Ecology; Geology; Nutrient","score_opus":0.008823136948405927,"score_gpt":0.22194551102289617,"score_spread":0.21312237407449025,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997929663","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9976336,0.00011067423,0.00041056986,0.00022608222,0.0000053516187,0.000043179138,0.000020834614,0.0000087785,0.0015409905],"genre_scores_gemma":[0.9990671,0.000055230674,0.0005198997,0.000028948645,0.0000012107321,0.000010199066,0.0000114416225,0.0000012854283,0.0003047707],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997824,0.000058310216,0.000007945604,0.000031187705,0.000027334636,0.00009287976],"domain_scores_gemma":[0.9996574,0.000018722518,0.00009973679,0.000011158593,0.00005814456,0.00015478565],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003030904,0.00016683801,0.00013883522,0.0006334746,0.001518725,0.0008234505,0.00072675553,0.00017388137,0.00079783384],"category_scores_gemma":[0.0010512298,0.00010549041,0.00012803957,0.00035896004,0.0005604369,0.0003117744,0.001424895,0.00018404797,0.00003878544],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007216248,0.00061655656,0.7855956,0.00027841248,0.0003009626,0.0017418155,0.0073118117,0.011575147,0.029335737,0.0053090616,0.0024368162,0.15477645],"study_design_scores_gemma":[0.00007305807,0.0003770695,0.97417337,0.0000769174,0.00014073882,0.00023471696,0.009552686,0.0066005057,0.0014356248,0.00080411305,0.006509987,0.00002122066],"about_ca_topic_score_codex":0.44155306,"about_ca_topic_score_gemma":0.81494147,"teacher_disagreement_score":0.55844694,"about_ca_system_score_codex":0.0034366485,"about_ca_system_score_gemma":0.006872553,"threshold_uncertainty_score":0.87796587},"labels":[],"label_agreement":null},{"id":"W2997933630","doi":"","title":"Fluvio-deltaic progradation in forced regressive deglacial succession: lessons from the Lake Saint-Jean (Québec, Canada, late Quaternary)","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Progradation; Ecological succession; SAINT; Quaternary; Geology; Oceanography; Paleontology; History; Ecology","score_opus":0.03294688318990867,"score_gpt":0.2640500732969599,"score_spread":0.23110319010705122,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2997933630","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.987176,0.0016550091,0.0003634685,0.002074737,0.000027161113,0.000018133293,0.00072642,0.000021170834,0.007937931],"genre_scores_gemma":[0.9977963,0.0004963529,0.00017524797,0.00010547695,0.000005861918,0.0000033162917,0.00013304474,0.000010305967,0.0012741497],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978536,0.000045351586,0.000009908431,0.000046264635,0.000026171023,0.00008692341],"domain_scores_gemma":[0.9990293,0.00017533172,0.00010660045,0.000062877836,0.0004075819,0.00021839913],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009452267,0.00022771544,0.00031500985,0.00077642174,0.0020356614,0.0023429932,0.001139121,0.0007753791,0.004005934],"category_scores_gemma":[0.0032710715,0.0002585615,0.00032397592,0.0016377346,0.0023127066,0.0009831912,0.00081406906,0.000728117,0.00025042758],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040943705,0.00013760944,0.9127643,0.00015702564,0.00022317929,0.0006828804,0.009389946,0.009099768,0.0022012661,0.012125586,0.0045390623,0.048270006],"study_design_scores_gemma":[0.000014655686,0.0000182438,0.9867551,0.00006264102,0.00003685852,0.000049573588,0.00433876,0.004062943,0.00014478582,0.0013128568,0.003186063,0.000017488128],"about_ca_topic_score_codex":0.9866844,"about_ca_topic_score_gemma":0.9936486,"teacher_disagreement_score":0.03046656,"about_ca_system_score_codex":0.03046656,"about_ca_system_score_gemma":0.027884789,"threshold_uncertainty_score":0.2210514},"labels":[],"label_agreement":null},{"id":"W2998069094","doi":"","title":"Oceanic Crust in the Canada Basin of the Arctic Ocean","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanic crust; Geology; Oceanic basin; Canada Basin; Arctic; Oceanography; Crust; Structural basin; The arctic; Earth science; Subduction; Paleontology; Tectonics","score_opus":0.030488765185536348,"score_gpt":0.18506684860356443,"score_spread":0.1545780834180281,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998069094","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98864114,0.0012897193,0.000057770896,0.0002346038,0.000013869973,0.0000071370773,0.0011337225,0.000008343691,0.008613661],"genre_scores_gemma":[0.99705386,0.0005140227,0.000084635474,0.000030419556,0.0000031725938,0.0000019878973,0.00048764117,0.000004710958,0.0018195242],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971336,0.000020189358,0.000013125294,0.0000330737,0.00006727239,0.0001530373],"domain_scores_gemma":[0.99941826,0.000030076846,0.000070662565,0.000014673335,0.00032148065,0.00014496804],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002704062,0.00020983607,0.00023168752,0.0026657754,0.0031660662,0.0019426674,0.0005367238,0.00033955337,0.0030509965],"category_scores_gemma":[0.0010154059,0.00026082725,0.0003096593,0.003985106,0.0010898489,0.00047196058,0.0013718186,0.00029641655,0.00023374772],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031102967,0.000022487724,0.95882285,0.00012093925,0.0001745414,0.00057260686,0.0048417393,0.0016581623,0.002321162,0.004810154,0.0028612697,0.023482993],"study_design_scores_gemma":[0.000004064641,0.000004984611,0.9907023,0.000040799718,0.000025247762,0.00005753847,0.0034306075,0.00044537568,0.00010438145,0.00014362868,0.0050333794,0.000007807583],"about_ca_topic_score_codex":0.9942107,"about_ca_topic_score_gemma":0.9981154,"teacher_disagreement_score":0.018504033,"about_ca_system_score_codex":0.018504033,"about_ca_system_score_gemma":0.022930825,"threshold_uncertainty_score":0.13425678},"labels":[],"label_agreement":null},{"id":"W2998154413","doi":"","title":"Climate warming causes intensification of the hydrological cycle resulting in changes to the vernal and autumnal windows in a northern temperate forest","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Western University","funders":"","keywords":"Snowmelt; Environmental science; Snowpack; Evapotranspiration; Precipitation; Snow; Growing season; Water cycle; Temperate climate; Climate change; Temperate rainforest; Biome; Climatology; Atmospheric sciences; Geography; Ecology; Ecosystem; Meteorology; Geology","score_opus":0.038397513069986275,"score_gpt":0.24875140631493778,"score_spread":0.21035389324495152,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998154413","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99965096,0.00003779616,0.000024621231,0.0000068972936,4.2670962e-7,0.0000016214067,0.000037158767,0.0000030090807,0.00023754715],"genre_scores_gemma":[0.9996307,0.000052345855,0.000055196837,0.0000066870866,0.0000016566861,0.0000027064718,0.00008643114,0.0000013672752,0.0001627737],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99994016,0.0000065564245,0.0000034130546,0.000018276844,0.000011021238,0.000020598709],"domain_scores_gemma":[0.9998858,0.000011295195,0.00004779201,0.000007675266,0.000017951563,0.000029468692],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001195492,0.00008671371,0.00014337561,0.00023251695,0.00039180226,0.00032881583,0.00010588577,0.000097822616,0.00060754037],"category_scores_gemma":[0.00018666593,0.00011066393,0.00013460446,0.00035740994,0.0003280922,0.00013665206,0.00017805131,0.00010899873,0.00006198131],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002491068,0.00004702941,0.93102896,0.000039400064,0.00004619492,0.00031336694,0.0011160892,0.0004277014,0.060483273,0.00007539887,0.0001408791,0.006032719],"study_design_scores_gemma":[6.6453583e-7,0.0000036715905,0.9997582,4.600371e-7,0.0000014625164,0.000014443001,0.000063376596,0.000042321113,0.000052931926,0.0000051919437,0.000056680972,5.592543e-7],"about_ca_topic_score_codex":0.17731753,"about_ca_topic_score_gemma":0.3705797,"teacher_disagreement_score":0.17731753,"about_ca_system_score_codex":0.0010105598,"about_ca_system_score_gemma":0.0006684462,"threshold_uncertainty_score":0.35257083},"labels":[],"label_agreement":null},{"id":"W2998164483","doi":"","title":"Offshore propagation of coastal precipitation","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Ocean Waves and Remote Sensing","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Saskatchewan","funders":"","keywords":"Submarine pipeline; Geology; Bay; Precipitation; Terrain; Amplitude; Climatology; Oceanography; Meteorology; Geography","score_opus":0.013409102329835967,"score_gpt":0.2107395244526032,"score_spread":0.19733042212276722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998164483","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9859629,0.00011573114,0.0025506956,0.000061064246,0.000016103812,0.0000097006,0.00027942762,0.00008792447,0.010916393],"genre_scores_gemma":[0.99824774,0.00008868874,0.0004344085,0.0000054602065,0.0000063213265,0.0000022911495,0.000106011576,0.000010551637,0.0010986102],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99996364,0.0000035668888,0.0000025641036,0.000008602678,0.000009947601,0.0000116987585],"domain_scores_gemma":[0.9998179,0.00002329056,0.000054500648,0.000016172458,0.00006558871,0.000022636159],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000050797993,0.00031449462,0.00012198856,0.0003974447,0.000309768,0.00037212577,0.00018038541,0.00012114951,0.002217763],"category_scores_gemma":[0.00037233782,0.00013614132,0.000165997,0.00028125508,0.00010857828,0.00020366881,0.0005830934,0.00022515126,0.00039861206],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005040368,0.00022962208,0.5282571,0.00029459244,0.00010811317,0.0027363305,0.001105607,0.09499094,0.21695416,0.0060956907,0.0032961117,0.14542773],"study_design_scores_gemma":[0.0001224679,0.0005044734,0.75447714,0.00009437558,0.00012519388,0.00095648045,0.0013596214,0.17551166,0.057589903,0.0019430753,0.00722631,0.00008936817],"about_ca_topic_score_codex":0.006503598,"about_ca_topic_score_gemma":0.004592013,"teacher_disagreement_score":0.006503598,"about_ca_system_score_codex":0.00017333444,"about_ca_system_score_gemma":0.00018778579,"threshold_uncertainty_score":0.012931526},"labels":[],"label_agreement":null},{"id":"W2998268530","doi":"","title":"Snow-atmosphere coupling in current and future climates over North America in the Canadian Regional Climate Model (CRCM5)","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow; Atmosphere (unit); Climate model; Climatology; Environmental science; Climate change; Current (fluid); Climate system; Geography; Meteorology; Physical geography; Atmospheric sciences; Geology; Oceanography","score_opus":0.01913398295752699,"score_gpt":0.2390480839774397,"score_spread":0.2199141010199127,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998268530","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9658816,0.00078271434,0.0028343776,0.0014550373,0.00014367016,0.00003261518,0.018310726,0.0006481001,0.009911073],"genre_scores_gemma":[0.9888602,0.00033782664,0.0017508124,0.00013441431,0.00002142524,0.000021626585,0.0064764004,0.0001587665,0.002238549],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997398,0.00004100928,0.000015261394,0.00008924244,0.000036262252,0.00007843768],"domain_scores_gemma":[0.9995485,0.00010301096,0.000030785508,0.000031129093,0.00019952844,0.00008696475],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006420188,0.00054028345,0.000485809,0.000589208,0.0015375166,0.0016521261,0.0019737075,0.0012770316,0.0032060866],"category_scores_gemma":[0.0019499562,0.00061284716,0.0009630967,0.0014640222,0.000693275,0.001303826,0.0005801241,0.0012124701,0.00035766093],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014431513,0.00008334242,0.040204428,0.00008714965,0.0002024295,0.000075297336,0.0002785384,0.9376914,0.0009331728,0.0038395326,0.009941249,0.0065191356],"study_design_scores_gemma":[0.00017898192,0.000017585695,0.05764852,0.000047532165,0.0001362085,0.000026734473,0.00025882243,0.9328136,0.0005087563,0.001638735,0.006606861,0.00011767925],"about_ca_topic_score_codex":0.98521495,"about_ca_topic_score_gemma":0.9850279,"teacher_disagreement_score":0.014785051,"about_ca_system_score_codex":0.012219788,"about_ca_system_score_gemma":0.016517142,"threshold_uncertainty_score":0.088661194},"labels":[],"label_agreement":null},{"id":"W2998323188","doi":"","title":"Structural and alteration controls on gold mineralization the of the amphibolite facies Detour Lake Deposit, Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geochemistry and Geologic Mapping","field":"Computer Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Mineralization (soil science); Geochemistry; Metamorphic facies; Facies; Geomorphology","score_opus":0.007073046377811345,"score_gpt":0.17819696842216667,"score_spread":0.17112392204435534,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998323188","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99782974,0.000075416945,0.000048610156,0.000033128956,0.0000012701443,0.0000058460246,0.00023944769,0.0000053583094,0.0017610487],"genre_scores_gemma":[0.9984775,0.000059436898,0.000058359426,0.000008820709,4.983332e-7,0.0000020737502,0.00008114776,0.000004447173,0.0013076991],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997855,0.000009945487,0.000007899962,0.000034729917,0.000066354005,0.000095599724],"domain_scores_gemma":[0.99963164,0.000019993162,0.00003834185,0.000008758113,0.00024612152,0.00005519299],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015110562,0.00019834602,0.00026248998,0.0011649678,0.00200198,0.0011505954,0.00050181005,0.00027087145,0.0020761408],"category_scores_gemma":[0.00040492014,0.00024373614,0.00017906245,0.0010359776,0.0011531804,0.00025134443,0.00049483735,0.00020911008,0.00021093716],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010236849,0.00008588154,0.83418304,0.000119010576,0.00013179427,0.0004494017,0.00317666,0.002887611,0.13273229,0.0016247367,0.0010780417,0.022507811],"study_design_scores_gemma":[0.0000045218994,0.000014199948,0.995774,0.0000048293814,0.000012676975,0.000026742013,0.00094724126,0.00047547725,0.001676,0.00003921053,0.0010193728,0.000005733622],"about_ca_topic_score_codex":0.96712005,"about_ca_topic_score_gemma":0.99048376,"teacher_disagreement_score":0.03287995,"about_ca_system_score_codex":0.012619969,"about_ca_system_score_gemma":0.007952009,"threshold_uncertainty_score":0.091564715},"labels":[],"label_agreement":null},{"id":"W2998391090","doi":"","title":"Effect of inorganic and organic ligands on the sorption/desorption of arsenate on/from Al-Mg and Fe-Mg layered double hydroxides","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Layered Double Hydroxides Synthesis and Applications","field":"Materials Science","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Canadian Light Source (Canada); University of Saskatchewan","funders":"","keywords":"Arsenate; Sorption; Chemistry; Layered double hydroxides; Desorption; Inorganic chemistry; Nitrate; Arsenic; Environmental chemistry; Adsorption; Hydroxide; Organic chemistry","score_opus":0.014657112621631605,"score_gpt":0.24486174156416055,"score_spread":0.23020462894252894,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998391090","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99839824,0.0003113513,0.00047108618,0.000026677637,0.000009819117,0.000010524724,0.000083176354,0.000019958517,0.0006691772],"genre_scores_gemma":[0.99825686,0.00018438062,0.00077803613,0.000022573351,0.0000058278265,0.000006466738,0.000072004106,0.0000110198425,0.00066285394],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998323,0.000047726142,0.000014600723,0.000027358088,0.000039455394,0.00003848037],"domain_scores_gemma":[0.9996401,0.00018874893,0.000051815547,0.000017009563,0.00005599034,0.0000462945],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002303268,0.00029411862,0.0002283577,0.00009536943,0.00014603013,0.0003723183,0.0001979438,0.00018954709,0.0012409898],"category_scores_gemma":[0.0005663918,0.00015509487,0.00013087658,0.0000918384,0.00023631938,0.00020768853,0.00015774446,0.00022931532,0.00023737304],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006011487,0.000026505728,0.000278068,0.00007314349,0.000011251373,0.00003637291,0.000035396268,0.00018672697,0.99753416,0.000027275066,0.00001583738,0.0011740816],"study_design_scores_gemma":[0.000013069682,0.0002258793,0.0007141472,0.0000029705493,0.000008248693,0.000023742341,0.000022910894,0.00048502508,0.99812406,0.0000064394603,0.000368837,0.000004729306],"about_ca_topic_score_codex":0.0012949106,"about_ca_topic_score_gemma":0.0017543456,"teacher_disagreement_score":0.0012949106,"about_ca_system_score_codex":0.00021517006,"about_ca_system_score_gemma":0.00018667485,"threshold_uncertainty_score":0.0041515827},"labels":[],"label_agreement":null},{"id":"W2998677667","doi":"","title":"The Cretaceous Sverdrup Basin, Nunavut, Canada: A Boreal Ocean under Greenhouse Conditions","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sverdrup; Boreal; Geology; Oceanography; Structural basin; Cretaceous; Climatology; Environmental science; Physical geography; Arctic; Geography; Paleontology","score_opus":0.01319097596799724,"score_gpt":0.1860216270621636,"score_spread":0.17283065109416637,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998677667","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9922861,0.00064465875,0.00013234738,0.0003007925,0.000018050474,0.00002899876,0.0016752157,0.000025399864,0.004888298],"genre_scores_gemma":[0.99701715,0.00025630323,0.00029585662,0.000069446265,0.0000029755975,0.000009061754,0.00047032908,0.000012681862,0.0018662139],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997434,0.0000214443,0.000011006582,0.00006415379,0.000052865056,0.00010713656],"domain_scores_gemma":[0.999653,0.000020856847,0.00003890282,0.000013292817,0.00018710505,0.00008687976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002520322,0.00030461416,0.00035275577,0.0010774605,0.0035578571,0.0015042566,0.0008860957,0.0003954076,0.0018442755],"category_scores_gemma":[0.0007039232,0.00023155434,0.00026988232,0.0023115703,0.0014127257,0.00065018533,0.0010733375,0.0003565411,0.0001370242],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007162237,0.00009149189,0.9296532,0.00025285245,0.00021491178,0.0017587673,0.012575393,0.0030915362,0.010881222,0.002773931,0.004526241,0.033464268],"study_design_scores_gemma":[0.00001651969,0.000021188594,0.985516,0.00005156443,0.000030415267,0.0001497549,0.007980775,0.000581336,0.0003337641,0.0001465904,0.0051511177,0.000020939066],"about_ca_topic_score_codex":0.99445313,"about_ca_topic_score_gemma":0.99840075,"teacher_disagreement_score":0.016232558,"about_ca_system_score_codex":0.016232558,"about_ca_system_score_gemma":0.02473125,"threshold_uncertainty_score":0.11777598},"labels":[],"label_agreement":null},{"id":"W2998810403","doi":"","title":"Paleoceanography of marine isotope stage 31 (ca. 1.07 Ma) in the Labrador Sea based on palynological, microfaunal and isotopic data","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Paleoceanography; Geology; Palynology; Overprinting; Stage (stratigraphy); Marine isotope stage; Oceanography; Paleontology; Glacial period; Pollen; Interglacial","score_opus":0.03069617249927631,"score_gpt":0.25532568223578916,"score_spread":0.22462950973651286,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998810403","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9970009,0.00022714287,0.000033043623,0.00006105998,0.0000020779514,0.0000034468944,0.0013341699,0.00001618575,0.0013219991],"genre_scores_gemma":[0.9978668,0.00012706242,0.00009942456,0.000015065447,0.0000028021245,0.0000033840327,0.001112634,0.0000064650867,0.0007663381],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999199,0.000009125021,0.000009520744,0.000022333448,0.000009312454,0.000029843675],"domain_scores_gemma":[0.9998165,0.000018270242,0.00006941223,0.0000116749925,0.00004685039,0.000037395694],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000211172,0.00013819002,0.00014273326,0.001484639,0.00041264982,0.00044906707,0.00031014683,0.00017853701,0.0019964979],"category_scores_gemma":[0.00042384616,0.0001427669,0.00016373675,0.00091009855,0.00031359136,0.00027294693,0.00036099055,0.00017259378,0.00036497173],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024603461,0.00002491465,0.9678886,0.000058227884,0.00008794454,0.00017710614,0.001021712,0.0006591034,0.0065533966,0.0003493502,0.001068071,0.021865552],"study_design_scores_gemma":[0.0000012774351,0.0000054722514,0.9989606,0.0000050512076,0.0000042310885,0.00002755866,0.000118178934,0.00011443737,0.00012845486,0.000008166363,0.0006243797,0.0000022535742],"about_ca_topic_score_codex":0.2943471,"about_ca_topic_score_gemma":0.5457639,"teacher_disagreement_score":0.7056529,"about_ca_system_score_codex":0.001359015,"about_ca_system_score_gemma":0.0007551605,"threshold_uncertainty_score":0.58526766},"labels":[],"label_agreement":null},{"id":"W2998917243","doi":"","title":"Geoarchaeology of Paalliq 1 Valley, Kuuvik Bay, Nunavik (Québec)","year":2017,"lang":"fi","type":"article","venue":"EGUGA","topic":"Pleistocene-Era Hominins and Archaeology","field":"Social Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geoarchaeology; Bay; Geography; Archaeology","score_opus":0.03112986968224594,"score_gpt":0.3089839568312582,"score_spread":0.2778540871490122,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2998917243","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96012497,0.0028078875,0.00049831026,0.000952933,0.000026618767,0.00009719215,0.0041296855,0.00005611981,0.031306185],"genre_scores_gemma":[0.97988486,0.00075145304,0.0006032736,0.00008384244,0.000004032447,0.00003696119,0.0009821404,0.000017220445,0.01763621],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997874,0.00003543605,0.000012962309,0.000037781607,0.000035708734,0.00009061392],"domain_scores_gemma":[0.99953866,0.000050569193,0.00006227738,0.000024144443,0.00022804964,0.00009632179],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028475974,0.00024456417,0.00026678725,0.0022577893,0.0050015226,0.0014003895,0.0009758738,0.00034080326,0.007851378],"category_scores_gemma":[0.0007311326,0.00023682124,0.00017425217,0.0055131135,0.0013956724,0.000431469,0.00087347877,0.00050298835,0.00039605194],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000498296,0.00014276113,0.7285507,0.0005960987,0.00021334732,0.002789076,0.07829173,0.002395954,0.006584421,0.015627036,0.022040548,0.14227006],"study_design_scores_gemma":[0.000012751539,0.000026382299,0.9342026,0.00014214705,0.000026218511,0.00034653864,0.024876762,0.00059934985,0.00027466088,0.00024455725,0.039222106,0.000026003863],"about_ca_topic_score_codex":0.9952123,"about_ca_topic_score_gemma":0.9990675,"teacher_disagreement_score":0.029144576,"about_ca_system_score_codex":0.029144576,"about_ca_system_score_gemma":0.024372367,"threshold_uncertainty_score":0.2114597},"labels":[],"label_agreement":null},{"id":"W2999118306","doi":"","title":"Eddy induced heat transport into and out of the Labrador Sea","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Oceanography; Climatology; Meteorology; Geography","score_opus":0.018615890409740498,"score_gpt":0.20928166308804205,"score_spread":0.19066577267830156,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999118306","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99888366,0.00002369228,0.000061127,0.000027924287,0.000003777329,0.000002375428,0.00012695753,0.000023381712,0.0008469378],"genre_scores_gemma":[0.99945563,0.000019125542,0.00006387267,0.0000060451202,0.000002391501,0.0000015877686,0.0000971807,0.0000076189854,0.0003465184],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999267,0.000009599682,0.0000054912784,0.000018253273,0.000009733314,0.00003018628],"domain_scores_gemma":[0.99988914,0.000026672846,0.000020900587,0.00001027867,0.000030136624,0.000022830838],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00008561803,0.00021661365,0.00028837347,0.0004210851,0.00056838087,0.0006907656,0.00028671327,0.00027882867,0.0011568206],"category_scores_gemma":[0.0004140212,0.00016431576,0.00038126754,0.00037157757,0.00038314238,0.000547934,0.00053647783,0.00032282682,0.00016311578],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002074958,0.00025879985,0.76504177,0.00019966584,0.00032539005,0.0011858834,0.0023663682,0.04439855,0.15242493,0.0016665668,0.0013033645,0.028753802],"study_design_scores_gemma":[0.00007535684,0.00014044825,0.96383435,0.000014814618,0.00008368858,0.000065503824,0.00063719915,0.027127758,0.007014186,0.00011676816,0.0008577151,0.000032228352],"about_ca_topic_score_codex":0.18660277,"about_ca_topic_score_gemma":0.13399565,"teacher_disagreement_score":0.18660277,"about_ca_system_score_codex":0.001570179,"about_ca_system_score_gemma":0.0010066997,"threshold_uncertainty_score":0.37103325},"labels":[],"label_agreement":null},{"id":"W2999205532","doi":"","title":"Constraining lithosphere deformation mode evolution for the Iberia-Newfoundland rifted margins","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geophysical Studies Worldwide","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Lithosphere; Geology; Deformation (meteorology); Mode (computer interface); Seismology; Tectonics; Oceanography","score_opus":0.030384202403739353,"score_gpt":0.2305829544387368,"score_spread":0.20019875203499746,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999205532","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9953088,0.00036848325,0.00035766055,0.000118087206,0.000013430081,0.00000797667,0.0012072381,0.000036961846,0.0025812956],"genre_scores_gemma":[0.994913,0.00021433727,0.001152948,0.00005491748,0.000009732193,0.0000105778245,0.0022168236,0.000025867907,0.0014017406],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978775,0.000019712985,0.000009561731,0.00005108495,0.000015953896,0.0001159306],"domain_scores_gemma":[0.99965596,0.000035066496,0.00006904881,0.000042153537,0.00011632895,0.00008155692],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006062126,0.0005103173,0.00029349004,0.0015213868,0.0010726715,0.0013680286,0.0003960317,0.00036226824,0.002052326],"category_scores_gemma":[0.0008099157,0.00024914104,0.00040412726,0.0011034486,0.00030386666,0.00038110622,0.0010143665,0.00038255585,0.0004147518],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00049425557,0.00016970596,0.8849959,0.00008209638,0.0004150327,0.00044835886,0.0006907913,0.028332133,0.010109557,0.0005852681,0.0057808007,0.067896135],"study_design_scores_gemma":[0.00003359053,0.000023005705,0.9792764,0.00006134668,0.00009590247,0.00003820919,0.00093420024,0.014733689,0.0008087011,0.000045335953,0.003931626,0.000017945591],"about_ca_topic_score_codex":0.79393035,"about_ca_topic_score_gemma":0.91552824,"teacher_disagreement_score":0.79393035,"about_ca_system_score_codex":0.0024874771,"about_ca_system_score_gemma":0.0033613946,"threshold_uncertainty_score":0.41456646},"labels":[],"label_agreement":null},{"id":"W2999214766","doi":"","title":"The Eocene Thermal Maximum 2 (ETM-2) in a terrestrial section of the High Arctic: identification by U-Pb zircon ages of volcanic ashes and carbon isotope records of coal and amber (Stenkul Fiord, Ellesmere Island, Canada)","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":3,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Zircon; Geology; Arctic; Volcano; Geochemistry; Section (typography); Mineralogy; Earth science; Oceanography","score_opus":0.00979723906144752,"score_gpt":0.18666952163411474,"score_spread":0.1768722825726672,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999214766","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982175,0.0002296871,0.00007625708,0.000025750182,0.000003576711,0.0000034422849,0.00020555705,0.000004421191,0.0012337876],"genre_scores_gemma":[0.9990689,0.00008308258,0.00014360188,0.000020168149,0.0000046293226,0.0000028773711,0.0002898504,0.0000042153797,0.0003827669],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99991405,0.000007169732,0.0000043401483,0.000022834436,0.00001798648,0.0000335933],"domain_scores_gemma":[0.9998808,0.000008320081,0.00002749677,0.000005740591,0.00004134601,0.00003622799],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002266093,0.00019230504,0.00018458188,0.00085021235,0.00146891,0.0005802363,0.00032445256,0.00037186497,0.00047555435],"category_scores_gemma":[0.00024608616,0.00022414584,0.0001348618,0.0008151741,0.0004922783,0.00024366668,0.0006408548,0.00023135575,0.00014987784],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005125825,0.000057939335,0.94039106,0.000055566936,0.000051942185,0.0009999641,0.0033175712,0.00039361397,0.036231883,0.00036436043,0.00059934426,0.017024253],"study_design_scores_gemma":[0.0000040650616,0.000013858249,0.9967908,0.000009541837,0.000008123795,0.00016197571,0.00055408076,0.00014247176,0.0006625929,0.000016798464,0.001633302,0.0000022809256],"about_ca_topic_score_codex":0.37914488,"about_ca_topic_score_gemma":0.6264821,"teacher_disagreement_score":0.6208551,"about_ca_system_score_codex":0.0016600279,"about_ca_system_score_gemma":0.0014378553,"threshold_uncertainty_score":0.75387603},"labels":[],"label_agreement":null},{"id":"W2999272107","doi":"","title":"Statistical Properties and Quality of some Operational Inflow Forecasts at Hydro-Québec over Different Temporal Scales","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Reservoir Engineering and Simulation Methods","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Inflow; Environmental science; Quality (philosophy); Climatology; Hydrology (agriculture); Meteorology; Econometrics; Geography; Geology; Economics","score_opus":0.059983791667432874,"score_gpt":0.29369202794819166,"score_spread":0.2337082362807588,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999272107","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9954098,0.000074869866,0.00154427,0.00014364606,0.00000934658,0.000007539482,0.0019400329,0.00011293633,0.0007575393],"genre_scores_gemma":[0.99707353,0.00003215498,0.00041713967,0.00001248886,0.000004217112,0.000003620144,0.002120499,0.000016727186,0.00031959],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995827,0.0000689183,0.000039793307,0.00009565466,0.00012603146,0.0000868483],"domain_scores_gemma":[0.9876754,0.006801451,0.0012701895,0.0005017903,0.0032594744,0.0004916134],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001633194,0.00022959031,0.00023871896,0.0010445521,0.0005082735,0.0011706856,0.00052819814,0.00051097263,0.0012787471],"category_scores_gemma":[0.008541907,0.00023573471,0.0003411703,0.0011670237,0.00063845044,0.00065720506,0.0002509352,0.0004991583,0.0001238156],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006635349,0.000088942055,0.61114943,0.00006742469,0.00026944993,0.0002442528,0.00036609382,0.36040434,0.0041388,0.0013121569,0.0032020684,0.018093532],"study_design_scores_gemma":[0.00002022621,0.000031667358,0.5701327,0.000013952804,0.000046843823,0.000033001525,0.00022912721,0.42728907,0.0013227408,0.000245296,0.0005859501,0.000049519615],"about_ca_topic_score_codex":0.7875034,"about_ca_topic_score_gemma":0.8019113,"teacher_disagreement_score":0.21249658,"about_ca_system_score_codex":0.0037208495,"about_ca_system_score_gemma":0.0023188507,"threshold_uncertainty_score":0.42749602},"labels":[],"label_agreement":null},{"id":"W2999281471","doi":"10.13140/rg.2.2.19742.64328","title":"Paleo-hydrogeological evolution of a fractured-rock aquifer since the Champlain Sea incursion in the St. Lawrence Valley (Quebec, Canada)","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Hydrogeology; Aquifer; Archaeology; Geomorphology; Hydrology (agriculture); Groundwater; Geotechnical engineering; Geography","score_opus":0.006384432732890043,"score_gpt":0.20364136012483622,"score_spread":0.19725692739194617,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999281471","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965301,0.00014741458,0.00005918383,0.00017174885,0.0000029630517,0.000007915484,0.0015382692,0.000008414875,0.0015340653],"genre_scores_gemma":[0.9982014,0.00007100746,0.00006000507,0.000031119234,0.000001674332,0.0000041928593,0.000550083,0.0000031259167,0.0010774175],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998399,0.000012981497,0.000006764579,0.000035087032,0.000026612992,0.00007865784],"domain_scores_gemma":[0.99956447,0.000024120349,0.000060999722,0.000013756735,0.00021788062,0.000118719305],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022025916,0.00015567358,0.00018799935,0.0012383614,0.0018174899,0.0010475882,0.00090455916,0.00053003035,0.0028528667],"category_scores_gemma":[0.00050441554,0.00020304136,0.00021421819,0.002297352,0.0013340921,0.00036574792,0.00082530355,0.00038733464,0.00029579294],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001649297,0.00006488782,0.97687256,0.000037379286,0.000067555324,0.00051174156,0.0037187496,0.00085644494,0.0018845975,0.0003527037,0.0015402907,0.01392804],"study_design_scores_gemma":[0.0000014820445,0.000005528685,0.9978097,0.000007925014,0.0000043803993,0.000032151693,0.001279992,0.00017358929,0.00003946106,0.000013531264,0.0006275366,0.0000046857085],"about_ca_topic_score_codex":0.9787192,"about_ca_topic_score_gemma":0.9933989,"teacher_disagreement_score":0.021280825,"about_ca_system_score_codex":0.012659363,"about_ca_system_score_gemma":0.0070095547,"threshold_uncertainty_score":0.09185046},"labels":[],"label_agreement":null},{"id":"W2999397229","doi":"","title":"Aerosol microphysical processes and properties in Canadian boreal forest fire plumes measured during BORTAS","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Aerosol; Environmental science; Taiga; Atmospheric sciences; Boreal; Meteorology; Climatology; Geography; Geology; Forestry","score_opus":0.009534044898247041,"score_gpt":0.17005895399785004,"score_spread":0.16052490909960299,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999397229","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984303,0.000054809305,0.00007998249,0.000022795357,0.0000047945487,0.0000100805755,0.00047038659,0.00001655891,0.00091031945],"genre_scores_gemma":[0.99869305,0.00005506319,0.00018659836,0.000016725267,0.000003067709,0.000008521024,0.0005171685,0.000005730918,0.00051409163],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980587,0.000004722362,0.0000064984088,0.000033808206,0.00007755138,0.000071518196],"domain_scores_gemma":[0.99979025,0.000018730258,0.00002322701,0.000006941844,0.00010496202,0.00005583104],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016576481,0.0003620226,0.00027722074,0.0010675214,0.0024536152,0.000811049,0.00051794195,0.0003837978,0.000743711],"category_scores_gemma":[0.00034544646,0.00023917231,0.00028794433,0.0007460453,0.00042574396,0.00037448027,0.00040267882,0.000405152,0.00008007503],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00092145195,0.00026800597,0.8928189,0.00006010238,0.00013922223,0.0005183089,0.0028219433,0.0029346545,0.08363434,0.00032895623,0.0012763822,0.0142777795],"study_design_scores_gemma":[0.000011575553,0.00002027021,0.9951198,0.0000042494585,0.000017121236,0.00003908751,0.00046086984,0.0015290614,0.0021126415,0.000008935217,0.00066289917,0.000013451909],"about_ca_topic_score_codex":0.9668419,"about_ca_topic_score_gemma":0.9799162,"teacher_disagreement_score":0.033158123,"about_ca_system_score_codex":0.008173189,"about_ca_system_score_gemma":0.004832601,"threshold_uncertainty_score":0.06670672},"labels":[],"label_agreement":null},{"id":"W2999558722","doi":"","title":"Reconstructing the environmental impact of smelters using Pb isotope analyses of peat cores from bogs: Flin Flon, Manitoba and Harjavalta, Finland","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Bog; Smelting; Environmental science; Environmental impact assessment; Geology; Ecology; Archaeology; Geography; Chemistry","score_opus":0.03617198188914693,"score_gpt":0.2891547790707872,"score_spread":0.25298279718164024,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999558722","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995314,0.000045082445,0.00007368865,0.0000075075945,8.813625e-7,0.0000016814738,0.0000757503,0.0000038336743,0.00026022026],"genre_scores_gemma":[0.9993426,0.000049270133,0.00028150284,0.0000050419517,9.941513e-7,0.0000030074614,0.00015103241,0.0000044873436,0.0001620216],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998745,0.000018780669,0.000009677403,0.000028407467,0.00001871796,0.00004991608],"domain_scores_gemma":[0.9998299,0.000038079186,0.000029593011,0.000011851228,0.00005351927,0.00003706472],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028411136,0.00034065725,0.00023656624,0.0014797259,0.0009613444,0.0009909251,0.00039149873,0.00049589766,0.00045521065],"category_scores_gemma":[0.00047985106,0.0004187917,0.000288335,0.0007340459,0.0005556647,0.0004561102,0.0005963239,0.00019406951,0.00013523691],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003004265,0.00004586826,0.95151633,0.00004475072,0.00011570462,0.00039800277,0.0010768736,0.0018657439,0.03702434,0.00010061156,0.00007583906,0.0074354326],"study_design_scores_gemma":[0.000006334023,0.00001449,0.99662685,0.00000822996,0.000030133298,0.000043538275,0.00085020537,0.001083186,0.0010762434,0.000030462747,0.0002245164,0.00000581338],"about_ca_topic_score_codex":0.28129548,"about_ca_topic_score_gemma":0.54572594,"teacher_disagreement_score":0.7187045,"about_ca_system_score_codex":0.0012469259,"about_ca_system_score_gemma":0.0015171444,"threshold_uncertainty_score":0.5593163},"labels":[],"label_agreement":null},{"id":"W2999819408","doi":"","title":"Pleistocene Volcanic Fields in the Anahim Volcanic Belt: What, why, how? - Chilcotin Highland, West-Central British Columbia, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Volcano; Pleistocene; Geology; Archaeology; Geography; Physical geography; Paleontology","score_opus":0.008031778796532829,"score_gpt":0.18034271062703217,"score_spread":0.17231093183049934,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999819408","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9879583,0.0022524649,0.000074198586,0.0009359314,0.000011037904,0.00002009911,0.0016242366,0.000011835823,0.007111942],"genre_scores_gemma":[0.9937541,0.0012977228,0.00017275698,0.00010006515,0.0000052727587,0.0000070154388,0.0006477411,0.0000052759924,0.004009984],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986315,0.0000113223205,0.000008774764,0.00002198132,0.00002781353,0.00006698092],"domain_scores_gemma":[0.9993262,0.00005226966,0.00006481539,0.000016013006,0.00043831472,0.00010239115],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019634415,0.00013362194,0.00015619071,0.001659094,0.0020903721,0.0011654394,0.00040200417,0.00017769937,0.002421447],"category_scores_gemma":[0.00077609625,0.00012729029,0.00014401316,0.0035712027,0.00067742565,0.0003919848,0.0005123673,0.00036222526,0.00017861126],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009233838,0.000030066325,0.9383538,0.00018007601,0.000056123314,0.0004658472,0.011489781,0.00021010116,0.0016483522,0.00068361405,0.0037458476,0.043044016],"study_design_scores_gemma":[0.0000021990884,0.0000024893568,0.9904578,0.000051213377,0.000011390159,0.000039848215,0.006663047,0.000064276835,0.00009106979,0.000042264437,0.002569994,0.000004493844],"about_ca_topic_score_codex":0.993327,"about_ca_topic_score_gemma":0.9988341,"teacher_disagreement_score":0.011923525,"about_ca_system_score_codex":0.011923525,"about_ca_system_score_gemma":0.011706192,"threshold_uncertainty_score":0.08651161},"labels":[],"label_agreement":null},{"id":"W2999927402","doi":"","title":"An algorithm for blending multiple satellite precipitation estimates with in situ precipitation measurements in Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Precipitation Measurement and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Environment and Climate Change Canada","funders":"","keywords":"Precipitation; Gauge (firearms); Rain gauge; Satellite; Data set; Mean squared error; Algorithm; Kriging; Mathematics; Statistics; Meteorology; Environmental science; Remote sensing; Physics; Geology; Geography","score_opus":0.03772253437705543,"score_gpt":0.24529505805929241,"score_spread":0.207572523682237,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W2999927402","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.032015253,0.00010246133,0.96322125,0.00007913702,0.00004037528,0.00017304742,0.00031685978,0.0024258485,0.0016257185],"genre_scores_gemma":[0.11934528,0.00010470854,0.87600154,0.00004545649,0.00001660157,0.00012049902,0.0007844256,0.00024704478,0.0033343765],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999298,0.000030727817,0.00003774187,0.00014804977,0.0004004807,0.000084907464],"domain_scores_gemma":[0.9993536,0.00006446775,0.000048542664,0.000038045764,0.00045782124,0.000037549235],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00055036636,0.0010672051,0.00068777543,0.0019092234,0.0011937466,0.0011157799,0.0016520717,0.0005399313,0.002162506],"category_scores_gemma":[0.0021070542,0.0006235389,0.00072739506,0.0026633157,0.00041850898,0.0007598563,0.0012215659,0.00077328394,0.0005626997],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018499033,0.0000736946,0.016168714,0.00009012287,0.00016507953,0.00020434502,0.00024168073,0.29118043,0.015826752,0.0028581535,0.004104478,0.66890156],"study_design_scores_gemma":[0.00002180479,0.000020353918,0.004801851,0.0000085694055,0.000044695324,0.00006717629,0.00006624712,0.982874,0.006792208,0.00089101045,0.0043908907,0.000021170561],"about_ca_topic_score_codex":0.58899254,"about_ca_topic_score_gemma":0.6008741,"teacher_disagreement_score":0.41100746,"about_ca_system_score_codex":0.0038271025,"about_ca_system_score_gemma":0.007425982,"threshold_uncertainty_score":0.8268559},"labels":[],"label_agreement":null},{"id":"W3000039673","doi":"","title":"Historical Changes in Australian temperature extremes as inferred from extreme value distribution analysis","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada","funders":"","keywords":"Extreme value theory; Generalized extreme value distribution; Percentile; Extreme heat; Extreme Cold; Climatology; Return period; Environmental science; Climate change; Mathematics; Statistics; Geography; Geology; Oceanography","score_opus":0.03016215399100761,"score_gpt":0.23666900665469226,"score_spread":0.20650685266368465,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000039673","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99163896,0.00013911787,0.0041774865,0.000064405926,0.0000059151794,0.000009510416,0.0006147661,0.000027627406,0.0033222425],"genre_scores_gemma":[0.9979944,0.00009118979,0.0011433862,0.000009295389,0.0000037070893,0.000006261375,0.00039658757,0.0000045166307,0.00035076553],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996965,0.00009006096,0.000025383679,0.00005613877,0.00010195233,0.000030102383],"domain_scores_gemma":[0.9990515,0.00019164917,0.0002859663,0.000101794394,0.00031063383,0.000058430298],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00067154784,0.000108893895,0.00015237903,0.0012384546,0.00026962487,0.00043792074,0.00024005622,0.00021573705,0.0006556145],"category_scores_gemma":[0.0032178818,0.00014063115,0.00016713065,0.0016434377,0.0003164004,0.00043423296,0.00045539316,0.0002900491,0.00017479966],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010370281,0.000038458442,0.91704834,0.0000762736,0.000112130656,0.00035092616,0.0014675751,0.027431369,0.005016104,0.0027058884,0.0011527481,0.044496473],"study_design_scores_gemma":[8.5557366e-7,0.00003390496,0.98206127,0.000008452693,0.000013180231,0.00010785543,0.00013078217,0.015086493,0.00040008617,0.0004797432,0.0016675005,0.000009895346],"about_ca_topic_score_codex":0.019538352,"about_ca_topic_score_gemma":0.034887236,"teacher_disagreement_score":0.019538352,"about_ca_system_score_codex":0.0007966734,"about_ca_system_score_gemma":0.0002331894,"threshold_uncertainty_score":0.038849235},"labels":[],"label_agreement":null},{"id":"W3000074617","doi":"","title":"Incorporating fire severity into estimates of carbon losses from wildfires in Ontario","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Environmental science; Climatology; Physical geography; Atmospheric sciences; Meteorology; Geography; Geology","score_opus":0.005208203460581029,"score_gpt":0.19920615574665176,"score_spread":0.19399795228607072,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000074617","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997072,0.00016179442,0.0005708949,0.0000613778,0.000003958669,0.000010233117,0.000766154,0.000009099448,0.001344583],"genre_scores_gemma":[0.9984041,0.000120527584,0.00046530762,0.000010227857,0.0000019337515,0.0000045813754,0.00040019266,0.0000058316054,0.0005873486],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968123,0.000047271602,0.000027430915,0.000055425928,0.00012390199,0.000064686545],"domain_scores_gemma":[0.99860436,0.0003227911,0.0002661609,0.000065778746,0.0006023353,0.00013850212],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000764173,0.00027454915,0.00024368573,0.00065162644,0.0010335791,0.0010127958,0.0006132865,0.00027859161,0.000596927],"category_scores_gemma":[0.003057106,0.00025084193,0.00033450878,0.0009835374,0.0004150237,0.00051064836,0.0003701831,0.00029118732,0.000100941295],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021398137,0.000025026562,0.9501093,0.00005972295,0.00024909756,0.00013748197,0.0007667694,0.034155156,0.001728173,0.0003176089,0.00063145644,0.011606223],"study_design_scores_gemma":[0.000013810365,0.000015000762,0.9743779,0.000020649077,0.000100062665,0.00003925759,0.00078345655,0.02212684,0.00064608146,0.00019454528,0.0016638722,0.00001847689],"about_ca_topic_score_codex":0.97622037,"about_ca_topic_score_gemma":0.9939148,"teacher_disagreement_score":0.02377963,"about_ca_system_score_codex":0.014110184,"about_ca_system_score_gemma":0.0061168354,"threshold_uncertainty_score":0.10237706},"labels":[],"label_agreement":null},{"id":"W3000260457","doi":"","title":"Oceanographic regimes in the northwest Labrador Sea since Marine Isotope Stage 3 based on dinocyst and stable isotope proxy records","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Dinocyst; Proxy (statistics); Oceanography; Geology; Marine isotope stage; Stable isotope ratio; Stage (stratigraphy); Isotope; Climatology; Paleontology; Quaternary; Ecology; Interglacial","score_opus":0.0075417295098323634,"score_gpt":0.19976550214313274,"score_spread":0.19222377263330037,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000260457","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982768,0.000103916565,0.00002345646,0.00004096087,0.0000028756383,0.0000017911013,0.0008381525,0.0000075764424,0.00070456],"genre_scores_gemma":[0.99795496,0.00010564777,0.00007140425,0.000027574693,0.0000045723455,0.0000031478933,0.0012687717,0.0000045054176,0.0005595441],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998516,0.00001978974,0.000022073033,0.00003016741,0.000017298855,0.00005914891],"domain_scores_gemma":[0.9995338,0.00003801748,0.00021308014,0.000022481132,0.00011078969,0.00008184903],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002815255,0.00017335576,0.00017901858,0.0012192172,0.0004178205,0.00073942635,0.00030545695,0.00024087288,0.0011228557],"category_scores_gemma":[0.0006008221,0.00012638838,0.0002548346,0.0012809711,0.00033503407,0.0004343416,0.00047534972,0.00025221103,0.00029987327],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014435427,0.000017344359,0.99456537,0.000012230461,0.00005163142,0.00007374632,0.00036014733,0.0001478208,0.0006977382,0.000059435057,0.0002665956,0.0036034372],"study_design_scores_gemma":[0.0000015265016,0.0000057240613,0.99924254,0.000004002576,0.0000071733875,0.000017666714,0.00026171323,0.000071523726,0.00007789792,0.0000041618423,0.0003037204,0.0000023906357],"about_ca_topic_score_codex":0.29621658,"about_ca_topic_score_gemma":0.5492286,"teacher_disagreement_score":0.7037834,"about_ca_system_score_codex":0.0012973617,"about_ca_system_score_gemma":0.0009064297,"threshold_uncertainty_score":0.58898485},"labels":[],"label_agreement":null},{"id":"W3000297900","doi":"","title":"Impact of long-term wetting on belowground respiration and methanogenesis in Luther Bog, Ontario","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Methanogenesis; Bog; Term (time); Environmental science; Respiration; Ecology; Hydrology (agriculture); Methane; Biology; Geology; Peat; Botany","score_opus":0.015984090896420885,"score_gpt":0.26310393565521173,"score_spread":0.24711984475879084,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000297900","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9995863,0.000027565247,0.000011731832,0.00001938002,0.0000010427102,8.2777046e-7,0.0000959534,0.0000015898916,0.00025564936],"genre_scores_gemma":[0.9989955,0.000028804501,0.00002203891,0.000011562665,7.9283456e-7,0.0000015941822,0.00009896134,0.0000016850739,0.0008389502],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998901,0.00001120091,0.00000554945,0.000016823959,0.000018876775,0.000057471327],"domain_scores_gemma":[0.99966705,0.00004389125,0.0000587722,0.000016713631,0.00008389331,0.00012966788],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014029925,0.00009323978,0.00014032361,0.00017961324,0.000808362,0.0005915947,0.0002691397,0.00020242471,0.0009833098],"category_scores_gemma":[0.00042783676,0.00012478157,0.00017327414,0.00018098202,0.0004829556,0.00020471137,0.00039927094,0.00019461168,0.00010634933],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014569582,0.0001342926,0.95083535,0.00004652794,0.00012633415,0.00039920787,0.0040015206,0.00066154357,0.03271056,0.00017548144,0.0006034129,0.008848642],"study_design_scores_gemma":[0.0000020124048,0.000018094208,0.9986395,0.0000026462835,0.000009512953,0.00001062177,0.0006114308,0.00009700611,0.00028837562,0.000009510402,0.00030900742,0.0000022886152],"about_ca_topic_score_codex":0.8894675,"about_ca_topic_score_gemma":0.97501737,"teacher_disagreement_score":0.11053252,"about_ca_system_score_codex":0.0057712267,"about_ca_system_score_gemma":0.0039225384,"threshold_uncertainty_score":0.22236687},"labels":[],"label_agreement":null},{"id":"W3000644215","doi":"","title":"Stained glass and climate change: How are they connected?","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Period (music); Context (archaeology); Climate change; Middle Ages; Fifteenth; Archaeology; History; Geography; North Atlantic oscillation; Architecture; Little ice age; Stained glass; Ancient history; Climatology; Geology; Holocene; Art; Meteorology; Oceanography","score_opus":0.02069013518642443,"score_gpt":0.22860041515544371,"score_spread":0.20791027996901928,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000644215","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9801594,0.0030834964,0.0006505038,0.004355019,0.00009793557,0.000021694235,0.00064565486,0.000017835153,0.010968462],"genre_scores_gemma":[0.99700147,0.000910081,0.00023205327,0.00029381344,0.000061746665,0.000007498819,0.00024762392,0.000011852894,0.0012338427],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995147,0.00015667106,0.000017950413,0.00010256324,0.00006971736,0.00013840881],"domain_scores_gemma":[0.9980075,0.0006657352,0.00074973004,0.00013607866,0.00017303572,0.00026802925],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006729881,0.00019948323,0.00041300594,0.0010675692,0.00070746837,0.002068038,0.0004391887,0.0008214332,0.010312202],"category_scores_gemma":[0.0034008166,0.00023538347,0.00039426654,0.0015666897,0.0013420096,0.0013612126,0.0010771429,0.0006018818,0.00036432513],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027477683,0.00013953871,0.9563716,0.00007263522,0.0002120411,0.0001584508,0.0030153403,0.0002547997,0.0008057553,0.0047394466,0.0015013585,0.032454234],"study_design_scores_gemma":[0.000004619492,0.00002467351,0.99193984,0.000030594318,0.000041237527,0.000040113315,0.0031989086,0.0002316389,0.00007294217,0.002228691,0.0021783167,0.000008437479],"about_ca_topic_score_codex":0.023623616,"about_ca_topic_score_gemma":0.041588716,"teacher_disagreement_score":0.023623616,"about_ca_system_score_codex":0.00073568604,"about_ca_system_score_gemma":0.00044138922,"threshold_uncertainty_score":0.046972215},"labels":[],"label_agreement":null},{"id":"W3000662266","doi":"","title":"Expansion of the Lyme Disease Vector Ixodes scapularis in Canada inferred from CMIP5 Climate Projections","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Vector-borne infectious diseases","field":"Immunology and Microbiology","cited_by":12,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Public Health Agency of Canada; Université du Québec à Montréal; Dalhousie University; St. Francis Xavier University","funders":"","keywords":"Ixodes scapularis; Lyme disease; Ixodes; Vector (molecular biology); Geography; Borrelia burgdorferi; Virology; Tick; Biology; Ixodidae","score_opus":0.012610517490817723,"score_gpt":0.2352813006364381,"score_spread":0.22267078314562036,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000662266","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9799232,0.0017333376,0.0006958333,0.0012884758,0.000028945868,0.000016641849,0.0097166225,0.00006171527,0.006535104],"genre_scores_gemma":[0.9966163,0.0006190949,0.0004244994,0.00008458607,0.000005821701,0.0000044083904,0.0019643335,0.0000064448404,0.00027458862],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997954,0.000019513183,0.000011960795,0.000038788326,0.00005548271,0.00007888557],"domain_scores_gemma":[0.9992341,0.000047780723,0.00008962603,0.000019609244,0.00050702615,0.000101838916],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004601758,0.00023433905,0.00013151385,0.00093127566,0.0008751362,0.0008970197,0.00044618966,0.00030679393,0.0013536105],"category_scores_gemma":[0.0012861044,0.0001191059,0.00030576493,0.0014235373,0.0003251651,0.00033459743,0.00048205623,0.00042793425,0.00011679622],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012042612,0.00002069685,0.9674022,0.0001066718,0.00013643778,0.0001070308,0.000422801,0.0137279695,0.0011655422,0.0015319798,0.004128733,0.011129543],"study_design_scores_gemma":[0.000012966565,0.000010867488,0.9800106,0.00009590822,0.000078232704,0.000036204307,0.0007645723,0.012449268,0.00024271665,0.00033584057,0.005942545,0.000020202453],"about_ca_topic_score_codex":0.9870135,"about_ca_topic_score_gemma":0.98987204,"teacher_disagreement_score":0.013986414,"about_ca_system_score_codex":0.013986414,"about_ca_system_score_gemma":0.01517474,"threshold_uncertainty_score":0.10147905},"labels":[],"label_agreement":null},{"id":"W3000704265","doi":"","title":"Impact of long term wetting on pore water chemistry in a peat bog in Ontario, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Bog; Term (time); Water chemistry; Wetting; Chemistry; Environmental science; Hydrology (agriculture); Earth science; Environmental chemistry; Geology; Geography; Archaeology; Chemical engineering; Geotechnical engineering; Engineering","score_opus":0.004623803588990572,"score_gpt":0.19399192689824304,"score_spread":0.18936812330925248,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3000704265","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99917656,0.000047328824,0.000028382252,0.000072239585,0.0000030759863,0.000004019464,0.00013807464,0.000003609679,0.0005266754],"genre_scores_gemma":[0.99916327,0.000045785127,0.000049064558,0.00002392728,0.0000014187851,0.000002515369,0.00009229756,0.0000017485407,0.00061998784],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997782,0.000016824899,0.000008195993,0.000034648478,0.000051170377,0.00011101787],"domain_scores_gemma":[0.99959165,0.000036008976,0.00004876212,0.000012276163,0.00017149541,0.0001398477],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017757066,0.00015567493,0.000263607,0.0003286704,0.0024146906,0.0009605899,0.00057984795,0.00041693286,0.0007278999],"category_scores_gemma":[0.00042504218,0.00017307037,0.0002635271,0.00044965392,0.0009786292,0.000303622,0.000563865,0.0003757075,0.00009491644],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00050945877,0.00017120308,0.96837294,0.00005958642,0.00009571055,0.001056384,0.005148075,0.0009371931,0.012562474,0.00022686996,0.0010906336,0.009769317],"study_design_scores_gemma":[0.000003417665,0.000017100847,0.9966903,0.0000062762897,0.000010724945,0.000035712095,0.0021765989,0.00034068906,0.00016775086,0.000018853532,0.00052597764,0.000006560781],"about_ca_topic_score_codex":0.9857714,"about_ca_topic_score_gemma":0.9959431,"teacher_disagreement_score":0.015249974,"about_ca_system_score_codex":0.015249974,"about_ca_system_score_gemma":0.012340452,"threshold_uncertainty_score":0.110646844},"labels":[],"label_agreement":null},{"id":"W3001045174","doi":"","title":"A legacy of Hadean silicate differentiation inferred from Hf isotopes in Eoarchean rocks of the Nuvvuagittuq supracrustal belt (Québec, Canada)","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Hadean; Geology; Zircon; Geochemistry; Mafic; Archean; Hornblende; Felsic; Radiogenic nuclide; Phlogopite; Mantle (geology); Biotite; Quartz; Paleontology","score_opus":0.0071827933294911495,"score_gpt":0.16445068802690416,"score_spread":0.157267894697413,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3001045174","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.985344,0.0014844736,0.00037309856,0.0003703153,0.000017841325,0.000012615973,0.0025992705,0.00003868164,0.00975971],"genre_scores_gemma":[0.99794096,0.00018502939,0.00017408446,0.00005449169,0.0000031432023,0.0000032849784,0.0005632153,0.000012196867,0.0010635685],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997019,0.000012231809,0.000011919392,0.00008350901,0.000085768406,0.0001046071],"domain_scores_gemma":[0.99894935,0.00004435246,0.000096985874,0.00005325026,0.0007228053,0.00013325007],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00045084278,0.00027319422,0.00027955614,0.0021839265,0.0029669984,0.0014952524,0.0008656671,0.00036448234,0.003195946],"category_scores_gemma":[0.00083737675,0.0002044921,0.00019686884,0.0032269368,0.0014168014,0.00044355408,0.00054240256,0.00041888191,0.00022408024],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001865698,0.000026336127,0.9387792,0.00009945427,0.00016196824,0.00023218479,0.0029932342,0.00077263516,0.012937125,0.0012675499,0.0028200957,0.039723698],"study_design_scores_gemma":[0.0000028579773,0.0000060874313,0.99578863,0.000026772084,0.00001284753,0.000035446894,0.0005973478,0.00025069882,0.0003733288,0.00003261235,0.0028656044,0.00000786784],"about_ca_topic_score_codex":0.9935208,"about_ca_topic_score_gemma":0.99736744,"teacher_disagreement_score":0.02839446,"about_ca_system_score_codex":0.02839446,"about_ca_system_score_gemma":0.011027219,"threshold_uncertainty_score":0.2060172},"labels":[],"label_agreement":null},{"id":"W3001287641","doi":"","title":"An exhumation history of Hall Peninsula, Baffin Island, Canada derived from low-temperature thermochronology and 3D thermokinematic modeling","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Thermochronology; Geology; Peninsula; Geography; Physical geography; Archaeology; Seismology; Tectonics","score_opus":0.010246349371478714,"score_gpt":0.19239094165369375,"score_spread":0.18214459228221502,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3001287641","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9878036,0.00040185108,0.0002421648,0.0001445198,0.000008380959,0.00001914484,0.005571002,0.000053571097,0.005755875],"genre_scores_gemma":[0.9957113,0.00021736325,0.0004691819,0.00002328064,0.0000015718472,0.000007257661,0.0013675761,0.00001059316,0.0021919345],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993455,0.000002992124,0.000003872311,0.000015198681,0.000018920655,0.000024444807],"domain_scores_gemma":[0.9997975,0.000014064423,0.000019540526,0.0000071958425,0.00011460459,0.00004697607],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012548844,0.00021809895,0.00017929362,0.0012912602,0.0019176342,0.00088801014,0.00066007907,0.00032850253,0.0028335277],"category_scores_gemma":[0.00039081599,0.0002132278,0.00020332266,0.0019034956,0.0005257454,0.00024927958,0.00033805097,0.00029097975,0.00026481616],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00051148765,0.0001124744,0.8732559,0.00032577344,0.00023688296,0.0011755441,0.0033285774,0.03402454,0.013595044,0.0024714372,0.007640699,0.063321546],"study_design_scores_gemma":[0.000025712534,0.000010917409,0.9799992,0.000055169858,0.00004338926,0.00008538399,0.0014167805,0.00916497,0.000785868,0.00013417655,0.008246357,0.00003214898],"about_ca_topic_score_codex":0.99560165,"about_ca_topic_score_gemma":0.9978886,"teacher_disagreement_score":0.014928225,"about_ca_system_score_codex":0.014928225,"about_ca_system_score_gemma":0.012990236,"threshold_uncertainty_score":0.10831231},"labels":[],"label_agreement":null},{"id":"W3001772188","doi":"","title":"Bioproductivity in the Southern Ocean since the last Interglacial - new high-resolution biogenic opal flux records from the Scotia Sea","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Interglacial; Oceanography; Geology; Nova scotia; Climatology; Glacial period; Paleontology","score_opus":0.02205721421100362,"score_gpt":0.23320538304133154,"score_spread":0.21114816883032791,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3001772188","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9949988,0.0006586089,0.00009115543,0.00006020428,0.000017170889,0.0000028878273,0.0029764,0.000012160084,0.0011826002],"genre_scores_gemma":[0.99715626,0.00021181989,0.0000954869,0.000017874936,0.00000681092,0.0000033076508,0.0018831963,0.00000513206,0.00062015763],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998497,0.000012331084,0.000017903845,0.00005197262,0.000032723936,0.000035381392],"domain_scores_gemma":[0.9992447,0.00006213853,0.00026079844,0.000061698025,0.00030323165,0.000067517474],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037049007,0.0002770968,0.00021996762,0.0014157029,0.00044694653,0.0009416411,0.0002009735,0.00019933438,0.00096486975],"category_scores_gemma":[0.0008919771,0.00016750014,0.00028236932,0.0018786802,0.00035465995,0.00036859544,0.0005399007,0.00018049192,0.00021245968],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008643381,0.000006963201,0.9874641,0.000074181335,0.00010732965,0.00012941576,0.0005060469,0.00041044707,0.0046388307,0.00010372255,0.00033054058,0.006142062],"study_design_scores_gemma":[8.282013e-7,0.000002059376,0.99927324,0.0000063771886,0.000007994538,0.00001665077,0.000050569797,0.000089484514,0.000078169716,0.000005927075,0.00046733618,0.0000013365872],"about_ca_topic_score_codex":0.44393966,"about_ca_topic_score_gemma":0.62200457,"teacher_disagreement_score":0.44393966,"about_ca_system_score_codex":0.0014106755,"about_ca_system_score_gemma":0.0010613494,"threshold_uncertainty_score":0.8827113},"labels":[],"label_agreement":null},{"id":"W3001828314","doi":"","title":"Controls on sediment production from unpaved forest roads in the Honna watershed, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Watershed; Sediment; Hydrology (agriculture); Environmental science; Sediment control; Forestry; Geography; Water resource management; Geology; Geomorphology","score_opus":0.012965868950783851,"score_gpt":0.17339931286774576,"score_spread":0.1604334439169619,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3001828314","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9960388,0.000119851196,0.000063398096,0.00017118859,0.000004951763,0.00001809893,0.0010348863,0.0000137601055,0.0025350477],"genre_scores_gemma":[0.9968521,0.00014912405,0.000127169,0.000030024063,0.0000020724308,0.000007650934,0.00040536083,0.000006484626,0.0024200263],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993187,0.00006218713,0.00003472638,0.00008511678,0.00014981402,0.00034931538],"domain_scores_gemma":[0.9983735,0.0001391338,0.00020642177,0.000054906002,0.00076373183,0.00046238556],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003167623,0.00024492282,0.00031656757,0.0013679542,0.0025133481,0.001967647,0.0010532261,0.00034499806,0.002005766],"category_scores_gemma":[0.0014474075,0.00028478578,0.00033890107,0.0021882327,0.0013035975,0.00039337866,0.0009716215,0.00040936956,0.00020497211],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027338273,0.00012155546,0.97568125,0.0000504475,0.000128365,0.0004932205,0.0022802686,0.0029412387,0.0022086245,0.001242804,0.00246978,0.012109076],"study_design_scores_gemma":[0.000010319238,0.000014700972,0.99439865,0.000015864132,0.00002001213,0.000031565338,0.002254219,0.0013238871,0.00016151597,0.0000852065,0.0016706575,0.0000134861],"about_ca_topic_score_codex":0.99680746,"about_ca_topic_score_gemma":0.9989525,"teacher_disagreement_score":0.034211766,"about_ca_system_score_codex":0.034211766,"about_ca_system_score_gemma":0.028348854,"threshold_uncertainty_score":0.24822491},"labels":[],"label_agreement":null},{"id":"W3003157883","doi":"","title":"Glaciovolcanism in the Canadian Cascade volcanic arc: a powerful proxy for ancient ice","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Volcano; Proxy (statistics); Physical geography; Arc (geometry); Earth science; Geography; Paleontology; Computer science; Engineering","score_opus":0.02305115653318753,"score_gpt":0.2634659479482551,"score_spread":0.24041479141506758,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3003157883","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98909646,0.00063286495,0.00022472891,0.0004049824,0.000020340462,0.000010815014,0.0030016322,0.000020365596,0.006587724],"genre_scores_gemma":[0.9979752,0.00020639176,0.00018476542,0.000028392931,0.000005101736,0.0000028997488,0.0008068221,0.000007636223,0.00078278186],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997657,0.000013385199,0.000008792387,0.000047378322,0.00007442746,0.00009034023],"domain_scores_gemma":[0.99925286,0.00005370567,0.000109211345,0.000031338164,0.00041738377,0.00013548414],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033293868,0.00028370344,0.00021603654,0.0020813996,0.0026006077,0.0013258373,0.0006568685,0.00032541444,0.0022313115],"category_scores_gemma":[0.0013524346,0.00015612163,0.00021502568,0.0037784418,0.0009111614,0.00049730024,0.0008061819,0.00055380596,0.00012575315],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009357306,0.000024671668,0.9746508,0.000047790752,0.00011792249,0.00009568242,0.0016265748,0.0012618613,0.0019659826,0.0013049414,0.0030890657,0.015721021],"study_design_scores_gemma":[0.000002283629,0.0000018117028,0.99667966,0.000012578744,0.0000144696805,0.000016387823,0.0007020087,0.00046459254,0.00012325389,0.00006641476,0.0019093234,0.000007281366],"about_ca_topic_score_codex":0.993518,"about_ca_topic_score_gemma":0.99850273,"teacher_disagreement_score":0.014123256,"about_ca_system_score_codex":0.014123256,"about_ca_system_score_gemma":0.017103752,"threshold_uncertainty_score":0.10247183},"labels":[],"label_agreement":null},{"id":"W3003478533","doi":"","title":"IASI observations of pyrogenic trace gases during the 2017 Canadian boreal wildfire season","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Boreal; Trace gas; Environmental science; TRACE (psycholinguistics); Meteorology; Geography; Archaeology","score_opus":0.008266696502672944,"score_gpt":0.1856151049475352,"score_spread":0.17734840844486224,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3003478533","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9787387,0.0004600431,0.0008290883,0.00031332122,0.00007407957,0.000033002463,0.006806668,0.00021986362,0.0125251645],"genre_scores_gemma":[0.9926686,0.00031145226,0.0007255028,0.00009615667,0.000024412493,0.00001760129,0.003455771,0.000031997297,0.0026684334],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997267,0.000004727458,0.0000057738657,0.000045586894,0.00013157596,0.000085624895],"domain_scores_gemma":[0.9995914,0.000015770916,0.000035112047,0.000012857786,0.0002716108,0.00007331118],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002770099,0.00047418484,0.00031667593,0.0011586414,0.0018555729,0.0009486923,0.00070035196,0.00046790257,0.0010556822],"category_scores_gemma":[0.00041462173,0.00019555235,0.0002200377,0.0012516386,0.0004717977,0.00043540724,0.0005974996,0.00068701064,0.00019494914],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014126188,0.0003335595,0.8149282,0.00020736674,0.0002546224,0.0008224189,0.0029550395,0.0067652008,0.10258891,0.0016509392,0.024170846,0.04391041],"study_design_scores_gemma":[0.000018190003,0.000026471651,0.9825869,0.000028631961,0.000035955567,0.000057242214,0.00080868293,0.0029229147,0.0035324746,0.00007762263,0.0098787295,0.000026174976],"about_ca_topic_score_codex":0.93970525,"about_ca_topic_score_gemma":0.9773351,"teacher_disagreement_score":0.060294747,"about_ca_system_score_codex":0.0062431404,"about_ca_system_score_gemma":0.007987047,"threshold_uncertainty_score":0.121299624},"labels":[],"label_agreement":null},{"id":"W3003628193","doi":"","title":"Extent and bioavailability of trace metal contamination due to acid rock drainage in Pennask Creek, British Columbia, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Mine drainage and remediation techniques","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Trace metal; Acid mine drainage; Contamination; Drainage; Geology; TRACE (psycholinguistics); Environmental science; Hydrology (agriculture); Archaeology; Mining engineering; Environmental chemistry; Metal; Geography; Chemistry; Geotechnical engineering","score_opus":0.003621005026547264,"score_gpt":0.19177243642900713,"score_spread":0.18815143140245985,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3003628193","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99697,0.00018338795,0.00006693307,0.00007139966,0.0000029788355,0.000017057378,0.00056104374,0.0000074312925,0.0021197866],"genre_scores_gemma":[0.9957599,0.0002274739,0.00017618621,0.000037882248,0.0000012880791,0.000007904813,0.00030319544,0.000004127951,0.0034820805],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99950254,0.00003626785,0.000026984595,0.000081369544,0.00023386395,0.00011899169],"domain_scores_gemma":[0.9988702,0.00007575414,0.00011365581,0.0000170132,0.0007851036,0.0001383491],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002287589,0.0002075278,0.00029849156,0.0013560376,0.003222559,0.0013665968,0.0006975756,0.00036433383,0.0014698447],"category_scores_gemma":[0.00067693833,0.00028278338,0.00015730152,0.0016803585,0.0008511839,0.00023137029,0.0005518645,0.00046396817,0.00024144562],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00063631777,0.00017988755,0.95302975,0.0001324869,0.00009544084,0.0006715989,0.0044280174,0.0006116529,0.016557673,0.00023155956,0.0018383472,0.021587279],"study_design_scores_gemma":[0.0000065007644,0.000035772417,0.99444735,0.000017686876,0.000018541432,0.000074616306,0.0026953763,0.00026641303,0.0008828338,0.000022965482,0.0015223619,0.00000955998],"about_ca_topic_score_codex":0.99330306,"about_ca_topic_score_gemma":0.99809295,"teacher_disagreement_score":0.014981386,"about_ca_system_score_codex":0.014981386,"about_ca_system_score_gemma":0.012880282,"threshold_uncertainty_score":0.10869807},"labels":[],"label_agreement":null},{"id":"W3003808773","doi":"","title":"Examining the Exposure of Canadian Urban Population to Future Flood Risk","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Flood Risk Assessment and Management","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Flood myth; Population; Geography; Environmental planning; Environmental health; Medicine","score_opus":0.00989262033931991,"score_gpt":0.2057334497003498,"score_spread":0.19584082936102987,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3003808773","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9896799,0.0002983505,0.0003005526,0.0010203085,0.000017579201,0.000027470778,0.0014272789,0.000007957393,0.007220623],"genre_scores_gemma":[0.9963522,0.00044844887,0.00022997176,0.00010738986,0.000008912416,0.000011817848,0.0005792679,0.0000033627969,0.0022586032],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994498,0.000059675025,0.000015755108,0.00004971856,0.00018566541,0.00023947259],"domain_scores_gemma":[0.99871457,0.000179367,0.00014173154,0.000043632303,0.00071390794,0.00020687804],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006479983,0.00028159155,0.00014521186,0.0011955805,0.0021423826,0.0011712188,0.00093734235,0.00045071775,0.0029112427],"category_scores_gemma":[0.0031574636,0.00015988252,0.00048228577,0.0023242293,0.00058154325,0.0004005511,0.00071227254,0.0006063351,0.00017188281],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010513789,0.000087202534,0.96596164,0.000041727424,0.00010438469,0.00016582588,0.0025364938,0.002331762,0.00031952956,0.0010273651,0.0037824549,0.023536514],"study_design_scores_gemma":[0.000004965617,0.000039094535,0.98505497,0.000025083717,0.00006917981,0.000051267547,0.006984532,0.0023659077,0.0001747668,0.00026965095,0.0049392325,0.000021343852],"about_ca_topic_score_codex":0.99598277,"about_ca_topic_score_gemma":0.99800175,"teacher_disagreement_score":0.02235676,"about_ca_system_score_codex":0.02235676,"about_ca_system_score_gemma":0.022722946,"threshold_uncertainty_score":0.1622104},"labels":[],"label_agreement":null},{"id":"W3003820166","doi":"","title":"Mid and late Holocene dust deposition in eastern Canada - a preliminary multi-proxy record from the Baie bog (St. Lawrence Estuary, Quebec)","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bog; Holocene; Estuary; Geology; Oceanography; Deposition (geology); Physical geography; Proxy (statistics); Peat; Hydrology (agriculture); Geography; Archaeology; Geomorphology; Sediment","score_opus":0.016814817901205818,"score_gpt":0.21942104158140197,"score_spread":0.20260622368019615,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3003820166","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98466915,0.0010579593,0.00021034415,0.00027038748,0.000012023095,0.000021163747,0.011112938,0.00002669825,0.0026194574],"genre_scores_gemma":[0.99054843,0.0004276806,0.0003898591,0.00009574225,0.0000045450984,0.000015056848,0.004495788,0.0000110655865,0.0040118583],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981946,0.000010353785,0.000012960252,0.00004256402,0.000043051994,0.00007161759],"domain_scores_gemma":[0.9991942,0.00003144547,0.000077601355,0.000025684732,0.0005232956,0.0001478552],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029049412,0.00028894455,0.00032009406,0.0011561607,0.0018220093,0.0011127748,0.0008211934,0.00044563814,0.0021776564],"category_scores_gemma":[0.0005063697,0.00022311961,0.00021990306,0.002246656,0.00044005323,0.0003645541,0.0005853187,0.00040840486,0.00038741092],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014806473,0.000044199016,0.9748907,0.00008379041,0.00010903553,0.00019020052,0.0016227951,0.0005018601,0.0028276015,0.0002480484,0.0036620332,0.015671512],"study_design_scores_gemma":[0.0000033767574,0.0000038860417,0.9970975,0.00002090508,0.000010297767,0.000020912357,0.0005518104,0.0002043263,0.000084948406,0.000008763639,0.0019878591,0.0000054056645],"about_ca_topic_score_codex":0.9974969,"about_ca_topic_score_gemma":0.99932253,"teacher_disagreement_score":0.01696234,"about_ca_system_score_codex":0.01696234,"about_ca_system_score_gemma":0.012912454,"threshold_uncertainty_score":0.123070955},"labels":[],"label_agreement":null},{"id":"W3004204070","doi":"","title":"Satellite remote sensing observations of snow accumulation in the Yukon Territory, Canada, during the International Polar Year","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow; Satellite; Remote sensing; Physical geography; Geography; Polar; Climatology; Meteorology; Environmental science; Geology","score_opus":0.034359536819143395,"score_gpt":0.23188401519930302,"score_spread":0.19752447838015963,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3004204070","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9946227,0.00018812045,0.000054485638,0.00005260953,0.0000060661596,0.000006447849,0.0036700976,0.00001065408,0.0013887354],"genre_scores_gemma":[0.9946602,0.00023961946,0.00015176549,0.000021768832,0.0000029991077,0.000006350328,0.0034390648,0.0000044165795,0.0014738536],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998977,0.0000048849834,0.000008018072,0.000017357892,0.000034822537,0.000037249305],"domain_scores_gemma":[0.99963975,0.000021516333,0.000057026333,0.000011140236,0.00019728036,0.00007321461],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001310093,0.00020766044,0.00019463192,0.0007670635,0.00096719095,0.00069322315,0.0003550434,0.00023383531,0.000794462],"category_scores_gemma":[0.00045558618,0.00012209621,0.00015660813,0.0020236792,0.00031284,0.00024609955,0.0004166581,0.00021932763,0.00013067781],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003447451,0.00006597596,0.9730849,0.000081400474,0.0001673825,0.00023193216,0.0015667132,0.0018814091,0.0042746146,0.00027938018,0.003783202,0.014238256],"study_design_scores_gemma":[0.00000555899,0.000007310737,0.99735594,0.000008849857,0.0000139192225,0.000019482215,0.0006321675,0.00041661388,0.00016912042,0.000010641687,0.0013557222,0.0000046988507],"about_ca_topic_score_codex":0.9845576,"about_ca_topic_score_gemma":0.9945286,"teacher_disagreement_score":0.015442371,"about_ca_system_score_codex":0.005326248,"about_ca_system_score_gemma":0.008045585,"threshold_uncertainty_score":0.03864479},"labels":[],"label_agreement":null},{"id":"W3004248983","doi":"","title":"The Empirical Canadian High Arctic Ionospheric Model (E-CHAIM): NmF2 and hmF2 specification","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Ionosphere and magnetosphere dynamics","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ionosphere; Physics","score_opus":0.019466140372459032,"score_gpt":0.227431873571402,"score_spread":0.20796573319894296,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3004248983","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.82440007,0.0017931327,0.02470225,0.0056926277,0.00045488516,0.00017362932,0.10401628,0.0017407268,0.03702634],"genre_scores_gemma":[0.9409232,0.00037860463,0.004368137,0.000392971,0.000064930035,0.000060256752,0.046414394,0.00042576573,0.0069717714],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99887866,0.00026312575,0.000053264368,0.0002855925,0.00020699868,0.000312432],"domain_scores_gemma":[0.99595094,0.0012680093,0.00031538316,0.0003056691,0.001800745,0.00035936484],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0028672172,0.00105722,0.00089921505,0.0010122986,0.0019313084,0.0027052965,0.0033821901,0.0013366484,0.008400631],"category_scores_gemma":[0.011259033,0.00058502535,0.0008915433,0.002690776,0.0008624557,0.001387508,0.0007793052,0.0020594306,0.0012046357],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026063947,0.000114658455,0.10290663,0.00017209629,0.00037044194,0.00023440433,0.0001741905,0.79607844,0.0003648943,0.026082411,0.05787234,0.015368887],"study_design_scores_gemma":[0.00026691487,0.000050776634,0.08487464,0.00011942626,0.0002074141,0.00008857951,0.0005737999,0.8719309,0.00088472205,0.009049361,0.03176391,0.00018956725],"about_ca_topic_score_codex":0.97239876,"about_ca_topic_score_gemma":0.9532609,"teacher_disagreement_score":0.027601242,"about_ca_system_score_codex":0.011425166,"about_ca_system_score_gemma":0.023424897,"threshold_uncertainty_score":0.082895756},"labels":[],"label_agreement":null},{"id":"W3004529678","doi":"","title":"Fifteen Years of the Canadian Arctic ACE/OSIRIS Validation Project at PEARL","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Pearl; Osiris; Geography; Arctic; Environmental science; Archaeology; Oceanography; Ecology; Geology; Biology","score_opus":0.009017241964954896,"score_gpt":0.20598713867521917,"score_spread":0.19696989671026427,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3004529678","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.82552415,0.00534358,0.031612217,0.0035717709,0.0010019075,0.00065689185,0.0953502,0.0014349219,0.035504416],"genre_scores_gemma":[0.8170191,0.0011268965,0.018478947,0.0019835827,0.00016656221,0.00035530186,0.1425095,0.00078902865,0.017571066],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9936133,0.00081393245,0.0002184187,0.0010597882,0.0035213612,0.0007731978],"domain_scores_gemma":[0.98469377,0.0012168327,0.00078960025,0.0016418376,0.010751469,0.00090647326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.015198602,0.0012757672,0.0011697253,0.0014471249,0.0043319874,0.002467233,0.0021562069,0.0014616018,0.0012973128],"category_scores_gemma":[0.010244284,0.0005619649,0.0008736445,0.0025418,0.0015334242,0.00094180764,0.0027286976,0.0012865842,0.00097629736],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.002292504,0.0017118381,0.6096985,0.0007000313,0.002833686,0.000879409,0.0031938555,0.060397167,0.0127242,0.0048393914,0.13924594,0.16148345],"study_design_scores_gemma":[0.00017790779,0.00027614427,0.8002119,0.00044545988,0.0007238904,0.00018846063,0.0016889982,0.028905649,0.013010824,0.0010931148,0.15303624,0.00024136089],"about_ca_topic_score_codex":0.8824611,"about_ca_topic_score_gemma":0.9311296,"teacher_disagreement_score":0.11753893,"about_ca_system_score_codex":0.009159867,"about_ca_system_score_gemma":0.022207985,"threshold_uncertainty_score":0.23646224},"labels":[],"label_agreement":null},{"id":"W3004568154","doi":"","title":"Paleomagnetic dating of Holocene western and eastern Canadian Arctic sediments: combined use of radiocarbon, paleomagnetic secular variation and global spherical harmonic model of the geomagnetic field","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geomagnetism and Paleomagnetism Studies","field":"Biochemistry, Genetics and Molecular Biology","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Paleomagnetism; Secular variation; Radiocarbon dating; Geology; Geomagnetic secular variation; Earth's magnetic field; Archaeomagnetic dating; Holocene; Arctic; Absolute dating; Paleontology; Physical geography; Oceanography; Geophysics; Geography; Magnetic field","score_opus":0.009420225988958236,"score_gpt":0.20687959352447585,"score_spread":0.19745936753551763,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3004568154","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98754984,0.0029140275,0.0035463239,0.0001216035,0.000031074243,0.00001999294,0.0016306696,0.000050967803,0.0041354517],"genre_scores_gemma":[0.99045473,0.0012979911,0.0042090504,0.0000342498,0.000008611273,0.000010101874,0.00091712386,0.000019969291,0.003048097],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998522,0.000013405662,0.000007946796,0.000039715345,0.00005343988,0.000033234493],"domain_scores_gemma":[0.999577,0.000020686257,0.000039259285,0.000016390884,0.00031166387,0.000035067034],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004929338,0.00034370067,0.00025882118,0.0020391974,0.002382312,0.0010445138,0.0004810184,0.0001767898,0.0005500931],"category_scores_gemma":[0.0007962764,0.00021508432,0.00016906494,0.0027897605,0.0004373611,0.0002886656,0.00039652188,0.00022195643,0.00012414342],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046686718,0.000059000067,0.7462748,0.00023641138,0.00043591714,0.00020959551,0.002106338,0.012723018,0.085011296,0.002456445,0.0017727818,0.14824742],"study_design_scores_gemma":[0.000009533632,0.000015597661,0.98262745,0.000019332641,0.00008086634,0.00009660774,0.00036620267,0.002684237,0.0057434114,0.00019083326,0.008147346,0.000018581899],"about_ca_topic_score_codex":0.9731549,"about_ca_topic_score_gemma":0.98916364,"teacher_disagreement_score":0.026845098,"about_ca_system_score_codex":0.007469738,"about_ca_system_score_gemma":0.0095299585,"threshold_uncertainty_score":0.054197013},"labels":[],"label_agreement":null},{"id":"W3005181650","doi":"","title":"Suspended sediment fluxes in the proglacial zone of a retreating glacier, Cariboo Mountains, British Columbia","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Geology; Sediment; Physical geography; Hydrology (agriculture); Geomorphology; Moraine; Meltwater; Geography; Geotechnical engineering","score_opus":0.008956677769159824,"score_gpt":0.22720143793747186,"score_spread":0.21824476016831204,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005181650","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993755,0.00003320082,0.000010421419,0.000025439887,0.0000012522547,0.0000023413033,0.00015620244,0.000002885166,0.0003926779],"genre_scores_gemma":[0.99891007,0.000052679075,0.000042510223,0.000016951008,9.2562635e-7,0.0000032233122,0.00019210434,0.0000022242432,0.0007793434],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998969,0.000011306453,0.000008124681,0.0000251072,0.000021589356,0.000037049],"domain_scores_gemma":[0.9996239,0.00004447562,0.000033371052,0.000010794268,0.00019917502,0.00008826613],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014771968,0.00024197593,0.00027676835,0.00092387496,0.002578453,0.0016350097,0.00054412044,0.00040673782,0.001389006],"category_scores_gemma":[0.0006606974,0.00026126628,0.00014814554,0.0016104608,0.0006268743,0.00038854717,0.00066267187,0.00041045045,0.00017091988],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035102124,0.00009836052,0.97917855,0.000044877404,0.00008523231,0.0006420559,0.003974409,0.0013158919,0.0044318717,0.00017613028,0.0007962179,0.008905354],"study_design_scores_gemma":[0.0000104751525,0.000009095713,0.9964384,0.000009081585,0.000017330698,0.000032588687,0.002168572,0.00074700086,0.0001374087,0.00001946045,0.00040462764,0.0000060311713],"about_ca_topic_score_codex":0.9823465,"about_ca_topic_score_gemma":0.9916054,"teacher_disagreement_score":0.017653525,"about_ca_system_score_codex":0.0074525937,"about_ca_system_score_gemma":0.0054821256,"threshold_uncertainty_score":0.05407262},"labels":[],"label_agreement":null},{"id":"W300526502","doi":"","title":"Holocene relative sea-level change on Alexander Island, Antarctic Peninsula from OSL dating of elevated lake deltas","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Polar Research and Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Peninsula; Oceanography; Geography; Archaeology; Physical geography; Geology","score_opus":0.055690648039879886,"score_gpt":0.28294449514869396,"score_spread":0.22725384710881408,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W300526502","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9958832,0.00023837124,0.00006341535,0.000027998434,0.000007914119,0.0000021034944,0.0011584368,0.000008237564,0.002610285],"genre_scores_gemma":[0.99757236,0.00021616385,0.00022729952,0.00001472785,0.0000064123687,0.0000034700772,0.0012608342,0.000006575398,0.00069216045],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998803,0.000018335015,0.000014315321,0.000028807972,0.00003229723,0.00002588235],"domain_scores_gemma":[0.99960583,0.000046556834,0.00009311344,0.0000389559,0.00016201992,0.00005360856],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004230189,0.00015449943,0.00012964629,0.0013526968,0.0004653601,0.00067617046,0.00022688581,0.00019653351,0.0011921007],"category_scores_gemma":[0.0005403383,0.0001364885,0.000118595795,0.0015224556,0.00029660482,0.00035145236,0.00052298495,0.0001799626,0.0005021038],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016757548,0.000011443844,0.97708,0.000038172133,0.000059260736,0.00009079954,0.00078129524,0.0004693267,0.0020939533,0.0001621543,0.0006987381,0.018347217],"study_design_scores_gemma":[0.0000019491033,0.0000072667995,0.99810094,0.000007986104,0.000014258999,0.00002457881,0.00020171363,0.00012030303,0.00017862557,0.000011974747,0.001328673,0.0000017888568],"about_ca_topic_score_codex":0.079234235,"about_ca_topic_score_gemma":0.25018948,"teacher_disagreement_score":0.079234235,"about_ca_system_score_codex":0.00096196186,"about_ca_system_score_gemma":0.0004627491,"threshold_uncertainty_score":0.1575461},"labels":[],"label_agreement":null},{"id":"W3005506360","doi":"","title":"Assessment of dynamic probabilistic methods for mapping snow cover in Québec Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow cover; Probabilistic logic; Cover (algebra); Geography; Remote sensing; Snow; Computer science; Environmental science; Meteorology; Artificial intelligence; Engineering","score_opus":0.030513264433878643,"score_gpt":0.30330570368286297,"score_spread":0.27279243924898433,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005506360","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.94291896,0.001705934,0.04176601,0.0011944633,0.00004254204,0.00016578769,0.0049279607,0.0005083157,0.006770136],"genre_scores_gemma":[0.9798681,0.00035948938,0.015339463,0.00007750994,0.000020188923,0.00006959299,0.0024268713,0.000044638506,0.0017940927],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99903274,0.00038395313,0.000048327474,0.00022119611,0.0001997125,0.000114018476],"domain_scores_gemma":[0.9938903,0.0037983046,0.00031531378,0.0002916323,0.0015388717,0.0001656143],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0046970523,0.0008003909,0.00044832242,0.0018395424,0.0013426904,0.001685785,0.0018203148,0.000750007,0.0012035227],"category_scores_gemma":[0.009384811,0.0004070501,0.00060878834,0.0018279421,0.00056362327,0.0008831515,0.0006905714,0.0004621939,0.00014456254],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020056605,0.00006688817,0.06204485,0.00006017332,0.00022316158,0.000038648086,0.00012152494,0.89770085,0.000725035,0.0018505077,0.0012950186,0.035672784],"study_design_scores_gemma":[0.000022785525,0.000022855495,0.026587632,0.000020320036,0.000033600656,0.000011373553,0.000093624716,0.97163343,0.00026098944,0.00045836734,0.0008308367,0.00002411366],"about_ca_topic_score_codex":0.9669242,"about_ca_topic_score_gemma":0.9646739,"teacher_disagreement_score":0.03307581,"about_ca_system_score_codex":0.017818587,"about_ca_system_score_gemma":0.009423395,"threshold_uncertainty_score":0.12928349},"labels":[],"label_agreement":null},{"id":"W3005523188","doi":"","title":"Can the South China Sea tell us anything about Canada Basin","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geophysical Studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"China; Geography; Oceanography; Geology; Archaeology","score_opus":0.007590917207156375,"score_gpt":0.1583114247567157,"score_spread":0.15072050754955932,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005523188","genre_codex":"other","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.26499456,0.036319207,0.0008553291,0.33554238,0.0033839827,0.000044762088,0.011105911,0.0001316682,0.34762222],"genre_scores_gemma":[0.90388453,0.01950414,0.0005854761,0.024484782,0.00044250226,0.000021481976,0.0015913494,0.00008144511,0.049404252],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.9996339,0.000050598086,0.000012590307,0.000039770566,0.00009425251,0.00016887339],"domain_scores_gemma":[0.99766695,0.0002602407,0.00015917253,0.000110779736,0.001319401,0.00048350942],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00068390433,0.00038748057,0.00036909632,0.0012449916,0.0038091089,0.0039975434,0.0006216378,0.0011792802,0.012106629],"category_scores_gemma":[0.0042516245,0.00017292636,0.0003723417,0.0025646568,0.0035689115,0.004069952,0.0012440272,0.0019005057,0.0009975515],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006590064,0.00004958345,0.2739263,0.0010816568,0.0006122844,0.001030683,0.009824258,0.002933667,0.0013653276,0.12904663,0.43116423,0.14830643],"study_design_scores_gemma":[0.00004588525,0.00003375229,0.17659281,0.0014961271,0.00049835525,0.00016561808,0.051479153,0.0012190206,0.0009843359,0.063469775,0.70383334,0.00018186464],"about_ca_topic_score_codex":0.9749426,"about_ca_topic_score_gemma":0.987862,"teacher_disagreement_score":0.025057375,"about_ca_system_score_codex":0.020149542,"about_ca_system_score_gemma":0.04786956,"threshold_uncertainty_score":0.14619583},"labels":[],"label_agreement":null},{"id":"W3005672929","doi":"","title":"High-Frequency Radar detection of a possible meteo-tsunami in British Columbia, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Seismic Waves and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Radar; Remote sensing; Meteorology; Geography; Environmental science; Telecommunications; Computer science","score_opus":0.00444263634924568,"score_gpt":0.16461628331023911,"score_spread":0.16017364696099343,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005672929","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.988058,0.00032966997,0.00016597743,0.00042735887,0.0000178374,0.000026574198,0.0021174753,0.000022565795,0.00883466],"genre_scores_gemma":[0.99453187,0.00021138595,0.00018751991,0.000082736675,0.0000041707467,0.0000060043,0.0006782605,0.000005935044,0.004292022],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976593,0.000013566277,0.000011122745,0.00002797271,0.000069228176,0.0001122323],"domain_scores_gemma":[0.9990645,0.000063800806,0.00005749999,0.000017395905,0.0006167981,0.00018000418],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017085062,0.00025232165,0.00023406798,0.0014424876,0.0027577155,0.0010726424,0.0007731646,0.00054819626,0.0025283392],"category_scores_gemma":[0.0009911205,0.00022344514,0.00012057397,0.0022981109,0.0005156327,0.00026915612,0.0005856669,0.0005581931,0.00035046396],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040448256,0.0001524147,0.9299756,0.0001365662,0.000120813485,0.002102812,0.004074115,0.0022978238,0.009615508,0.00071007176,0.00973936,0.04067037],"study_design_scores_gemma":[0.000016840846,0.000013615132,0.98942274,0.000042234806,0.00002886276,0.00012427727,0.0045965207,0.001321888,0.00045388448,0.000057346013,0.0039027396,0.000018930608],"about_ca_topic_score_codex":0.9972416,"about_ca_topic_score_gemma":0.9991416,"teacher_disagreement_score":0.013774005,"about_ca_system_score_codex":0.013774005,"about_ca_system_score_gemma":0.02031497,"threshold_uncertainty_score":0.099937916},"labels":[],"label_agreement":null},{"id":"W3005918054","doi":"","title":"Receptor modelling of boreal wildfire associated PM2.5 in Halifax, Nova Scotia, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nova scotia; Boreal; Nova (rocket); Geography; Oceanography; Environmental science; Meteorology; Climatology; Geology; Archaeology; Engineering; Aeronautics","score_opus":0.01458681968359096,"score_gpt":0.17817597504654342,"score_spread":0.16358915536295246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3005918054","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9901625,0.00027631913,0.00069169677,0.00031293268,0.00003688277,0.00002342467,0.003919839,0.00013368294,0.004442785],"genre_scores_gemma":[0.99626285,0.000092762486,0.00037574078,0.00003618086,0.000004339449,0.00001048883,0.0011201347,0.00002203758,0.0020754302],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998248,0.000019424377,0.0000071474856,0.0000341416,0.000027834143,0.0000865489],"domain_scores_gemma":[0.9995858,0.000089705725,0.000027350276,0.000022930622,0.00019557614,0.000078561694],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002623276,0.0006671708,0.0005266585,0.00041633827,0.0010505039,0.001152145,0.001668304,0.0008769396,0.0026164912],"category_scores_gemma":[0.00066910335,0.00042794118,0.00059092185,0.00065987685,0.0005879772,0.0003332273,0.00045006434,0.00054604665,0.00036112103],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00055050955,0.00018759066,0.10021225,0.00011295285,0.0001850487,0.00058178726,0.0002503539,0.88049537,0.003884225,0.0013131226,0.006693847,0.0055330386],"study_design_scores_gemma":[0.00014264364,0.00003628033,0.0623781,0.000027742275,0.000055091972,0.000049647766,0.00050319015,0.9343709,0.00065252953,0.00015644677,0.0015677355,0.00005971105],"about_ca_topic_score_codex":0.98820376,"about_ca_topic_score_gemma":0.9821237,"teacher_disagreement_score":0.011796236,"about_ca_system_score_codex":0.010534393,"about_ca_system_score_gemma":0.009632447,"threshold_uncertainty_score":0.076432705},"labels":[],"label_agreement":null},{"id":"W3006031673","doi":"","title":"Energy and ozone fluxes over sea ice in Hudson Bay, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Sea ice; Environmental science; Climatology; Meteorology; Oceanography; Ozone; Atmospheric sciences; Geology; Geography","score_opus":0.005534095924890722,"score_gpt":0.17564537075346734,"score_spread":0.17011127482857663,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3006031673","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9950682,0.000224441,0.000041808173,0.00014311797,0.00001564355,0.0000069473267,0.0030793406,0.000016510705,0.0014040057],"genre_scores_gemma":[0.9950088,0.00023609816,0.0001329701,0.000053424403,0.0000050932513,0.00000597817,0.0017483508,0.000008311321,0.002800929],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998369,0.000009412822,0.000010718639,0.000030009664,0.00004196545,0.00007096628],"domain_scores_gemma":[0.9996032,0.000032476193,0.000033101984,0.00000999919,0.00021805827,0.00010313889],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019926975,0.00038611642,0.00040177468,0.0010854654,0.001812306,0.0012958784,0.0006210882,0.00047264306,0.0021583121],"category_scores_gemma":[0.00048407578,0.00028118858,0.0004978627,0.0019116238,0.00047368472,0.0004317955,0.00067800697,0.00039744927,0.00022046588],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00051185157,0.0001040854,0.9753575,0.00008194445,0.00027960862,0.0005789626,0.0014578236,0.0043930965,0.0027012737,0.00043294532,0.0044691367,0.009631813],"study_design_scores_gemma":[0.000024213872,0.000009044975,0.9952108,0.000018139832,0.000039626026,0.000025498646,0.0013940928,0.00141616,0.0002705067,0.00003387985,0.0015433002,0.000014810638],"about_ca_topic_score_codex":0.9959111,"about_ca_topic_score_gemma":0.9977399,"teacher_disagreement_score":0.018423628,"about_ca_system_score_codex":0.018423628,"about_ca_system_score_gemma":0.015020666,"threshold_uncertainty_score":0.13367343},"labels":[],"label_agreement":null},{"id":"W3006539842","doi":"","title":"Arguing for a multi-hazard mapping program in Newfoundland and Labrador, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geographic Information Systems Studies","field":"Social Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Hazard","score_opus":0.03165388106787239,"score_gpt":0.3083464807488501,"score_spread":0.27669259968097776,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3006539842","genre_codex":"commentary","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.41378605,0.001824465,0.005822535,0.42481866,0.0007629737,0.0003344205,0.0010260746,0.00025643257,0.15136835],"genre_scores_gemma":[0.9056836,0.0006586634,0.0052092443,0.029915666,0.00010293132,0.00012640403,0.00032646483,0.00010073475,0.057876267],"study_design_codex":"not_applicable","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9915405,0.0016437431,0.00019620483,0.00055581634,0.001266145,0.0047975685],"domain_scores_gemma":[0.979293,0.00427863,0.00091383205,0.00077555666,0.00892293,0.0058160536],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.006198577,0.0002881025,0.000581554,0.0011839111,0.02704402,0.007949129,0.003315259,0.0037341088,0.009352527],"category_scores_gemma":[0.01885436,0.0007325012,0.00068519777,0.0021600206,0.0042925715,0.0032526504,0.004606298,0.0071476265,0.00040603915],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004701615,0.00051645905,0.21798095,0.00025962555,0.00033454003,0.0021748114,0.027769472,0.007116658,0.0016630732,0.18958431,0.4093861,0.14274383],"study_design_scores_gemma":[0.00027252597,0.00020601416,0.36468545,0.0011536587,0.00064318,0.000544529,0.15777302,0.009558244,0.0024343368,0.019342639,0.4429526,0.0004338284],"about_ca_topic_score_codex":0.99665415,"about_ca_topic_score_gemma":0.99891543,"teacher_disagreement_score":0.098883174,"about_ca_system_score_codex":0.098883174,"about_ca_system_score_gemma":0.24206042,"threshold_uncertainty_score":0.717451},"labels":[],"label_agreement":null},{"id":"W3006780170","doi":"","title":"Using the impact model in order to predict the Danube river flow in the last quarter of the XXI century","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and environmental studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Quarter (Canadian coin); Order (exchange); Flow (mathematics); Geography; History; Mathematics; Economics; Archaeology","score_opus":0.015198303884172844,"score_gpt":0.2186823640236121,"score_spread":0.20348406013943926,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3006780170","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9572658,0.00037640007,0.00898583,0.0009147054,0.00013482085,0.000037997008,0.001895368,0.00025470616,0.030134488],"genre_scores_gemma":[0.9913462,0.00028792187,0.0015789696,0.000041855747,0.000025302126,0.000028387509,0.0008369305,0.000051896837,0.005802578],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999032,0.000017934797,0.00000885167,0.000023279534,0.000024336696,0.000022469545],"domain_scores_gemma":[0.99981207,0.000042629963,0.000023723393,0.000016807171,0.00007487081,0.00002994945],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028522627,0.00042937687,0.00039370914,0.0007134132,0.00090395013,0.0012826255,0.00042492835,0.00060613785,0.0031804193],"category_scores_gemma":[0.0013897602,0.0002745968,0.0005414511,0.0010395824,0.00038520573,0.00094544207,0.00071267074,0.00068745273,0.0003534408],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00005455068,0.000033937413,0.08980335,0.0000355602,0.000069813585,0.00023931972,0.00011066437,0.89386076,0.00031936588,0.0046142465,0.0015175493,0.009340852],"study_design_scores_gemma":[0.0000275863,0.00002479302,0.027015524,0.000016542683,0.00004186215,0.000059810776,0.00011782199,0.96665657,0.00039589975,0.0020471385,0.0035797649,0.000016710155],"about_ca_topic_score_codex":0.32396552,"about_ca_topic_score_gemma":0.27199668,"teacher_disagreement_score":0.32396552,"about_ca_system_score_codex":0.003286569,"about_ca_system_score_gemma":0.0024321491,"threshold_uncertainty_score":0.6441597},"labels":[],"label_agreement":null},{"id":"W3006828092","doi":"","title":"Alaska/Yukon Geoid Improvement by a Data-Driven Stokes's Kernel Modification Approach","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geoid; Geodesy; Kernel (algebra); Geology; Mathematics; Remote sensing; Computer science; Geography; Geophysics; Combinatorics","score_opus":0.09950970784626416,"score_gpt":0.24646132311909197,"score_spread":0.1469516152728278,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3006828092","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.20755088,0.00020827856,0.7763869,0.0002827669,0.00033216577,0.00007402077,0.00091084535,0.008501595,0.005752628],"genre_scores_gemma":[0.52534676,0.00008120295,0.46512666,0.0001096281,0.00005180524,0.000041731855,0.0020476745,0.0008384163,0.0063561318],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99970514,0.000041149553,0.000022338982,0.00009451764,0.00009474227,0.000042198368],"domain_scores_gemma":[0.99923694,0.000087655615,0.00003924084,0.00019757001,0.00041451512,0.000024067875],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005226401,0.0005615031,0.00048014204,0.0008707307,0.00046578038,0.0005650858,0.00072606053,0.00043062522,0.0037874072],"category_scores_gemma":[0.0027927773,0.00030939523,0.0005891308,0.0008060026,0.00020273455,0.00086519745,0.00089578336,0.0005414947,0.0016674759],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004169147,0.00033191504,0.016118554,0.000086486674,0.00020602433,0.00012489954,0.00023136052,0.18559992,0.030738827,0.0066107246,0.012477893,0.74705654],"study_design_scores_gemma":[0.000036334208,0.000030123265,0.0050297724,0.0000050529143,0.000050340095,0.00003062263,0.000043847904,0.9786018,0.008120223,0.0010517759,0.006979788,0.000020274592],"about_ca_topic_score_codex":0.043960087,"about_ca_topic_score_gemma":0.055229742,"teacher_disagreement_score":0.9560399,"about_ca_system_score_codex":0.000316836,"about_ca_system_score_gemma":0.0013840919,"threshold_uncertainty_score":0.08740842},"labels":[],"label_agreement":null},{"id":"W3006940290","doi":"","title":"Advantages of long-term multidisciplinary ocean observations for gas hydrate systems - Examples from Ocean Networks Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Term (time); Clathrate hydrate; Multidisciplinary approach; Environmental science; Oceanography; Ocean observations; Meteorology; Climatology; Geology; Hydrate; Geography; Chemistry; Physics; Political science","score_opus":0.027309432502752955,"score_gpt":0.2493641931508275,"score_spread":0.22205476064807456,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3006940290","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.91858035,0.006254932,0.010312231,0.008473469,0.00020476143,0.00014599599,0.0051395786,0.00048331046,0.05040539],"genre_scores_gemma":[0.98461133,0.0012955702,0.00985412,0.00023313447,0.000059185924,0.000024643536,0.0019018421,0.000058112393,0.0019621493],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99909675,0.00014181186,0.00003898722,0.00012817561,0.00041436168,0.00017996057],"domain_scores_gemma":[0.99715626,0.00042659958,0.00017031004,0.0003265392,0.00163426,0.00028599764],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0024003945,0.0004722387,0.00033968824,0.0007863667,0.0020051645,0.0016461374,0.0009035828,0.00080428476,0.0011063167],"category_scores_gemma":[0.0034402187,0.00020719941,0.00046444163,0.0024002222,0.0006097517,0.0015264418,0.0015452618,0.0008832541,0.0001247561],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011160717,0.00040393582,0.6165328,0.0005210592,0.00091360084,0.0015379927,0.0026793287,0.081198044,0.023103194,0.009101619,0.016117381,0.24677496],"study_design_scores_gemma":[0.00025129667,0.00018382714,0.8133318,0.0002731616,0.0005771269,0.000443429,0.007697992,0.085744135,0.013570589,0.0062644924,0.07140829,0.0002538424],"about_ca_topic_score_codex":0.8294892,"about_ca_topic_score_gemma":0.91096705,"teacher_disagreement_score":0.8294892,"about_ca_system_score_codex":0.0054246634,"about_ca_system_score_gemma":0.007913358,"threshold_uncertainty_score":0.34302998},"labels":[],"label_agreement":null},{"id":"W3007052593","doi":"","title":"Drivers of interannual variability of ventilation and biological pump in the Labrador Sea and Baffin Bay from 1963-2013","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and fisheries research","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Oceanography; Environmental science; Ventilation (architecture); Climatology; Geology; Geography; Physical geography; Meteorology","score_opus":0.012756448378333358,"score_gpt":0.22874247180423643,"score_spread":0.21598602342590306,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3007052593","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982772,0.00017161781,0.00005342897,0.00012135869,0.0000070633973,0.0000020149732,0.00083221454,0.000009868485,0.00052524643],"genre_scores_gemma":[0.9988702,0.00006261741,0.000033812077,0.000018446302,0.000005436978,0.000002842741,0.00064895145,0.0000035696514,0.00035406684],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998043,0.00001560582,0.000020387144,0.000056107678,0.000023300865,0.000080238206],"domain_scores_gemma":[0.99947864,0.00005371642,0.00021435504,0.000030470803,0.00010424358,0.00011854801],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039890365,0.00017090244,0.00020426216,0.00093121047,0.0004213242,0.0007104543,0.0004362375,0.0004210781,0.0014718188],"category_scores_gemma":[0.00081722625,0.00027554302,0.0004091667,0.0011134173,0.00048125433,0.0004960066,0.00076657545,0.00041984158,0.00022170518],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006261397,0.0000149370235,0.9958165,0.000011977743,0.00007639136,0.00006396313,0.00047523848,0.00022268681,0.0008244565,0.000081747545,0.0003896487,0.0019599213],"study_design_scores_gemma":[6.805818e-7,0.0000026911425,0.99935144,0.0000029710325,0.000005056105,0.0000115881285,0.00019275787,0.00016001755,0.000027932916,0.0000061438586,0.00023624806,0.000002393506],"about_ca_topic_score_codex":0.46782222,"about_ca_topic_score_gemma":0.6843978,"teacher_disagreement_score":0.46782222,"about_ca_system_score_codex":0.0019860712,"about_ca_system_score_gemma":0.0011536914,"threshold_uncertainty_score":0.9301984},"labels":[],"label_agreement":null},{"id":"W3007492891","doi":"","title":"Potential causes of 15th century Arctic warming using coupled model simulations with data assimilation","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Arctic; Proxy (statistics); Climate model; Data assimilation; Environmental science; Climate system; Climate change; The arctic; Forcing (mathematics); Global warming; General Circulation Model; Geography; Geology; Meteorology; Oceanography","score_opus":0.05329898208148268,"score_gpt":0.28203991133631706,"score_spread":0.22874092925483439,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3007492891","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9961904,0.000078446115,0.002429034,0.00014158501,0.0000175165,0.0000104228075,0.00027933862,0.00006160766,0.0007916742],"genre_scores_gemma":[0.9988617,0.000043050724,0.00080537953,0.00001510577,0.000004813098,0.000012054172,0.00014621056,0.000009587035,0.000102189166],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998368,0.00006559928,0.000014266808,0.000039768478,0.000014110051,0.000029408095],"domain_scores_gemma":[0.9993814,0.0003303298,0.00008243295,0.000054145574,0.000083363775,0.00006825705],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008728281,0.00041526652,0.0004753418,0.00042762025,0.00056907715,0.0008193568,0.0006585672,0.00088995876,0.00068206916],"category_scores_gemma":[0.0027605402,0.00041102368,0.0007909683,0.00052954763,0.00040514892,0.0006617236,0.00045633307,0.00052897126,0.000048189788],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012018031,0.000032252137,0.018015163,0.00002333368,0.00013111802,0.00005994954,0.00006456512,0.9783608,0.0007572448,0.0010452813,0.00015297851,0.0012371995],"study_design_scores_gemma":[0.000036666526,0.000015800893,0.004251618,0.000004734796,0.000040228348,0.000006752975,0.000027696886,0.9945899,0.00029904823,0.0005814171,0.00013334604,0.000012861677],"about_ca_topic_score_codex":0.0794243,"about_ca_topic_score_gemma":0.050678138,"teacher_disagreement_score":0.0794243,"about_ca_system_score_codex":0.0015494284,"about_ca_system_score_gemma":0.0013066708,"threshold_uncertainty_score":0.157924},"labels":[],"label_agreement":null},{"id":"W3008044417","doi":"","title":"A Black Carbon Emissions Inventory from Gas Flaring in Alberta, Canada's Upstream Oil and Gas Sector","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Oil, Gas, and Environmental Issues","field":"Energy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Fossil fuel; Upstream (networking); Environmental science; Greenhouse gas; Geology; Waste management; Oceanography; Engineering","score_opus":0.008833231176106713,"score_gpt":0.1949750601920929,"score_spread":0.1861418290159862,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3008044417","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9672803,0.00091648614,0.0004437153,0.0003822928,0.000011609082,0.000043312237,0.014239694,0.000052038173,0.016630521],"genre_scores_gemma":[0.9614654,0.0014265142,0.0012179157,0.00015515403,0.000007237355,0.000014323092,0.010372908,0.000020949072,0.025319546],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99955994,0.000010566817,0.000015370171,0.000034148285,0.00027736858,0.00010258627],"domain_scores_gemma":[0.9994287,0.00003118993,0.000048185524,0.000010918541,0.00042360197,0.000057517547],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026885222,0.00038850325,0.00022389958,0.0026500155,0.001954249,0.0015438308,0.00045785308,0.00041148646,0.0016737443],"category_scores_gemma":[0.00042472326,0.00021321482,0.00028297972,0.0048959483,0.0003798927,0.0004779411,0.0004469297,0.00037743725,0.00023289525],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00076533906,0.0002727848,0.7974257,0.0005434022,0.0003171678,0.0017093406,0.0038123112,0.021975702,0.012991762,0.004840571,0.022696434,0.13264948],"study_design_scores_gemma":[0.000007937087,0.00004307337,0.95569575,0.00008481087,0.00008775795,0.000089237496,0.0053335205,0.004938344,0.0038506398,0.00028601108,0.029541617,0.00004134905],"about_ca_topic_score_codex":0.99397475,"about_ca_topic_score_gemma":0.99810326,"teacher_disagreement_score":0.02421661,"about_ca_system_score_codex":0.02421661,"about_ca_system_score_gemma":0.02742286,"threshold_uncertainty_score":0.1757046},"labels":[],"label_agreement":null},{"id":"W3008286218","doi":"","title":"Reconstructing the last Newfoundland Ice Sheet,Canada.","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ice sheet; Geology; Fact sheet; Greenland ice sheet; Geography; Oceanography; Computer science","score_opus":0.03195613051742895,"score_gpt":0.2335023577338051,"score_spread":0.20154622721637613,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3008286218","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.89311695,0.009032565,0.0038421398,0.004167061,0.00031844835,0.00009839334,0.031698614,0.00044411587,0.05728175],"genre_scores_gemma":[0.9730397,0.0021668132,0.003553692,0.0002399241,0.000023130102,0.000029964165,0.008561421,0.00013321707,0.012252282],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998235,0.000008487748,0.000008944046,0.000036972266,0.000040185794,0.00008192954],"domain_scores_gemma":[0.9992285,0.00004440811,0.00009107791,0.00004053671,0.0004508733,0.00014458063],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002495076,0.0004082974,0.0002486612,0.0029067418,0.0022001811,0.0020066195,0.00060047634,0.00051316275,0.00516602],"category_scores_gemma":[0.0016123971,0.0002710582,0.000286073,0.0035538597,0.00087683514,0.00065365667,0.0009036396,0.00062945555,0.0007520563],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038580244,0.00009535302,0.67285055,0.0005443829,0.00047444782,0.0014113669,0.003558092,0.038781162,0.0063747102,0.008291939,0.083480746,0.18375151],"study_design_scores_gemma":[0.000027878436,0.000016077003,0.8866183,0.00033401302,0.00009790056,0.00022097437,0.0062070657,0.009855664,0.00063734886,0.0008559132,0.09508057,0.000048334772],"about_ca_topic_score_codex":0.99469936,"about_ca_topic_score_gemma":0.9981774,"teacher_disagreement_score":0.021386566,"about_ca_system_score_codex":0.021386566,"about_ca_system_score_gemma":0.032116126,"threshold_uncertainty_score":0.1551711},"labels":[],"label_agreement":null},{"id":"W3008529557","doi":"","title":"Spectral decomposition of deep flow variability at the Greenland-Iceland-Scotland Ridge and the Labrador Sea Western Boundary","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Ridge; Oceanography; Physical geography; Climatology; Geography; Paleontology","score_opus":0.008410928789902683,"score_gpt":0.22390005781954214,"score_spread":0.21548912902963946,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3008529557","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99842924,0.000033907563,0.00070095446,0.00003103993,0.000004003478,0.0000014993526,0.00018855016,0.000023246748,0.00058747735],"genre_scores_gemma":[0.99914765,0.000022001546,0.00031202,0.0000070650476,0.0000038569515,0.0000013597763,0.000255033,0.000005672785,0.00024531427],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999961,0.0000058912146,0.0000020904013,0.0000079358615,0.000005507778,0.000017466533],"domain_scores_gemma":[0.9998981,0.000023658147,0.000014421829,0.000007007208,0.00003147447,0.00002541094],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015127905,0.00019922225,0.00012237047,0.0006719284,0.00024785925,0.0004990601,0.00015288025,0.00019355227,0.00078879076],"category_scores_gemma":[0.0002882017,0.00008233801,0.00016356121,0.00048048634,0.00021020474,0.00026939798,0.00023486583,0.00017109337,0.000087605025],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001844081,0.00039204082,0.641038,0.000085486834,0.00021381851,0.0007128174,0.0013601772,0.08689178,0.15551467,0.0038285844,0.0026549017,0.10546362],"study_design_scores_gemma":[0.000013311491,0.000014747058,0.9356481,0.0000072523108,0.000017938708,0.000022513315,0.00029652932,0.061878197,0.001440826,0.00019008179,0.0004589776,0.000011537848],"about_ca_topic_score_codex":0.057645954,"about_ca_topic_score_gemma":0.058860935,"teacher_disagreement_score":0.057645954,"about_ca_system_score_codex":0.0003453197,"about_ca_system_score_gemma":0.00031785257,"threshold_uncertainty_score":0.114620805},"labels":[],"label_agreement":null},{"id":"W3008771877","doi":"","title":"Transboundary study of the Milk River aquifer (Canada, USA): geological, conceptual and numerical models for the sound management of the regional groundwater resources","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysical Methods and Applications","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Aquifer; Sound (geography); Groundwater; Geology; Groundwater resources; Water resource management; Hydrology (agriculture); Water resources; Environmental science; Geomorphology; Geotechnical engineering","score_opus":0.03528278627241052,"score_gpt":0.23747948116878193,"score_spread":0.2021966948963714,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3008771877","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99171,0.00020275844,0.0012888769,0.00060888915,0.0000149778625,0.000037651254,0.0014712173,0.000048269936,0.0046173474],"genre_scores_gemma":[0.99104345,0.00025269072,0.0022954429,0.00007470905,0.0000036775082,0.000024012656,0.00085471856,0.000020786672,0.005430596],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99984205,0.00002768964,0.000005787603,0.000025505706,0.000057861325,0.00004111996],"domain_scores_gemma":[0.9995552,0.00004893447,0.000027455406,0.000020772432,0.00026893255,0.00007875868],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029826572,0.00032844616,0.00023188752,0.00046179665,0.002552806,0.0010037405,0.00090238394,0.00060303684,0.0016300272],"category_scores_gemma":[0.0009281284,0.00021189284,0.00033006555,0.0011353905,0.00063425786,0.000805852,0.00073961803,0.0009126141,0.00017115031],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006316022,0.0010654776,0.6618952,0.0002472721,0.0003810858,0.0019221562,0.006876489,0.16471702,0.0092700785,0.029545544,0.028387371,0.095060654],"study_design_scores_gemma":[0.00009743684,0.0001540062,0.63348794,0.00010851262,0.00019366617,0.00033213318,0.021588713,0.2932857,0.0052254656,0.0031556413,0.042227477,0.00014333382],"about_ca_topic_score_codex":0.99387264,"about_ca_topic_score_gemma":0.9962813,"teacher_disagreement_score":0.019698307,"about_ca_system_score_codex":0.019698307,"about_ca_system_score_gemma":0.027641311,"threshold_uncertainty_score":0.14292186},"labels":[],"label_agreement":null},{"id":"W3009122756","doi":"","title":"Atmospheric exchange of carbon dioxide and methane of a small water body and a floating mat in the Luther Marsh peatland, Ontario, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Carbon dioxide; Marsh; Environmental science; Methane; Wetland; Hydrology (agriculture); Atmospheric sciences; Geography; Ecology; Geology","score_opus":0.011101571370042728,"score_gpt":0.1878894936559619,"score_spread":0.17678792228591916,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009122756","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99886936,0.000042895037,0.000030379391,0.000044985478,0.0000033178737,0.0000039462357,0.00023356384,0.0000032127493,0.00076822785],"genre_scores_gemma":[0.99898535,0.000032566753,0.00004671244,0.000011987495,0.0000014573011,0.0000026622815,0.00014094157,0.000002014162,0.00077628205],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987864,0.000008170734,0.0000045596757,0.00002617444,0.00003218734,0.0000502746],"domain_scores_gemma":[0.99978095,0.000023206958,0.000022841765,0.0000060187117,0.00008920723,0.00007781134],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012396833,0.00019737029,0.00030723386,0.0004146978,0.0031839889,0.0008020576,0.0005537012,0.00038627564,0.0013128413],"category_scores_gemma":[0.00030322626,0.00023204897,0.0002279033,0.00058167876,0.0008255419,0.00035891435,0.0004786977,0.00039528566,0.00017180432],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012736062,0.00014321302,0.95654815,0.00005693611,0.00010524988,0.0009852076,0.0066764536,0.0009936802,0.024061928,0.00045298744,0.0014981875,0.0072043906],"study_design_scores_gemma":[0.000009388305,0.00001889523,0.99672604,0.000004681637,0.000011963053,0.000032726246,0.001754373,0.00054132345,0.00030621432,0.000018711697,0.00056816294,0.000007455509],"about_ca_topic_score_codex":0.9867166,"about_ca_topic_score_gemma":0.99409497,"teacher_disagreement_score":0.013283372,"about_ca_system_score_codex":0.011261422,"about_ca_system_score_gemma":0.008317001,"threshold_uncertainty_score":0.081707716},"labels":[],"label_agreement":null},{"id":"W3009344460","doi":"","title":"Large subsurface freshwater pulse on the northern Labrador Shelf during the early Holocene gives new insights in the Lake Agassiz drainage event","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Geology; Oceanography; Event (particle physics)","score_opus":0.013718905693670208,"score_gpt":0.22735921921380117,"score_spread":0.21364031352013096,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009344460","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989003,0.000055462384,0.00003321229,0.000027886963,0.0000017601922,0.0000010924592,0.00019625617,0.0000060449597,0.0007778874],"genre_scores_gemma":[0.9995946,0.00004007709,0.000040492512,0.0000060882103,0.0000023307898,0.0000011738147,0.00014569752,0.000002387112,0.000167094],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999392,0.000006061707,0.0000038343824,0.0000122377,0.00000765085,0.000031060707],"domain_scores_gemma":[0.9999045,0.000010415495,0.000032180593,0.0000067516876,0.000024206363,0.000021890015],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00010961326,0.00014290663,0.00021522792,0.0008819343,0.0007486755,0.00066585053,0.00020126172,0.00024126683,0.0014158572],"category_scores_gemma":[0.00023323634,0.00010512118,0.0001505486,0.0010750976,0.00042825684,0.00033295993,0.0005507371,0.00015875317,0.00014279711],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000325764,0.00003262442,0.9691008,0.00003441562,0.00004060794,0.000348104,0.0017700094,0.00029362988,0.010037224,0.00019432289,0.00032158606,0.017500998],"study_design_scores_gemma":[0.0000011257026,0.0000069113553,0.9990196,0.0000027885173,0.000005136656,0.000018678178,0.00045917722,0.00007455684,0.00012031332,0.000012032324,0.00027815453,0.0000013955936],"about_ca_topic_score_codex":0.12764125,"about_ca_topic_score_gemma":0.34375736,"teacher_disagreement_score":0.87235874,"about_ca_system_score_codex":0.0008758778,"about_ca_system_score_gemma":0.0007091353,"threshold_uncertainty_score":0.25379664},"labels":[],"label_agreement":null},{"id":"W3009505589","doi":"","title":"Palynology of IODP Site U1307 at the Pliocene to Pleistocene transition: sea-surface conditions in the Labrador Sea and pollen input from the Greenland vegetation","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Palynology; Geology; Pleistocene; Pollen; Vegetation (pathology); Oceanography; Paleontology; Physical geography; Geography; Ecology","score_opus":0.016151182880954486,"score_gpt":0.23882536082778755,"score_spread":0.22267417794683306,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009505589","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9988444,0.000026676531,0.000028626018,0.000024180768,0.000001304388,0.0000010706156,0.00057439704,0.00000682273,0.0004926274],"genre_scores_gemma":[0.99882346,0.000019988298,0.000030038573,0.000010989177,9.778549e-7,0.000001601224,0.0008117186,0.000007325692,0.00029393242],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99992704,0.000010810318,0.0000043410037,0.00001914789,0.000008358045,0.000030317939],"domain_scores_gemma":[0.99980897,0.000027215448,0.00005136591,0.000014330691,0.000040770337,0.0000574213],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001859128,0.00015594726,0.00020296723,0.0008654444,0.00051874976,0.00054640824,0.00032833125,0.0002957306,0.001727351],"category_scores_gemma":[0.00042930566,0.00018686842,0.00016684072,0.0013144924,0.00045416155,0.0003354579,0.0005961819,0.00025696846,0.0002757614],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019733708,0.000024875888,0.98349667,0.000023113269,0.000051008137,0.00029882297,0.0023204177,0.00035881248,0.0060835253,0.00024909846,0.0007386804,0.0061575994],"study_design_scores_gemma":[0.0000024652684,0.000004102894,0.999005,0.0000024991334,0.0000045499037,0.000024018063,0.00040378404,0.000112274436,0.00011925808,0.0000114301365,0.00030901527,0.0000015502754],"about_ca_topic_score_codex":0.2938253,"about_ca_topic_score_gemma":0.49881655,"teacher_disagreement_score":0.2938253,"about_ca_system_score_codex":0.0009423156,"about_ca_system_score_gemma":0.0007476635,"threshold_uncertainty_score":0.58423007},"labels":[],"label_agreement":null},{"id":"W3009545180","doi":"","title":"Estimating the groundwater residence time in eskers of the Amos region, northern Quebec by 3H-3He and (U-Th/4He) methods","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Residence; Groundwater; Environmental science; Geology; Demography; Sociology; Geotechnical engineering","score_opus":0.014034711198911533,"score_gpt":0.25752079099806846,"score_spread":0.24348607979915693,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009545180","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9917883,0.00027066842,0.0012105382,0.00010697209,0.000008051927,0.000048709142,0.0029567238,0.000067777284,0.0035422787],"genre_scores_gemma":[0.99354726,0.00012788031,0.0018352816,0.000026831054,0.000003427886,0.000025750393,0.0009365043,0.00000934152,0.0034877332],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981445,0.00001841596,0.0000079477395,0.000051354044,0.00005867048,0.00004922786],"domain_scores_gemma":[0.9996742,0.00004673899,0.000043634223,0.000010375428,0.00017850305,0.000046539506],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021055757,0.00031836508,0.000238521,0.0011607562,0.001206688,0.0008952172,0.00078939943,0.00038929403,0.0018584915],"category_scores_gemma":[0.0005646292,0.00014480093,0.0002458617,0.001548851,0.00037892244,0.00038536423,0.0003226342,0.00023034985,0.00018546061],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004113629,0.000101256664,0.92635226,0.00011036619,0.00020172217,0.00038687445,0.0012744172,0.010975648,0.013421598,0.0008355571,0.0024005505,0.043528356],"study_design_scores_gemma":[0.000039600593,0.000038776765,0.96602637,0.000023474704,0.000045185807,0.00005270251,0.0011226493,0.02596551,0.0022722865,0.000098448385,0.0042762933,0.00003864781],"about_ca_topic_score_codex":0.98987246,"about_ca_topic_score_gemma":0.9960311,"teacher_disagreement_score":0.011223507,"about_ca_system_score_codex":0.011223507,"about_ca_system_score_gemma":0.005409103,"threshold_uncertainty_score":0.08143264},"labels":[],"label_agreement":null},{"id":"W3009624377","doi":"","title":"Predictable components and canonical skill of tropical Pacific variability in the Canadian Centre for Climate Modelling and Analysis decadal hindcasts","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Environmental science; Geography; Meteorology; Geology","score_opus":0.020772799194193434,"score_gpt":0.23719059048639635,"score_spread":0.2164177912922029,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009624377","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9892813,0.00026160383,0.0033915353,0.00024051353,0.000043247637,0.000011424238,0.0025249051,0.00012190398,0.004123631],"genre_scores_gemma":[0.9975197,0.00010254367,0.00043669366,0.000014179468,0.000008770744,0.0000035438566,0.001365624,0.000039487535,0.00050936866],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9996408,0.000041033734,0.000018051633,0.00012215284,0.00007596276,0.00010211977],"domain_scores_gemma":[0.9973133,0.0006030756,0.00020600838,0.0003424374,0.0012457174,0.00028940063],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013868059,0.00027096158,0.00021298786,0.0010928722,0.0009228583,0.002203285,0.0006105726,0.00034253663,0.001691411],"category_scores_gemma":[0.009202767,0.00038819725,0.0004292418,0.0015910359,0.00093385915,0.0008717024,0.0007453763,0.0008460254,0.00019225352],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021156935,0.00004675765,0.8429143,0.00005836669,0.00034211125,0.00012424859,0.0012568819,0.09309305,0.0031357538,0.017328776,0.006769612,0.034718554],"study_design_scores_gemma":[0.000011221327,0.0000052032647,0.91821474,0.000030998504,0.000045142064,0.000034332905,0.0002432132,0.07579251,0.0004545314,0.0025250553,0.0025956207,0.000047440943],"about_ca_topic_score_codex":0.8114433,"about_ca_topic_score_gemma":0.8562537,"teacher_disagreement_score":0.18855667,"about_ca_system_score_codex":0.00312784,"about_ca_system_score_gemma":0.0059291776,"threshold_uncertainty_score":0.3793342},"labels":[],"label_agreement":null},{"id":"W3009675989","doi":"","title":"Performance of the lake model FLake in the Canadian Regional Climate Model, version 5 simulations over two CORDEX domains - North America and Africa.","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Flake; Climate model; Climatology; Geography; Physical geography; Climate change; Environmental science; Meteorology; Geology; Oceanography","score_opus":0.015792768675777787,"score_gpt":0.22382875196923857,"score_spread":0.2080359832934608,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009675989","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9855239,0.00029182757,0.0006299194,0.0006529703,0.0000703911,0.000031006413,0.005303889,0.00052436517,0.0069716545],"genre_scores_gemma":[0.9935806,0.00009474058,0.0013746355,0.000096279626,0.000008237428,0.000019430061,0.003302405,0.00011501961,0.0014087056],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997726,0.000058456077,0.000015777294,0.00005293198,0.000037169204,0.00006307831],"domain_scores_gemma":[0.9993874,0.00017123975,0.000044324872,0.00003990869,0.00023985052,0.00011728005],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00067772396,0.000859991,0.00043974756,0.00048734026,0.0011339659,0.0009367017,0.001234103,0.0011416167,0.0026546044],"category_scores_gemma":[0.0021612893,0.00046270018,0.00046645774,0.0007740957,0.0005183264,0.0008376094,0.00047827745,0.00080334605,0.00029367983],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006685918,0.00045581485,0.08021731,0.00016849732,0.000414979,0.0003060752,0.0003243245,0.88337046,0.0030057915,0.0018302032,0.015981682,0.013256262],"study_design_scores_gemma":[0.00028536507,0.00008344275,0.054523077,0.000033840515,0.00010823812,0.000028564238,0.00032560402,0.9396237,0.0014153108,0.00027097092,0.0032317066,0.00007019223],"about_ca_topic_score_codex":0.92276466,"about_ca_topic_score_gemma":0.92623055,"teacher_disagreement_score":0.07723534,"about_ca_system_score_codex":0.0053581703,"about_ca_system_score_gemma":0.0064439154,"threshold_uncertainty_score":0.15538037},"labels":[],"label_agreement":null},{"id":"W3009697860","doi":"","title":"Observation of oceanic heat flux to the sea ice using ice-tethered moorings: Canada Basin, Arctic Ocean","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sea ice; Arctic ice pack; Oceanography; Sea ice thickness; Geology; Climatology; Drift ice; Antarctic sea ice; Iceberg; Arctic; Environmental science","score_opus":0.018392010112601446,"score_gpt":0.20287946186206882,"score_spread":0.18448745174946737,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009697860","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9967933,0.000098554374,0.00021759364,0.00004688041,0.000010123729,0.000010936397,0.0012926757,0.000033836903,0.0014960455],"genre_scores_gemma":[0.99715257,0.000110319874,0.0006759961,0.000017489649,0.0000062364174,0.0000065149557,0.0011890846,0.000008378798,0.000833483],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988186,0.0000064040987,0.0000028546658,0.000029129702,0.000037669968,0.000042086132],"domain_scores_gemma":[0.99976164,0.000013441352,0.000021604126,0.00001156401,0.0001122423,0.0000795348],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016405541,0.00036977415,0.00025977768,0.00076119887,0.0011785384,0.000632314,0.00058170734,0.00036728973,0.0005798156],"category_scores_gemma":[0.00039902265,0.00021602295,0.0002346297,0.001523425,0.00043539517,0.00030719285,0.00043935765,0.00036761392,0.00010362926],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00050495006,0.00016363447,0.9208647,0.00007418835,0.00027921703,0.0002560581,0.0009695442,0.017273705,0.029651536,0.00045210385,0.0025167307,0.02699359],"study_design_scores_gemma":[0.00003765109,0.000029896759,0.98030156,0.000014477024,0.000057793783,0.000034210905,0.0003405175,0.015441128,0.002002963,0.000047447153,0.001671845,0.000020624131],"about_ca_topic_score_codex":0.96303195,"about_ca_topic_score_gemma":0.98027086,"teacher_disagreement_score":0.036968052,"about_ca_system_score_codex":0.0047194175,"about_ca_system_score_gemma":0.0077705416,"threshold_uncertainty_score":0.07437146},"labels":[],"label_agreement":null},{"id":"W3009770936","doi":"","title":"Postglacial paleoclimates of the Foxe Basin and surrounding regions (Nunavut, Canada): a multiproxy lake sediment archive study","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Sediment; Structural basin; Physical geography; Oceanography; Geomorphology; Geography","score_opus":0.012903813071951922,"score_gpt":0.21582026539663113,"score_spread":0.2029164523246792,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009770936","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9948251,0.00038324355,0.00010114466,0.000090073496,0.0000042870597,0.00002262784,0.0034084634,0.000009797804,0.0011551551],"genre_scores_gemma":[0.99398756,0.00032791466,0.0004339561,0.000046820638,0.0000024183084,0.00002221196,0.0028580653,0.000014113679,0.0023068895],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99963653,0.00002620286,0.000029092907,0.000074829906,0.00009632533,0.00013711261],"domain_scores_gemma":[0.99920326,0.000035524437,0.00009643485,0.000037044527,0.00045294693,0.00017476056],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048114976,0.00031633765,0.00034029584,0.002468652,0.0034951996,0.0013935833,0.0011359806,0.00040990903,0.00130007],"category_scores_gemma":[0.00096224877,0.0004430191,0.00032002782,0.004918828,0.0007886404,0.0006484483,0.0013696887,0.00041822818,0.0002564931],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015553295,0.00005044891,0.97869724,0.000055783516,0.00011499559,0.0001990088,0.005771007,0.00037600176,0.0019268517,0.00039349234,0.0014290614,0.010830602],"study_design_scores_gemma":[0.0000035519352,0.0000061901196,0.9960592,0.0000136251165,0.000018169654,0.000040937633,0.0020581859,0.00020538192,0.0001441828,0.000016398939,0.0014283877,0.0000057801803],"about_ca_topic_score_codex":0.9965172,"about_ca_topic_score_gemma":0.9990159,"teacher_disagreement_score":0.020149114,"about_ca_system_score_codex":0.020149114,"about_ca_system_score_gemma":0.022217331,"threshold_uncertainty_score":0.14619273},"labels":[],"label_agreement":null},{"id":"W3009932189","doi":"","title":"Monitoring and simulating vernal pool hydrology in the Canadian Shield forest to understand their ecological functions","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Hydrology (agriculture); Environmental science; Ecology; Shield; Geography; Geology; Biology; Geotechnical engineering","score_opus":0.02635657040426161,"score_gpt":0.2403250378851581,"score_spread":0.21396846748089648,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3009932189","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987974,0.000025924784,0.0003821467,0.000037044316,0.0000022293266,0.0000065462473,0.00016263567,0.000033490694,0.00055253645],"genre_scores_gemma":[0.998454,0.000025544634,0.0010565267,0.0000063309344,9.578466e-7,0.000004354072,0.0002033032,0.000005144098,0.00024378058],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99988186,0.000016533872,0.000004699202,0.000022410686,0.000023051249,0.000051571693],"domain_scores_gemma":[0.9998084,0.00004401399,0.000023515982,0.000015505628,0.000062751766,0.000045804074],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032792645,0.00024650322,0.00019497164,0.00036223436,0.0007684668,0.00065369,0.00047966378,0.00030336823,0.00043120238],"category_scores_gemma":[0.00069429853,0.0001414015,0.0002338614,0.00060046796,0.00032989,0.00038904266,0.00019251143,0.00027079784,0.000047440717],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021354844,0.0003258126,0.61760694,0.000038843657,0.00014790741,0.0001613651,0.00071378384,0.3398062,0.008140993,0.0012058436,0.0020349107,0.029603893],"study_design_scores_gemma":[0.000044943794,0.00003619952,0.3485188,0.0000088282095,0.00006406451,0.000021769472,0.0007601032,0.6468952,0.0016402907,0.00023633726,0.0017487585,0.000024901192],"about_ca_topic_score_codex":0.9514752,"about_ca_topic_score_gemma":0.9757435,"teacher_disagreement_score":0.048524797,"about_ca_system_score_codex":0.004726572,"about_ca_system_score_gemma":0.0073857284,"threshold_uncertainty_score":0.09762108},"labels":[],"label_agreement":null},{"id":"W3010046104","doi":"","title":"Re-suspension of Cesium-134/137 into the Canadian Environment and the Contribution Stemming from the Fukushima-Daiichi Nuclear Incident","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Radioactive contamination and transfer","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Suspension (topology); Caesium; Environmental science; Fukushima Nuclear Accident; Radiochemistry; Nuclear physics; Physics; Chemistry; Nuclear power plant","score_opus":0.005035075542858056,"score_gpt":0.1744109699226239,"score_spread":0.16937589437976583,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010046104","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9748857,0.0010143506,0.0011789704,0.0011698576,0.000082758925,0.000038001614,0.00043888218,0.00003617318,0.021155247],"genre_scores_gemma":[0.9857901,0.0010595026,0.0006743047,0.00016294583,0.000011716188,0.0000074526265,0.00023397832,0.000031091105,0.012028992],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9993431,0.000026567166,0.000011665126,0.000080452766,0.00029975697,0.00023844914],"domain_scores_gemma":[0.9996427,0.000026206824,0.000027826845,0.000010248334,0.000264726,0.000028290538],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00041630396,0.0005054005,0.00036350396,0.0010118888,0.0041724625,0.0015646502,0.0007295798,0.0006802366,0.0023625495],"category_scores_gemma":[0.0006641757,0.00020321684,0.00041424367,0.0011468503,0.0013012189,0.0005186848,0.00074843696,0.0011208149,0.00022274231],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00394219,0.00027870553,0.21357805,0.0010292324,0.00037619172,0.00534192,0.011671316,0.020476393,0.5672052,0.019700628,0.011084757,0.1453154],"study_design_scores_gemma":[0.00012364867,0.0005222462,0.5287933,0.00017918176,0.0006655188,0.0010806276,0.03280688,0.006947936,0.2953686,0.0027361605,0.13047853,0.00029738052],"about_ca_topic_score_codex":0.95862937,"about_ca_topic_score_gemma":0.9653266,"teacher_disagreement_score":0.04137063,"about_ca_system_score_codex":0.025130976,"about_ca_system_score_gemma":0.027248664,"threshold_uncertainty_score":0.18233883},"labels":[],"label_agreement":null},{"id":"W3010063505","doi":"","title":"Dynamics and evolution of subglacial to postglacial environments inferred from Pingualuit Crater Lake sediments (Nunavik, Canada)","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Impact crater; Oceanography; Crater lake; Physical geography; Paleontology; Geography; Astrobiology","score_opus":0.008693262879246058,"score_gpt":0.21477450049652663,"score_spread":0.2060812376172806,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010063505","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991333,0.00007044967,0.000026162412,0.000012119206,6.1073735e-7,0.0000022692814,0.0002205891,0.0000035611038,0.00053099956],"genre_scores_gemma":[0.9993519,0.000055542892,0.000055270666,0.0000059248123,3.4779936e-7,0.0000018719609,0.00022205846,0.0000032320131,0.00030381302],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998995,0.0000062776967,0.000006938023,0.000025418876,0.000018633096,0.000043270193],"domain_scores_gemma":[0.99953747,0.00003191406,0.000066496024,0.000015266442,0.00025054492,0.00009827382],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001670158,0.0001729722,0.00020291285,0.0017206373,0.0019603793,0.0011538375,0.00053464493,0.00023441302,0.0012859874],"category_scores_gemma":[0.0006964845,0.00024804438,0.00016462048,0.0021809267,0.00089068234,0.00030159813,0.0006527443,0.00024792284,0.00013911696],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021890512,0.000023191446,0.979194,0.00003442365,0.000058029036,0.00016204704,0.0032744675,0.0008671462,0.00745383,0.0002590685,0.00023182943,0.00822314],"study_design_scores_gemma":[0.0000017567447,0.000004517168,0.9988825,0.0000034699688,0.000006355931,0.0000161737,0.00054176303,0.00019143627,0.000121770085,0.000010169484,0.00021719608,0.0000029169366],"about_ca_topic_score_codex":0.97480357,"about_ca_topic_score_gemma":0.9898399,"teacher_disagreement_score":0.025196433,"about_ca_system_score_codex":0.008465828,"about_ca_system_score_gemma":0.0065405387,"threshold_uncertainty_score":0.061424136},"labels":[],"label_agreement":null},{"id":"W3010092628","doi":"","title":"Interaction between the tidal and seasonal variability of the Gulf of Maine and Scotian Shelf region","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Bedford Institute of Oceanography; Fisheries and Oceans Canada; Dalhousie University","funders":"","keywords":"Oceanography; Stratification (seeds); Hydrography; Climatology; Geology; Ocean current; Downscaling; Current (fluid); Circulation (fluid dynamics); Sea surface temperature; Climate change","score_opus":0.013560452820130069,"score_gpt":0.21884162731753742,"score_spread":0.20528117449740735,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010092628","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99894625,0.00002310694,0.00013664577,0.000057584002,0.0000026561213,0.0000019800798,0.00010442062,0.000007172697,0.0007202928],"genre_scores_gemma":[0.99969876,0.000011614841,0.000042086212,0.000005201572,7.544846e-7,8.193119e-7,0.000047236015,0.0000014213093,0.00019210813],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99995697,0.000011565409,0.0000021463604,0.000010769819,0.0000061710066,0.000012377652],"domain_scores_gemma":[0.99985206,0.000048816986,0.000026081425,0.00001160213,0.00002945733,0.00003200019],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00012903886,0.00012945716,0.00009325978,0.00014860222,0.00020152173,0.0004942206,0.00018235217,0.0001933077,0.0010328124],"category_scores_gemma":[0.0005013427,0.00011386824,0.00018342533,0.00013089855,0.00021097818,0.00016348263,0.00022361157,0.00011101419,0.000073312774],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021577356,0.00005773521,0.7446767,0.000027376263,0.00014206649,0.00039726179,0.00017792961,0.23452905,0.012308034,0.0012380186,0.0007882537,0.0054418817],"study_design_scores_gemma":[0.00003629845,0.00004032805,0.6572024,0.000012257218,0.000033214736,0.00004539336,0.00015436708,0.34092644,0.000720684,0.00023855205,0.00057817454,0.000011842582],"about_ca_topic_score_codex":0.25174567,"about_ca_topic_score_gemma":0.26484016,"teacher_disagreement_score":0.7482543,"about_ca_system_score_codex":0.0011397499,"about_ca_system_score_gemma":0.0007434545,"threshold_uncertainty_score":0.5005607},"labels":[],"label_agreement":null},{"id":"W3010178836","doi":"","title":"Offline regional snowpack simulations over eastern Canada using CLASS","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snowpack; Class (philosophy); Climatology; Geography; Meteorology; Environmental science; Snow; Remote sensing; Geology; Computer science; Artificial intelligence","score_opus":0.034310260882941854,"score_gpt":0.23533667486513055,"score_spread":0.20102641398218868,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010178836","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98305976,0.00008112048,0.0016790362,0.00012797935,0.00003489198,0.000029865676,0.007430841,0.0010583077,0.0064982167],"genre_scores_gemma":[0.9882835,0.000045904246,0.0028844464,0.00003854438,0.000012171328,0.0000198888,0.0066071707,0.0001397548,0.0019686252],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99987936,0.000010101407,0.000005096031,0.000039013332,0.000021045531,0.000045333665],"domain_scores_gemma":[0.99953985,0.000100048186,0.000028906905,0.000043724827,0.00019687593,0.00009062855],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022396554,0.000779671,0.0005897707,0.0005837746,0.0013358906,0.0009291339,0.0014477886,0.0007820912,0.0054332884],"category_scores_gemma":[0.00079862075,0.00055109704,0.0007164007,0.0010669973,0.000512625,0.00064099627,0.00034282953,0.00054553704,0.0005425458],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048324387,0.0003157856,0.05222622,0.000096068004,0.00023679664,0.00018681081,0.00027818728,0.92004895,0.0025558204,0.00073912065,0.0062189647,0.016614055],"study_design_scores_gemma":[0.00021856652,0.000036145237,0.026325246,0.000011469138,0.00005138489,0.000015775526,0.00018658383,0.96929055,0.0012254522,0.00022578669,0.0023779934,0.00003512124],"about_ca_topic_score_codex":0.93909025,"about_ca_topic_score_gemma":0.95084924,"teacher_disagreement_score":0.060909748,"about_ca_system_score_codex":0.005747224,"about_ca_system_score_gemma":0.0070594987,"threshold_uncertainty_score":0.12253684},"labels":[],"label_agreement":null},{"id":"W3010205227","doi":"","title":"Boron in tree-ring as an indicator of forest disturbances in the Lower Athabasca Oil Sands region, Northeastern Alberta, Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oil sands; Dendrochronology; Environmental science; Boron; Environmental protection; Forestry; Hydrology (agriculture); Geology; Geography; Archaeology; Chemistry; Asphalt; Geotechnical engineering","score_opus":0.009880426708790777,"score_gpt":0.207982721606142,"score_spread":0.19810229489735123,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010205227","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9966859,0.00020088341,0.00008536658,0.00012884474,0.0000045565434,0.000008981239,0.0013202574,0.000010350068,0.001554898],"genre_scores_gemma":[0.99738485,0.00011568849,0.00013028088,0.000036747126,0.0000018986747,0.0000038811945,0.0005891828,0.000002672721,0.001734812],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999752,0.000031463027,0.000014425938,0.00003725432,0.00007016017,0.000094645206],"domain_scores_gemma":[0.99925476,0.000062442545,0.0001240922,0.000017972803,0.00037131077,0.00016934579],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003061082,0.00017680852,0.00017350244,0.0010265078,0.0009778636,0.00056997524,0.0006602709,0.00020788032,0.00094868365],"category_scores_gemma":[0.000592608,0.000112598245,0.0001559211,0.001678018,0.000443427,0.00015904727,0.0003204012,0.00024522212,0.00011664317],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017355729,0.00003762055,0.99192894,0.000020413869,0.00003999446,0.00007969261,0.00075461454,0.0004024432,0.0010940768,0.00009486114,0.0008337434,0.0045400057],"study_design_scores_gemma":[0.0000030782605,0.0000081194075,0.9976121,0.000006497843,0.000010306502,0.000016149188,0.0013945755,0.00027135,0.00011736169,0.000013643821,0.0005428844,0.000003928754],"about_ca_topic_score_codex":0.99477696,"about_ca_topic_score_gemma":0.9982805,"teacher_disagreement_score":0.010952808,"about_ca_system_score_codex":0.010952808,"about_ca_system_score_gemma":0.008022738,"threshold_uncertainty_score":0.07946861},"labels":[],"label_agreement":null},{"id":"W3010225669","doi":"","title":"Sedimentary processes in High Arctic lakes (Cape Bounty, Melville Island, Canada): What do sediments really record?","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sedimentary rock; Arctic; Cape; Geology; Oceanography; Geologic record; Archaeology; Paleontology; Geography","score_opus":0.009836929766770124,"score_gpt":0.18449523222346617,"score_spread":0.17465830245669606,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010225669","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9951226,0.001077138,0.000078322504,0.00036625707,0.000013951853,0.0000068241006,0.0014228828,0.000007649609,0.0019043062],"genre_scores_gemma":[0.9971898,0.0007012687,0.00017944929,0.00009892964,0.000010645639,0.000004472466,0.0007416681,0.000007599915,0.0010660798],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977535,0.000020365158,0.000020242896,0.00003899867,0.000053822838,0.00009121905],"domain_scores_gemma":[0.99879897,0.00009162888,0.0002467119,0.00004490743,0.00063799456,0.00017983025],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040594337,0.00026330005,0.00024170845,0.0014589062,0.0022014335,0.0016253463,0.00062313705,0.0005008147,0.00097646564],"category_scores_gemma":[0.0014825566,0.0002618261,0.0002550784,0.00396097,0.0009912471,0.00071394397,0.0007922798,0.00039713547,0.00015841702],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000074150994,0.000024574716,0.98429745,0.00007119669,0.00012115771,0.00011694427,0.0030648313,0.00022156279,0.001230022,0.00018976879,0.0012764647,0.009311815],"study_design_scores_gemma":[0.0000012990351,0.0000030485621,0.9972064,0.000023189088,0.000020041,0.000015150394,0.0015074232,0.00011456797,0.000093155635,0.000020071353,0.00099038,0.000005265871],"about_ca_topic_score_codex":0.9893834,"about_ca_topic_score_gemma":0.9973748,"teacher_disagreement_score":0.0106166005,"about_ca_system_score_codex":0.010344293,"about_ca_system_score_gemma":0.011985055,"threshold_uncertainty_score":0.07505345},"labels":[],"label_agreement":null},{"id":"W3010236915","doi":"","title":"Impact of long-term flooding on the hydrology and carbon biogeochemistry of a northern bog in Ontario, Canada","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bog; Biogeochemistry; Hydrology (agriculture); Flooding (psychology); Term (time); Environmental science; Peat; Physical geography; Geology; Geography; Oceanography; Archaeology","score_opus":0.00532197016529382,"score_gpt":0.1902988234289895,"score_spread":0.18497685326369567,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010236915","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99812967,0.000098391894,0.000036010668,0.00023457555,0.000004393013,0.000004984773,0.00034291536,0.0000062725635,0.0011427248],"genre_scores_gemma":[0.99901235,0.000085500746,0.000052402407,0.00003274078,0.0000020921477,0.0000027714948,0.00014329772,0.0000021835667,0.0006667084],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998223,0.000018062936,0.000009444354,0.000026181728,0.000037146037,0.00008690043],"domain_scores_gemma":[0.99949276,0.000052923577,0.00007772639,0.000016824973,0.00018387409,0.00017589987],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001718748,0.00013662106,0.0001955613,0.00042453787,0.0019063688,0.00092580466,0.0004628318,0.00037581372,0.00093925546],"category_scores_gemma":[0.000570257,0.00016826869,0.00024820288,0.00061665056,0.000969176,0.0003284831,0.00066399405,0.00035221138,0.00009274709],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022325959,0.00007024197,0.9785598,0.00006587518,0.00008677101,0.00085863296,0.004688303,0.0012881048,0.0041123624,0.0003865955,0.0015804686,0.008079526],"study_design_scores_gemma":[0.000004822023,0.000008799199,0.99547297,0.000011775796,0.000012416542,0.00004181852,0.0028458447,0.0004684714,0.00007696938,0.000036990055,0.0010109178,0.000008213762],"about_ca_topic_score_codex":0.99211615,"about_ca_topic_score_gemma":0.99767,"teacher_disagreement_score":0.015369736,"about_ca_system_score_codex":0.015369736,"about_ca_system_score_gemma":0.01607788,"threshold_uncertainty_score":0.11151576},"labels":[],"label_agreement":null},{"id":"W3010245923","doi":"","title":"Spring floods prediction with the use of optical satellite data in Québec","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Flood Risk Assessment and Management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Spring (device); Satellite; Environmental science; Meteorology; Climatology; Remote sensing; Geology; Geography; Engineering","score_opus":0.03221203639651635,"score_gpt":0.24096680790102648,"score_spread":0.20875477150451013,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010245923","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99262106,0.00017022691,0.00096196507,0.00044256216,0.000011526024,0.000017365595,0.0025537228,0.00010371344,0.0031178296],"genre_scores_gemma":[0.99615306,0.000086017266,0.00064210343,0.000026089898,0.0000034913187,0.000007056708,0.0011160389,0.0000085765505,0.001957613],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985766,0.000027687882,0.000007907166,0.0000323279,0.00003457531,0.00003988325],"domain_scores_gemma":[0.9992428,0.000177411,0.00005912981,0.00002768265,0.00039911654,0.00009387803],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039701,0.00034487672,0.00022185234,0.00060768775,0.00070583425,0.00094886264,0.00051994005,0.00038602937,0.0014623433],"category_scores_gemma":[0.0012798017,0.00017393014,0.00029029642,0.00083572394,0.00021615913,0.00032730176,0.00025276447,0.00035618062,0.00018818423],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041846873,0.00024059093,0.75749874,0.000052277246,0.00023858958,0.00034308934,0.0002989797,0.1736697,0.00235527,0.001053798,0.010054688,0.05377582],"study_design_scores_gemma":[0.00006680025,0.00003202071,0.58815634,0.000025240424,0.000059719165,0.00002348976,0.00048652772,0.4073212,0.0006921954,0.00017696261,0.0029220632,0.00003745107],"about_ca_topic_score_codex":0.99249375,"about_ca_topic_score_gemma":0.99337417,"teacher_disagreement_score":0.011373172,"about_ca_system_score_codex":0.011373172,"about_ca_system_score_gemma":0.006953699,"threshold_uncertainty_score":0.08251858},"labels":[],"label_agreement":null},{"id":"W3010424175","doi":"","title":"Stratigraphic architecture and morphostructures of a recent glacio-isostatically forced-regressive delta: implications in terms of proglacial fluvial dynamics, North Shore of the St-Lawrence Estuary, Québec, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological formations and processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Shore; Fluvial; Geology; Delta; Estuary; Architecture; River delta; Oceanography; Physical geography; Geomorphology; Archaeology; Geography; Engineering","score_opus":0.012373496473767641,"score_gpt":0.20726673411070376,"score_spread":0.1948932376369361,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010424175","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9981652,0.000078527744,0.00006436787,0.00003599612,0.0000013630552,0.0000037084098,0.00096714846,0.000008607596,0.0006751878],"genre_scores_gemma":[0.9987691,0.000040454484,0.000062555504,0.000007835835,6.177608e-7,0.000001861142,0.0005278796,0.0000026895846,0.00058693293],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999249,0.0000063796065,0.0000066210496,0.000020941936,0.0000145012555,0.000026509444],"domain_scores_gemma":[0.9995307,0.000030755466,0.00006301928,0.000021673624,0.0002890004,0.00006490387],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016741057,0.000109681125,0.00012787923,0.0008821149,0.0008620753,0.0007696816,0.00058129604,0.00018441177,0.0022027274],"category_scores_gemma":[0.00055425905,0.00012758047,0.00015026306,0.0016613314,0.00066734664,0.00019275463,0.00029602653,0.00016881234,0.00022260942],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000095323696,0.000022366616,0.98275733,0.000022182696,0.000048444996,0.00008395055,0.0011523223,0.0016415629,0.0021169554,0.0002551831,0.00081390725,0.010990594],"study_design_scores_gemma":[0.000002024578,0.0000033432277,0.998565,0.000004260297,0.000005342983,0.00001445813,0.0003360951,0.0007034299,0.00004321978,0.000013442508,0.00030615588,0.0000033153954],"about_ca_topic_score_codex":0.97481835,"about_ca_topic_score_gemma":0.9926885,"teacher_disagreement_score":0.025181651,"about_ca_system_score_codex":0.009256264,"about_ca_system_score_gemma":0.005165572,"threshold_uncertainty_score":0.067159176},"labels":[],"label_agreement":null},{"id":"W3010481060","doi":"","title":"Trends in ostracod distribution and water chemistry in subarctic Canada: Churchill (Manitoba) lakes and ponds revisited","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Aquatic Invertebrate Ecology and Behavior","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subarctic climate; Ostracod; Water chemistry; Environmental science; Hydrology (agriculture); Oceanography; Physical geography; Geology; Geography; Environmental engineering","score_opus":0.005259016332908992,"score_gpt":0.19392256575008873,"score_spread":0.18866354941717975,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010481060","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.994409,0.0014168811,0.00013764574,0.0007342779,0.000011230338,0.000010954924,0.0011690602,0.000016307074,0.0020945598],"genre_scores_gemma":[0.99651706,0.00088517624,0.00027672286,0.00021752027,0.000007256361,0.000004882872,0.00045656879,0.0000060232665,0.0016287437],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997856,0.000017246946,0.000013355272,0.000045305856,0.000056328485,0.00008213382],"domain_scores_gemma":[0.9979322,0.00009468598,0.00029327217,0.000057433892,0.0012197586,0.00040274826],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004979083,0.00017802959,0.0002515782,0.0018217006,0.0017753299,0.0012195441,0.00081462046,0.00044073546,0.0020381236],"category_scores_gemma":[0.0011673911,0.00018599241,0.0002100016,0.004163454,0.0010707802,0.000645608,0.0005441121,0.0005982273,0.00013808887],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00011275991,0.000019834748,0.9839289,0.000039671224,0.00004968763,0.00005366983,0.0018742415,0.000111577334,0.0014202863,0.00024890274,0.0010648496,0.011075487],"study_design_scores_gemma":[0.0000020149726,0.000007248988,0.99705887,0.00001364017,0.000015262884,0.000020104455,0.0015679196,0.0001222223,0.00009778698,0.000018250947,0.0010728217,0.0000039105876],"about_ca_topic_score_codex":0.99050385,"about_ca_topic_score_gemma":0.9979588,"teacher_disagreement_score":0.012363779,"about_ca_system_score_codex":0.012363779,"about_ca_system_score_gemma":0.013427358,"threshold_uncertainty_score":0.089705884},"labels":[],"label_agreement":null},{"id":"W3010503883","doi":"","title":"The impact of Labrador Sea temperature and salinity variability on density and the subpolar AMOC in a decadal prediction system","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Salinity; Climatology; Temperature salinity diagrams; Oceanography; Sea surface temperature; Environmental science; Geology","score_opus":0.005104164156304359,"score_gpt":0.2091309225071209,"score_spread":0.20402675835081654,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010503883","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.996905,0.00003431102,0.0019559034,0.00013592692,0.000014584018,0.0000042540987,0.00022456214,0.00010653511,0.00061880663],"genre_scores_gemma":[0.998926,0.000015897758,0.000709907,0.000013602028,0.0000038458707,0.0000028274715,0.00020807987,0.0000073799565,0.00011251712],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998561,0.0000464805,0.000013783366,0.000042605996,0.000017282957,0.000023715978],"domain_scores_gemma":[0.9994123,0.00021016863,0.00009667282,0.000068511355,0.00012088609,0.000091540205],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006798147,0.00033029693,0.00026802835,0.00015773739,0.00030238676,0.0008701435,0.00035716023,0.0003326991,0.0006461713],"category_scores_gemma":[0.001756963,0.0002361723,0.00025765022,0.00016743659,0.00022313323,0.00051502505,0.00042939957,0.0004747452,0.00010247422],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031001857,0.00013416976,0.2728835,0.000023610026,0.00014027521,0.000098192526,0.000093121926,0.70823985,0.0034929449,0.0007628649,0.00074853515,0.013072868],"study_design_scores_gemma":[0.00002418152,0.00004541786,0.054732088,0.0000052183264,0.000029227736,0.000010162955,0.00003748083,0.94348395,0.0012205257,0.00019523558,0.00020424603,0.000012343611],"about_ca_topic_score_codex":0.058609623,"about_ca_topic_score_gemma":0.038584374,"teacher_disagreement_score":0.058609623,"about_ca_system_score_codex":0.0005599996,"about_ca_system_score_gemma":0.00084851484,"threshold_uncertainty_score":0.116536975},"labels":[],"label_agreement":null},{"id":"W3010523804","doi":"","title":"Stress fields acting during lithosphere breakup above a melting mantle: A case example in West Greenland","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Lithosphere; Stress field; Breakup; Seismology; Tectonics; Extensional definition; Rift; Volcano; Mantle (geology); Paleontology","score_opus":0.026563898458015874,"score_gpt":0.2154654702928542,"score_spread":0.18890157183483833,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010523804","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99929833,0.00003585752,0.00012000249,0.000020543166,7.626796e-7,0.0000046582627,0.00015399238,0.000008501206,0.0003573783],"genre_scores_gemma":[0.99928635,0.000031430412,0.0003394896,0.0000073886627,8.553022e-7,0.0000019684287,0.00013858666,0.0000024596634,0.00019152573],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999492,0.0000048782795,0.000003605102,0.000012124489,0.000008766603,0.000021360062],"domain_scores_gemma":[0.9999187,0.000014428289,0.00002434803,0.000011028318,0.000012179874,0.000019363591],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009406003,0.00018768429,0.00014248022,0.00085503986,0.0003839539,0.00044163378,0.00023361605,0.00027882867,0.0005712675],"category_scores_gemma":[0.00015146378,0.00008563379,0.00018281632,0.001098549,0.00042802503,0.00018705738,0.00037525376,0.00012016111,0.000083339255],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002732261,0.00008561815,0.9251812,0.000065001565,0.00006708163,0.01568259,0.0030795885,0.0073488657,0.021133473,0.00044779532,0.0004961076,0.026139364],"study_design_scores_gemma":[0.000007473102,0.00004790959,0.9893463,0.000017884708,0.0000228433,0.0011483227,0.0019623279,0.004674629,0.0017559625,0.00015616056,0.0008504246,0.000009723682],"about_ca_topic_score_codex":0.13524182,"about_ca_topic_score_gemma":0.2895797,"teacher_disagreement_score":0.13524182,"about_ca_system_score_codex":0.00076281786,"about_ca_system_score_gemma":0.00038677786,"threshold_uncertainty_score":0.26890922},"labels":[],"label_agreement":null},{"id":"W3010537774","doi":"","title":"Improvement of a windgust parametrization with an application using the Canadian Regional Climate Model over Switzerland","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Meteorological Phenomena and Simulations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Parametrization (atmospheric modeling); Climate model; Environmental science; Climatology; Climate change; Econometrics; Meteorology; Mathematics; Geography; Physics; Geology","score_opus":0.0325147809659787,"score_gpt":0.2320899814834096,"score_spread":0.19957520051743088,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010537774","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.93821526,0.0004885482,0.027515426,0.00083467714,0.0003824653,0.00023135633,0.008916725,0.007436629,0.015978824],"genre_scores_gemma":[0.97177786,0.00016140206,0.020514518,0.000088448716,0.00004292297,0.00009041118,0.0043965466,0.0011943617,0.0017334743],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99972194,0.000064963366,0.000020047246,0.000068400754,0.00006105532,0.000063594016],"domain_scores_gemma":[0.99944085,0.00013098655,0.000029360812,0.00009288718,0.00024336894,0.00006258588],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00083217066,0.0012835364,0.00085639744,0.0008017561,0.001654083,0.0014215228,0.0017091174,0.0012132862,0.004733183],"category_scores_gemma":[0.0025932356,0.0007032637,0.0010111531,0.0017723335,0.00046120604,0.0010305812,0.0006481258,0.0013137094,0.000552923],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020428617,0.00014701107,0.0076507847,0.00007024233,0.000096281925,0.00011302614,0.00009322616,0.9718778,0.0026737587,0.0009919411,0.0029500707,0.013131509],"study_design_scores_gemma":[0.00024242626,0.000024916308,0.0067118127,0.000014244921,0.00004201274,0.000011030531,0.000046025023,0.98958427,0.0011946098,0.00018427381,0.0019000937,0.000044293418],"about_ca_topic_score_codex":0.7551573,"about_ca_topic_score_gemma":0.71825176,"teacher_disagreement_score":0.7551573,"about_ca_system_score_codex":0.0028916674,"about_ca_system_score_gemma":0.0050874264,"threshold_uncertainty_score":0.49256927},"labels":[],"label_agreement":null},{"id":"W3010561719","doi":"","title":"Three-dimensional geological modelling workflow for fractured hydrocarbon reservoirs in the Grosmont Basin, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Modeling and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Structural basin; Workflow; Petroleum engineering; Geomorphology; Basin modelling; Geochemistry; Hydrology (agriculture); Mining engineering; Sedimentary basin; Geotechnical engineering; Computer science","score_opus":0.03270921554747286,"score_gpt":0.2115979570895616,"score_spread":0.17888874154208875,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010561719","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.17874332,0.0006897335,0.38081753,0.0016132161,0.0001463945,0.0010688166,0.24719103,0.1252013,0.06452869],"genre_scores_gemma":[0.46093062,0.0012765457,0.3928338,0.00017699022,0.000016641185,0.0006658902,0.10940765,0.006693752,0.027998155],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99980384,0.000010969302,0.000021152695,0.000044863315,0.00007889067,0.000040302595],"domain_scores_gemma":[0.99948704,0.00007967038,0.000026851714,0.000066737965,0.00027463,0.000065030465],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038182462,0.0008495622,0.00046772935,0.0021463311,0.0018833643,0.002565695,0.0017044669,0.00055709924,0.0100534605],"category_scores_gemma":[0.0012512351,0.00069917657,0.0010648089,0.002503138,0.00047591716,0.00070342823,0.0010418727,0.0005416682,0.0020699282],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022507424,0.00016656575,0.047825087,0.00063184585,0.00029728803,0.0010713532,0.0033933544,0.5721387,0.011650028,0.02112711,0.13017187,0.2113016],"study_design_scores_gemma":[0.0000822108,0.00001455928,0.014472531,0.00020961477,0.000092758375,0.00018054091,0.0015167105,0.8085101,0.009790163,0.006708999,0.15823142,0.0001904077],"about_ca_topic_score_codex":0.9197808,"about_ca_topic_score_gemma":0.95718974,"teacher_disagreement_score":0.08021921,"about_ca_system_score_codex":0.006562568,"about_ca_system_score_gemma":0.020446185,"threshold_uncertainty_score":0.16138321},"labels":[],"label_agreement":null},{"id":"W3010734396","doi":"","title":"Submarine glaciated landscapes of central and northern British Columbia, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Physical geography; Submarine; Geology; Archaeology; Oceanography","score_opus":0.009806471189107983,"score_gpt":0.18389483559624922,"score_spread":0.17408836440714123,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010734396","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.986771,0.0010962671,0.000106217085,0.00034320808,0.000010482239,0.000032315238,0.0025757565,0.000024053172,0.0090407515],"genre_scores_gemma":[0.99357975,0.00065799797,0.00023149583,0.00006262437,0.000001841793,0.0000160737,0.0008039974,0.000010763138,0.004635364],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977833,0.000021488471,0.000010390174,0.00003684617,0.00003856588,0.000114328934],"domain_scores_gemma":[0.9993593,0.000053371583,0.00006000087,0.000024124965,0.00032341245,0.0001797315],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017093877,0.00022711266,0.0003323127,0.0021108896,0.003886525,0.0018612904,0.0007470271,0.00024392958,0.004194541],"category_scores_gemma":[0.0008604722,0.00021757782,0.00016528153,0.0047431844,0.000981537,0.00042235747,0.00096132193,0.00037482078,0.00029182044],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046211857,0.00012182407,0.8407406,0.0003946831,0.00018887458,0.0013820528,0.023061886,0.0016848295,0.0039951457,0.0026745356,0.016698958,0.10859445],"study_design_scores_gemma":[0.0000074130085,0.0000072248417,0.9814131,0.00006277593,0.000019996807,0.000106507396,0.011737582,0.00031459413,0.000088714354,0.000114950395,0.006113733,0.000013298762],"about_ca_topic_score_codex":0.9962115,"about_ca_topic_score_gemma":0.9994356,"teacher_disagreement_score":0.019153899,"about_ca_system_score_codex":0.019153899,"about_ca_system_score_gemma":0.016766794,"threshold_uncertainty_score":0.13897192},"labels":[],"label_agreement":null},{"id":"W3010751672","doi":"","title":"Simulating Ephemeral Gully Erosion Using AnnAGNPS in Agricultural Fields of Southern Ontario, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ephemeral key; Gully erosion; Erosion; Agriculture; Hydrology (agriculture); Geography; Environmental science; Water resource management; Geology; Archaeology; Ecology; Geomorphology; Geotechnical engineering","score_opus":0.023829285077635022,"score_gpt":0.21053597405413324,"score_spread":0.18670668897649823,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010751672","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9963021,0.00005232677,0.00047025632,0.000063135114,0.000006246735,0.00002273755,0.00056538515,0.0000714355,0.0024463106],"genre_scores_gemma":[0.9971084,0.000058035585,0.0009698387,0.0000140534685,0.000002035331,0.000013080735,0.00040058896,0.000014300163,0.0014197426],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99984837,0.00001471949,0.0000075712956,0.000033127257,0.00002721382,0.00006893496],"domain_scores_gemma":[0.999619,0.00009633523,0.000029217294,0.000021822658,0.00013536714,0.00009821259],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002021302,0.00051913416,0.00045887835,0.00045971898,0.0015364732,0.0012889673,0.0013492152,0.0010500321,0.002159365],"category_scores_gemma":[0.00088049006,0.0004978288,0.0005943278,0.0009092436,0.0009710126,0.00045752543,0.0005119355,0.0005623976,0.00017706597],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019545035,0.00017723958,0.076662496,0.00006201564,0.00006859605,0.00031921428,0.00029261797,0.91358155,0.0016837012,0.00046715513,0.0009683142,0.0055217096],"study_design_scores_gemma":[0.00012602331,0.000055907047,0.05470609,0.00001744824,0.000041841547,0.000026167094,0.0006204017,0.94247794,0.00050603104,0.00013073868,0.0012575919,0.00003383081],"about_ca_topic_score_codex":0.9795563,"about_ca_topic_score_gemma":0.9841717,"teacher_disagreement_score":0.020443678,"about_ca_system_score_codex":0.011998009,"about_ca_system_score_gemma":0.0103758555,"threshold_uncertainty_score":0.08705211},"labels":[],"label_agreement":null},{"id":"W3010768016","doi":"","title":"Phanerozoic uplift and subsidence history of the Canadian Shield and Hudson Bay intracratonic basin","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Bay; Phanerozoic; Subsidence; Shield; Structural basin; Paleontology; Oceanography; Cenozoic","score_opus":0.01999346747321353,"score_gpt":0.1821605224445696,"score_spread":0.16216705497135606,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010768016","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9946138,0.0003509884,0.00004201967,0.00009766019,0.000003277597,0.000004661062,0.0006249197,0.000005300052,0.00425725],"genre_scores_gemma":[0.9984761,0.00017225793,0.00005248368,0.000019080722,0.0000012028225,0.0000019014991,0.00028695166,0.000002704117,0.0009873516],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985874,0.0000064952706,0.0000058924657,0.000023241233,0.00003220276,0.000073441086],"domain_scores_gemma":[0.9995758,0.000021965217,0.000058259928,0.00001413319,0.00023106944,0.000098776436],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023035094,0.00013595684,0.0001854065,0.001844898,0.0022801633,0.00091768935,0.0004166309,0.00020426467,0.0035671399],"category_scores_gemma":[0.0007533252,0.0001679622,0.00012296761,0.0021989848,0.00085143134,0.000348826,0.0008017099,0.00024612583,0.00017772395],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000115976014,0.000020798449,0.9671336,0.000047553494,0.000051595598,0.00020682157,0.0039699897,0.0006471782,0.0028672507,0.0015985653,0.0013803755,0.021960435],"study_design_scores_gemma":[0.0000014686864,0.0000025621187,0.9971552,0.000008940583,0.000004957285,0.000020954072,0.0007853272,0.00010018323,0.000073565156,0.000021626856,0.0018229191,0.000002254002],"about_ca_topic_score_codex":0.9880944,"about_ca_topic_score_gemma":0.99710697,"teacher_disagreement_score":0.011905611,"about_ca_system_score_codex":0.01071442,"about_ca_system_score_gemma":0.010825937,"threshold_uncertainty_score":0.07773894},"labels":[],"label_agreement":null},{"id":"W3010927690","doi":"","title":"Seasonal trends in stable water isotopes and estimation of mean transit times for mesoscale catchments with mixed landuse in northeastern Ontario, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mesoscale meteorology; Environmental science; Hydrology (agriculture); Land use; Estimation; Stable isotope ratio; Physical geography; Geography; Meteorology; Geology","score_opus":0.010232358739194775,"score_gpt":0.19769935778753384,"score_spread":0.18746699904833905,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010927690","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9978758,0.000099005716,0.00007571467,0.000074083015,0.000002399319,0.000010125344,0.0010884986,0.0000058346313,0.00076862023],"genre_scores_gemma":[0.99786985,0.000098958866,0.00014128641,0.000018185889,0.0000016711138,0.000006397066,0.00067096675,0.0000035900375,0.0011891044],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996049,0.000028152988,0.000026865126,0.00008160014,0.000110925925,0.00014765818],"domain_scores_gemma":[0.99849594,0.00012687084,0.00026493825,0.000043146247,0.00072698423,0.00034201887],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036318458,0.00020505891,0.00024922588,0.0012085118,0.0018266559,0.0010982639,0.0007826258,0.0002516499,0.0010358415],"category_scores_gemma":[0.0012473287,0.0002808095,0.00025401468,0.0024860706,0.0008546925,0.00039221955,0.00061360665,0.00034808533,0.00015670613],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008612546,0.000026733349,0.9919961,0.000015097329,0.00003559475,0.000087207845,0.0021082547,0.00023166816,0.00077523896,0.000090306574,0.00064008654,0.0039074807],"study_design_scores_gemma":[0.0000024047795,0.000004928714,0.9979279,0.0000040419695,0.0000066518387,0.0000152018065,0.0013063533,0.00022491909,0.000051667932,0.000008342177,0.00044381618,0.0000037981074],"about_ca_topic_score_codex":0.99483716,"about_ca_topic_score_gemma":0.9983725,"teacher_disagreement_score":0.019488987,"about_ca_system_score_codex":0.019488987,"about_ca_system_score_gemma":0.012790452,"threshold_uncertainty_score":0.1414032},"labels":[],"label_agreement":null},{"id":"W3010959898","doi":"","title":"On the development of homogenized hourly surface wind speeds data for Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Wind and Air Flow Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meteorology; Environmental science; Climatology; Wind speed; Atmospheric sciences; Geography; Geology","score_opus":0.03321563987710362,"score_gpt":0.2398342612776764,"score_spread":0.2066186214005728,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3010959898","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9097847,0.00025101996,0.010789538,0.0004284535,0.00006455424,0.00023672936,0.05991776,0.0009257217,0.01760159],"genre_scores_gemma":[0.9333425,0.00026753117,0.022377968,0.00007192048,0.000012118101,0.00009572389,0.038546536,0.00021077027,0.0050748237],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99950886,0.00003994233,0.00002721914,0.0000573301,0.00026442762,0.00010235335],"domain_scores_gemma":[0.99701595,0.00022175521,0.00010323813,0.000196875,0.002316679,0.00014548944],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00077440194,0.00033802434,0.00027186857,0.0013273566,0.0012781663,0.00094587094,0.0009323846,0.00034375096,0.0025224893],"category_scores_gemma":[0.0035837626,0.00032618284,0.00032561243,0.0029352226,0.00023912123,0.0005211157,0.0003490311,0.0004846289,0.00061561854],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004989412,0.0004142963,0.40334734,0.00026891087,0.00019355462,0.00044096733,0.00097116805,0.3680042,0.011711986,0.00775634,0.035735656,0.17065664],"study_design_scores_gemma":[0.00012476085,0.00006292033,0.66938514,0.000107466396,0.000084819934,0.00006144848,0.0008307529,0.28048483,0.010728884,0.00063361926,0.03739654,0.00009880838],"about_ca_topic_score_codex":0.9864516,"about_ca_topic_score_gemma":0.9899742,"teacher_disagreement_score":0.013548374,"about_ca_system_score_codex":0.008713888,"about_ca_system_score_gemma":0.021581084,"threshold_uncertainty_score":0.06322396},"labels":[],"label_agreement":null},{"id":"W3011040854","doi":"","title":"Continuous high-frequency ocean data from cabled observatories: A case study from Ocean Networks Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Environmental Monitoring and Data Management","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Oceanography; Remote sensing","score_opus":0.020343813081793692,"score_gpt":0.19962373153151847,"score_spread":0.17927991844972477,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011040854","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9877291,0.00034085423,0.0012477421,0.0011973944,0.000017249813,0.0000869242,0.0025958286,0.00007093288,0.0067140777],"genre_scores_gemma":[0.9904282,0.00039680378,0.0038089803,0.0001409365,0.000012744866,0.000017126538,0.0026868337,0.000043865308,0.0024645661],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9982132,0.00023960572,0.00008418391,0.00017181117,0.0008939969,0.00039726298],"domain_scores_gemma":[0.9912314,0.0031093238,0.00060197315,0.00064055395,0.0038132255,0.00060349674],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0018104721,0.000321496,0.0002179497,0.001149692,0.0023338234,0.0022136664,0.0011885354,0.0011399596,0.0007828727],"category_scores_gemma":[0.008256407,0.00025389605,0.0002658057,0.004554866,0.0012080756,0.001088429,0.0009791421,0.0006625901,0.00015317222],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003241181,0.00035104575,0.8553757,0.00032460992,0.0001866346,0.011291001,0.016970975,0.013992009,0.0062483465,0.0032905098,0.012765666,0.07887935],"study_design_scores_gemma":[0.00007902242,0.00013167874,0.8605729,0.00025673094,0.00021788702,0.0022318184,0.05696833,0.030099215,0.0044467244,0.0008672565,0.044005577,0.00012290251],"about_ca_topic_score_codex":0.9721566,"about_ca_topic_score_gemma":0.9842479,"teacher_disagreement_score":0.027843416,"about_ca_system_score_codex":0.011883861,"about_ca_system_score_gemma":0.014635035,"threshold_uncertainty_score":0.08622378},"labels":[],"label_agreement":null},{"id":"W3011115431","doi":"","title":"Evaluation and improvement of high-resolution models for regional oceans around Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Remote sensing; Environmental science; Geology","score_opus":0.021321051629938425,"score_gpt":0.22558171458501272,"score_spread":0.2042606629550743,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011115431","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9768752,0.00032525783,0.011354699,0.00083454093,0.00011650947,0.00017980166,0.0030454155,0.0024878343,0.0047807964],"genre_scores_gemma":[0.98577744,0.00009278961,0.011298177,0.000066566936,0.000012827657,0.000049220398,0.0018241055,0.0001337125,0.0007451959],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99935323,0.00019873332,0.000055908866,0.00012689806,0.00016760755,0.000097653174],"domain_scores_gemma":[0.99647045,0.0011679938,0.00016875994,0.00034273698,0.001594995,0.00025503046],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002593561,0.0011861987,0.0007334292,0.0006081886,0.0014458438,0.0016615338,0.0025757635,0.001352047,0.0017808268],"category_scores_gemma":[0.0077557643,0.0006941179,0.0008388127,0.0007238011,0.00065489067,0.0012399406,0.000815465,0.0009833552,0.00032057596],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025489804,0.00027247696,0.02173431,0.000054991197,0.00012007449,0.00008519519,0.00008639812,0.96222806,0.002067815,0.00042266902,0.0011715015,0.011501576],"study_design_scores_gemma":[0.00012065789,0.000042266336,0.0035775895,0.000007207227,0.00003652224,0.0000073038764,0.000057573558,0.9940376,0.0015159553,0.00007103584,0.0005105748,0.000015697926],"about_ca_topic_score_codex":0.7659989,"about_ca_topic_score_gemma":0.6607255,"teacher_disagreement_score":0.2340011,"about_ca_system_score_codex":0.0061667846,"about_ca_system_score_gemma":0.0085685365,"threshold_uncertainty_score":0.47075832},"labels":[],"label_agreement":null},{"id":"W3011163949","doi":"","title":"Canada's National Building Stone: Tyndall Stone from Manitoba","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Archaeology and ancient environmental studies","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archaeology; Geography; History","score_opus":0.010590715905000051,"score_gpt":0.18577162483588727,"score_spread":0.17518090893088722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011163949","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8620323,0.007896177,0.0011877979,0.0055556144,0.00027350683,0.00023211606,0.0037882114,0.00012580228,0.11890833],"genre_scores_gemma":[0.885889,0.004563815,0.0028899391,0.00081987324,0.000028519913,0.00005835906,0.0014159947,0.0001246741,0.10420983],"study_design_codex":"qualitative","study_design_gemma":"not_applicable","domain_scores_codex":[0.9996111,0.00003225631,0.000013047079,0.000051181,0.00010972067,0.00018282358],"domain_scores_gemma":[0.99954176,0.000036191675,0.00003568301,0.00002435794,0.00019913644,0.00016299423],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035750482,0.00048522497,0.00046830086,0.0023109831,0.017093936,0.0028784643,0.0014103183,0.00084627094,0.013813236],"category_scores_gemma":[0.0007046248,0.00048095692,0.0002642084,0.0075642043,0.0025098154,0.0005938567,0.0020798023,0.0012990253,0.0010522142],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000664759,0.00021774098,0.2506852,0.0016537561,0.00018925585,0.020556882,0.3020667,0.0012639854,0.009423362,0.03595418,0.101539254,0.27578485],"study_design_scores_gemma":[0.00002256105,0.00006439623,0.38056698,0.00069741334,0.0000842907,0.0035989627,0.23901695,0.00035069886,0.0011360585,0.00090531167,0.37346888,0.00008751991],"about_ca_topic_score_codex":0.9926997,"about_ca_topic_score_gemma":0.99952674,"teacher_disagreement_score":0.026533827,"about_ca_system_score_codex":0.026533827,"about_ca_system_score_gemma":0.058472168,"threshold_uncertainty_score":0.19251728},"labels":[],"label_agreement":null},{"id":"W3011305607","doi":"","title":"Dissolved organic matter influences Fe-binding ligand availability for cyanobacteria in oligotrophic Ontario lakes","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Aquatic Ecosystems and Phytoplankton Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Cyanobacteria; Environmental chemistry; Dissolved organic carbon; Organic matter; Environmental science; Chemistry; Ecology; Biology; Bacteria","score_opus":0.008468808224502017,"score_gpt":0.20306197585530736,"score_spread":0.19459316763080534,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011305607","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994042,0.000036298887,0.0000313955,0.000023763429,8.49364e-7,0.0000020349996,0.000045607143,0.0000014717378,0.00045441298],"genre_scores_gemma":[0.99900824,0.000041688083,0.00008795053,0.000018602168,6.392431e-7,0.0000025256554,0.0000559605,0.0000020561436,0.00078240637],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998659,0.000013399518,0.0000066781686,0.000033650424,0.0000347451,0.000045598368],"domain_scores_gemma":[0.99968314,0.00005651851,0.00007102381,0.000008826097,0.000093170645,0.00008731913],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013615041,0.00014858834,0.00019061477,0.00027142855,0.001481027,0.00092181517,0.00030422353,0.00026202662,0.0011942725],"category_scores_gemma":[0.0006493584,0.00029846138,0.00012949987,0.00027959212,0.0005680732,0.00040788116,0.00057756715,0.00024216356,0.00011258407],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001649713,0.0000809101,0.69758195,0.00014960278,0.00010677954,0.00033288638,0.0059638126,0.00095191726,0.28493622,0.0004653094,0.00054329564,0.00723761],"study_design_scores_gemma":[0.000015761027,0.00007472208,0.9879095,0.000007784845,0.000038329756,0.00004486796,0.0027128388,0.0012756115,0.00675062,0.000079821795,0.0010789492,0.000011198487],"about_ca_topic_score_codex":0.7998633,"about_ca_topic_score_gemma":0.92808205,"teacher_disagreement_score":0.20013672,"about_ca_system_score_codex":0.007972065,"about_ca_system_score_gemma":0.003318669,"threshold_uncertainty_score":0.4026307},"labels":[],"label_agreement":null},{"id":"W3011480650","doi":"","title":"Fracturing and carbonate mineralization in Paleozoic carbonates in Southwestern Ontario, Canada: origin and evolution of basinal fluids","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Paleozoic; Carbonate; Mineralization (soil science); Carbonate rock; Geochemistry; Paleontology; Sedimentary rock; Chemistry","score_opus":0.005905285382018137,"score_gpt":0.1790769431253061,"score_spread":0.17317165774328794,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011480650","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99747306,0.00034913773,0.000078272235,0.00006988897,0.0000018116982,0.000008163772,0.0005126841,0.0000044242142,0.0015025103],"genre_scores_gemma":[0.9981224,0.0002813112,0.00013510002,0.0000149906555,0.0000011838139,0.000003386126,0.00020057181,0.0000045616616,0.0012364874],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981445,0.00000858429,0.000009399782,0.000037369453,0.000059249236,0.00007091442],"domain_scores_gemma":[0.99918944,0.00007071569,0.0001668311,0.00001959633,0.0004474371,0.00010597404],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021175286,0.00020566043,0.00017077912,0.0018066439,0.002651063,0.0013982487,0.0006857936,0.0003623399,0.0019766903],"category_scores_gemma":[0.00097215624,0.00027597367,0.00020556123,0.003089639,0.0012807967,0.00047781307,0.00057061255,0.00031087032,0.0001605648],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000090627116,0.000016682006,0.98049265,0.000047756414,0.00003622695,0.00013401627,0.004642709,0.00036058348,0.0035363585,0.00048163455,0.00027273773,0.009887944],"study_design_scores_gemma":[0.0000013358517,0.0000037543111,0.99756396,0.000010002639,0.0000061027404,0.000030299787,0.0012915295,0.00017596138,0.0001993744,0.00001933504,0.0006949866,0.0000033504934],"about_ca_topic_score_codex":0.99302095,"about_ca_topic_score_gemma":0.9981812,"teacher_disagreement_score":0.018046012,"about_ca_system_score_codex":0.018046012,"about_ca_system_score_gemma":0.0183962,"threshold_uncertainty_score":0.13093358},"labels":[],"label_agreement":null},{"id":"W3011570457","doi":"","title":"Hydrological role of large icings within glacierized Sub-Arctic watershed: case study in Upper Duke River valley, Yukon, Canada.","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Watershed; Arctic; Physical geography; Hydrology (agriculture); Geography; Environmental science; Geology; Oceanography","score_opus":0.016998128740727196,"score_gpt":0.22674642429994663,"score_spread":0.20974829555921942,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011570457","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9983053,0.00005724938,0.000049688726,0.00010657421,0.0000024466117,0.000012489344,0.00064066023,0.000009389622,0.00081618153],"genre_scores_gemma":[0.99936205,0.000059475427,0.00006501713,0.000014482552,0.0000012472678,0.000003352783,0.00020808974,0.0000016268324,0.000284759],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982786,0.000021546339,0.000007230732,0.000026314567,0.000023433427,0.00009351781],"domain_scores_gemma":[0.99957603,0.000065245426,0.000055958993,0.0000143566085,0.00011865039,0.00016963125],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016606461,0.00017345646,0.00019842414,0.00062390784,0.0013871157,0.0008907087,0.0007170854,0.00044972057,0.0008428728],"category_scores_gemma":[0.00059757876,0.000108057706,0.0001841893,0.0015338872,0.00087129173,0.00028547304,0.0005969165,0.0003072397,0.000060107803],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015668654,0.00011622066,0.9757975,0.000055092863,0.00007757404,0.0023760318,0.0032801419,0.0049147326,0.0018751199,0.0005853522,0.0022781992,0.008487339],"study_design_scores_gemma":[0.0000075772846,0.000016612204,0.9841361,0.000016150774,0.000027749456,0.00014068234,0.010406652,0.0038933875,0.00019146943,0.00008172534,0.0010691668,0.000012727378],"about_ca_topic_score_codex":0.9746542,"about_ca_topic_score_gemma":0.98865336,"teacher_disagreement_score":0.025345802,"about_ca_system_score_codex":0.00974718,"about_ca_system_score_gemma":0.010920071,"threshold_uncertainty_score":0.07072103},"labels":[],"label_agreement":null},{"id":"W3011723469","doi":"","title":"High frequency observations of temperature and oxygen in a large Canadian lake over two winters reveal differences between a severe and a mild winter.","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Environmental science; Climatology; Atmospheric sciences; Oxygen; Meteorology; Geography; Physical geography; Geology; Chemistry","score_opus":0.01763901905873066,"score_gpt":0.23945733454086832,"score_spread":0.22181831548213765,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011723469","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992079,0.00003398145,0.00006758766,0.000044889584,0.000002566487,0.0000032871264,0.00018142854,0.000005804472,0.00045256628],"genre_scores_gemma":[0.9994349,0.000022665196,0.000088583016,0.000016898723,0.0000024533379,0.0000025912188,0.00017079384,0.0000016917854,0.000259382],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985147,0.000008443832,0.000005061959,0.000025954863,0.000043733242,0.00006538563],"domain_scores_gemma":[0.9997178,0.000022151387,0.000048069047,0.000012051301,0.00009884437,0.00010118241],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017088467,0.000153451,0.00017329016,0.0004854454,0.0017619747,0.0005257013,0.00035734364,0.00036790225,0.0005909565],"category_scores_gemma":[0.0004883796,0.0001323859,0.00012352526,0.00070936617,0.0005465246,0.00022587222,0.00040149805,0.00033390464,0.000077694574],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025732745,0.00007089731,0.97688293,0.00002133353,0.000076716344,0.00018621859,0.001381545,0.00027010334,0.012509175,0.000100246085,0.00078614295,0.0074574044],"study_design_scores_gemma":[0.0000019145334,0.000008571364,0.99908495,0.0000015363416,0.000005166007,0.000015383363,0.00039688463,0.00014624643,0.00008793471,0.000009711163,0.0002388618,0.0000027707],"about_ca_topic_score_codex":0.88656425,"about_ca_topic_score_gemma":0.96566373,"teacher_disagreement_score":0.113435745,"about_ca_system_score_codex":0.0033664014,"about_ca_system_score_gemma":0.0030614415,"threshold_uncertainty_score":0.22820753},"labels":[],"label_agreement":null},{"id":"W3011758254","doi":"","title":"Eddy Seeding in the Labrador Sea: a Submerged Autonomous Launching Platform (SALP) Application","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Underwater Vehicles and Communication Systems","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Seeding; Geology; Remote sensing; Engineering; Aerospace engineering","score_opus":0.012977747546867589,"score_gpt":0.20407127001496433,"score_spread":0.19109352246809674,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011758254","genre_codex":"empirical","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9749433,0.000053641434,0.014722571,0.000079840866,0.00002625836,0.00006227912,0.00014383272,0.0016347175,0.0083335405],"genre_scores_gemma":[0.9812983,0.000042361004,0.013568629,0.000018845722,0.000004491954,0.000016696591,0.00015564053,0.00007271672,0.0048222896],"study_design_codex":"bench_or_experimental","study_design_gemma":"not_applicable","domain_scores_codex":[0.99991894,0.0000089974665,0.0000024023727,0.000016103448,0.000034674977,0.000018894181],"domain_scores_gemma":[0.99989223,0.000019551888,0.000008072686,0.000017566023,0.000026070264,0.000036425216],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014581904,0.00029788885,0.0002269871,0.00015266945,0.0004048113,0.00035071565,0.00034161177,0.0003895164,0.0014252675],"category_scores_gemma":[0.00016784565,0.0000880751,0.00017660431,0.0002032765,0.00015869536,0.0002600751,0.00045299783,0.00026297793,0.00040392816],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0012866979,0.0005311959,0.029129619,0.0003034504,0.00007450562,0.0033709607,0.001618321,0.08448263,0.5830573,0.0015801423,0.005558016,0.28900728],"study_design_scores_gemma":[0.00026539122,0.0035130372,0.084347464,0.00004414047,0.000143828,0.0009747145,0.0016730715,0.55273825,0.32752058,0.000695279,0.027974399,0.00010991494],"about_ca_topic_score_codex":0.0073612565,"about_ca_topic_score_gemma":0.014679572,"teacher_disagreement_score":0.99263877,"about_ca_system_score_codex":0.00024247223,"about_ca_system_score_gemma":0.00048630292,"threshold_uncertainty_score":0.014636815},"labels":[],"label_agreement":null},{"id":"W3011898197","doi":"","title":"Resilience of peatland-forest landscapes in the Canadian Boreal Plains","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Boreal; Taiga; Geography; Resilience (materials science); Physical geography; Forestry; Environmental science; Archaeology","score_opus":0.0050812388092938785,"score_gpt":0.2027226602529293,"score_spread":0.19764142144363542,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3011898197","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99871624,0.00007750855,0.000037263704,0.000056178902,0.0000010880765,0.000002880731,0.0001098244,0.0000035650937,0.0009955959],"genre_scores_gemma":[0.99971884,0.00003462432,0.00002463049,0.000004984421,4.390788e-7,0.0000011425652,0.00005286013,9.170802e-7,0.00016152939],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996363,0.00003082285,0.000009222434,0.00005574738,0.00004216505,0.00022572478],"domain_scores_gemma":[0.99943227,0.000051242267,0.00011701183,0.000036421832,0.00017623711,0.00018678083],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029597883,0.00016111386,0.0002687146,0.0014727854,0.0019437568,0.0013109298,0.0005274538,0.00021242545,0.001247438],"category_scores_gemma":[0.0011296258,0.000134227,0.00018461884,0.0012975018,0.0014829647,0.000597482,0.0010648754,0.0002265283,0.000062188046],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028616202,0.00007981377,0.95975226,0.00006005213,0.00017687205,0.00037716207,0.006966698,0.004986144,0.0042080325,0.00340397,0.0011280471,0.01857467],"study_design_scores_gemma":[0.0000016165912,0.0000072365374,0.99592185,0.000008172146,0.000009100384,0.000032702927,0.0024956272,0.0006452095,0.000043424363,0.00024302973,0.00058545935,0.0000065153226],"about_ca_topic_score_codex":0.9335712,"about_ca_topic_score_gemma":0.9851692,"teacher_disagreement_score":0.06642878,"about_ca_system_score_codex":0.00829988,"about_ca_system_score_gemma":0.0054404233,"threshold_uncertainty_score":0.13363993},"labels":[],"label_agreement":null},{"id":"W3012090893","doi":"","title":"Surface Buoyant Plumes from Melting Icebergs in the Labrador Sea","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Iceberg; Pycnocline; Geology; Plume; Oceanography; Thermohaline circulation; Hydrography; Sea ice; Water mass; Climatology; Meteorology; Geography","score_opus":0.009069935879876818,"score_gpt":0.19794691880184934,"score_spread":0.18887698292197252,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012090893","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99920756,0.00005346301,0.0000703224,0.000015703892,0.0000022812546,0.000005077061,0.00023471893,0.000026723666,0.0003841159],"genre_scores_gemma":[0.9983272,0.00006470701,0.00051232416,0.000020926589,0.0000052879573,0.000008573672,0.0007896728,0.000009076509,0.0002623317],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990153,0.0000051917923,0.000005797057,0.000021352485,0.000027820859,0.000038275615],"domain_scores_gemma":[0.999864,0.0000106830885,0.00005042353,0.000008310877,0.00003132893,0.000035226887],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014621697,0.00041625556,0.0003832646,0.001074251,0.000504744,0.0006156059,0.00045501566,0.00031695561,0.00040728628],"category_scores_gemma":[0.00019768275,0.00021142483,0.00030736715,0.0007508222,0.00026953054,0.00030541822,0.0005809125,0.000335174,0.00013014942],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007923577,0.00019317094,0.6593575,0.00012231067,0.00018133047,0.0014917693,0.002192022,0.0029224616,0.3070458,0.00014818856,0.00092893577,0.024624152],"study_design_scores_gemma":[0.000012987136,0.00012304424,0.9890469,0.000012139422,0.00003444481,0.00012882869,0.0005898463,0.002715294,0.0067321714,0.00002365908,0.00056283956,0.000017787539],"about_ca_topic_score_codex":0.05090078,"about_ca_topic_score_gemma":0.07494871,"teacher_disagreement_score":0.94909924,"about_ca_system_score_codex":0.00085494044,"about_ca_system_score_gemma":0.00050170725,"threshold_uncertainty_score":0.101209044},"labels":[],"label_agreement":null},{"id":"W3012303855","doi":"","title":"Seasonal variability of dissolved inorganic carbon and surface water pCO2 in the Scotian Shelf region of the Northwestern Atlantic","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Ocean Acidification Effects and Responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Bedford Institute of Oceanography; Dalhousie University","funders":"","keywords":"Hydrography; Alkalinity; Dissolved organic carbon; Oceanography; Environmental science; Total inorganic carbon; Mixed layer; Mooring; Surface water; Carbon fibers; Carbon cycle; Climatology; Geology; Carbon dioxide; Chemistry","score_opus":0.008176216340858616,"score_gpt":0.191955162120536,"score_spread":0.1837789457796774,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012303855","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999559,0.000040177612,0.000009952179,0.000010310486,0.0000012152923,0.000001271374,0.00016975653,0.0000013633883,0.00020700438],"genre_scores_gemma":[0.9996433,0.00002486655,0.00001803994,0.000005137726,0.0000010091479,9.165038e-7,0.00015969301,5.419298e-7,0.0001465902],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999311,0.00000607202,0.0000051361776,0.000018541668,0.000017160673,0.000022048993],"domain_scores_gemma":[0.99961084,0.00003776852,0.00008385468,0.000014259094,0.000149685,0.000103626924],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014280324,0.00011445304,0.00012635428,0.0003927207,0.0003106493,0.00038603286,0.00013075022,0.000115802664,0.00054224674],"category_scores_gemma":[0.0003873836,0.000096508695,0.0001078298,0.00045549084,0.0002834644,0.00009318049,0.0001813496,0.000090424626,0.000059254013],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001663136,0.000011180626,0.9882422,0.0000148494455,0.000042614887,0.00014781859,0.00023872653,0.0003196223,0.0087270755,0.00002249902,0.0001261897,0.0019410265],"study_design_scores_gemma":[0.0000011600252,0.0000042951706,0.99967647,8.8399827e-7,0.0000023869616,0.0000088843335,0.00006632495,0.000098233606,0.000074018004,0.0000015526035,0.00006489205,8.466053e-7],"about_ca_topic_score_codex":0.6999091,"about_ca_topic_score_gemma":0.8376808,"teacher_disagreement_score":0.3000909,"about_ca_system_score_codex":0.001836068,"about_ca_system_score_gemma":0.0012100021,"threshold_uncertainty_score":0.6037164},"labels":[],"label_agreement":null},{"id":"W3012314022","doi":"","title":"Constraining crustal structure through time: receiver function analysis in eastern Canada","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Modeling and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Receiver function; Geology; Function (biology); Remote sensing; Geodesy; Seismology; Lithosphere","score_opus":0.010257394392160175,"score_gpt":0.1831380591445749,"score_spread":0.17288066475241473,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012314022","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9938735,0.0004430295,0.0019957777,0.0002391351,0.0000086192185,0.000007896055,0.0014878394,0.000064708714,0.001879559],"genre_scores_gemma":[0.99554414,0.00023491208,0.0015574323,0.000022387812,0.0000025017016,0.00000317666,0.00078734144,0.00002134826,0.0018267538],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980706,0.00001774082,0.0000083247305,0.000045535806,0.000043409153,0.00007796326],"domain_scores_gemma":[0.99932337,0.000105153405,0.0000576717,0.000037473263,0.00038659436,0.00008980003],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00046064385,0.00039763536,0.00031279292,0.0009126024,0.0015226621,0.0013239438,0.001003674,0.0004376499,0.0014551661],"category_scores_gemma":[0.0014412963,0.0002726686,0.00038520206,0.0025038812,0.000562397,0.00036938483,0.00041168067,0.00045040785,0.00016889608],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035559983,0.00010234674,0.7594922,0.00009628276,0.00033856905,0.00054540124,0.0015095591,0.14642212,0.0062523466,0.0038819576,0.00407242,0.07693126],"study_design_scores_gemma":[0.000036019977,0.000018880472,0.7851455,0.00005607372,0.00016910252,0.0000869075,0.0016861307,0.2035344,0.0014962214,0.00086226204,0.0068305,0.000077974735],"about_ca_topic_score_codex":0.9972488,"about_ca_topic_score_gemma":0.9977247,"teacher_disagreement_score":0.01347147,"about_ca_system_score_codex":0.01347147,"about_ca_system_score_gemma":0.019997474,"threshold_uncertainty_score":0.097742796},"labels":[],"label_agreement":null},{"id":"W3012683884","doi":"","title":"Strong lateral variation of ground temperature revealed by a large network of boreholes in the Slave Geological Province of Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Borehole; Geology; Variation (astronomy); Paleontology","score_opus":0.017270249265801684,"score_gpt":0.21937713329401218,"score_spread":0.2021068840282105,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012683884","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987025,0.000049685466,0.000113018315,0.000079653946,0.000002812866,0.0000051511824,0.00032521924,0.000007655888,0.0007141666],"genre_scores_gemma":[0.9994931,0.000027415426,0.0000852409,0.000012762434,0.0000011262244,0.000001940123,0.00014695224,0.000002080662,0.00022935966],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996346,0.000028874983,0.000013970142,0.00007635426,0.00007859656,0.00016758793],"domain_scores_gemma":[0.99925476,0.000078402845,0.00015985228,0.000043544096,0.00030904508,0.0001543681],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002640243,0.00013104992,0.00022062635,0.0012187643,0.001582693,0.00094032905,0.0006778506,0.0003817531,0.0007427736],"category_scores_gemma":[0.00095898815,0.00021514257,0.00019163145,0.0024290448,0.0012994368,0.00033652165,0.00091110327,0.00027260336,0.00008361946],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00004381637,0.0000237118,0.9889685,0.000014818666,0.00004126071,0.00027108265,0.0022256381,0.00040840506,0.0029583145,0.0002343357,0.00053881406,0.0042713424],"study_design_scores_gemma":[0.0000017529616,0.0000032293042,0.99694437,0.0000051370507,0.0000065693293,0.00003951858,0.0019212754,0.000470184,0.00006947961,0.000027498343,0.0005050412,0.000005891691],"about_ca_topic_score_codex":0.97091025,"about_ca_topic_score_gemma":0.9898324,"teacher_disagreement_score":0.029089749,"about_ca_system_score_codex":0.00484967,"about_ca_system_score_gemma":0.00822357,"threshold_uncertainty_score":0.058522046},"labels":[],"label_agreement":null},{"id":"W3012749953","doi":"","title":"The fine-scale spatial distribution of surface moisture content in Canadian and Irish peatlands","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Environmental science; Spatial distribution; Irish; Scale (ratio); Water content; Sphagnum; Hydrology (agriculture); Physical geography; Soil science; Geography; Geology; Remote sensing; Archaeology; Cartography","score_opus":0.00717011936378095,"score_gpt":0.19702704761897777,"score_spread":0.18985692825519682,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012749953","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9981483,0.00006942891,0.000060814684,0.00002610451,0.0000014985077,0.0000028439285,0.00035697178,0.000005851952,0.0013281691],"genre_scores_gemma":[0.9991079,0.00003384594,0.00006780084,0.000010070144,0.0000010834098,0.0000030916704,0.00028209615,0.0000037758716,0.00049032073],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996592,0.000024679099,0.00001455227,0.00007585173,0.000050905015,0.00017483663],"domain_scores_gemma":[0.9989059,0.00021930966,0.00014048057,0.00005940322,0.00046778246,0.00020714532],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00043700793,0.000115118084,0.00019816379,0.0015599026,0.0010545639,0.0010895722,0.00047801694,0.000272757,0.0012755675],"category_scores_gemma":[0.001338423,0.00017845651,0.0002078296,0.0015115091,0.0010572266,0.0004295216,0.0007791555,0.00029629053,0.00019490825],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031849573,0.000028787701,0.9731802,0.00003346375,0.00006406871,0.00013066926,0.0038147313,0.00079951354,0.0062717623,0.00031897175,0.00081782386,0.014221613],"study_design_scores_gemma":[8.0016105e-7,0.0000021055193,0.9988213,0.0000031239945,0.0000030326937,0.000009994905,0.0007604133,0.00011196138,0.000046999983,0.000010013442,0.00022627975,0.0000040100726],"about_ca_topic_score_codex":0.94031876,"about_ca_topic_score_gemma":0.98012793,"teacher_disagreement_score":0.059681237,"about_ca_system_score_codex":0.0053584324,"about_ca_system_score_gemma":0.002845624,"threshold_uncertainty_score":0.12006539},"labels":[],"label_agreement":null},{"id":"W3012797362","doi":"","title":"Does the extension by brittle crustal faulting explain the total crustal thinning at conjugate rifted margins? The Iberia-Newfoundland conjugate margins example","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geophysical Studies Worldwide","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Conjugate; Extension (predicate logic); Thinning; Seismology; Geography; Mathematics","score_opus":0.00840842580711027,"score_gpt":0.18574520412239207,"score_spread":0.1773367783152818,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012797362","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.92890424,0.003391016,0.0015516826,0.0065076905,0.00009864557,0.000016872227,0.0012260283,0.000067019864,0.058236796],"genre_scores_gemma":[0.9935776,0.00072499143,0.00050383253,0.00025724145,0.00002554172,0.000002339658,0.0001867759,0.000012559485,0.0047089634],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998896,0.000011225822,0.0000046924897,0.000021174756,0.000009737726,0.00006349511],"domain_scores_gemma":[0.9995534,0.0000696095,0.000115066076,0.00007097925,0.00012169498,0.000069256705],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004156885,0.00039250887,0.00035205644,0.00075204275,0.0009018239,0.0012591106,0.00057154876,0.00047860353,0.006676308],"category_scores_gemma":[0.0010537223,0.00014756777,0.00051159353,0.0010117457,0.00088261225,0.00089112803,0.0007359715,0.0005374941,0.00042432078],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008962505,0.00010297797,0.833298,0.00023868681,0.00076274516,0.0025937033,0.00088298676,0.023998538,0.0053061172,0.027983086,0.013546207,0.09039073],"study_design_scores_gemma":[0.000087179396,0.00005244027,0.95755064,0.000116888434,0.00035737958,0.00031062588,0.0030234486,0.0141893355,0.0007262563,0.008105635,0.015442444,0.000037792677],"about_ca_topic_score_codex":0.6706125,"about_ca_topic_score_gemma":0.8240869,"teacher_disagreement_score":0.3293875,"about_ca_system_score_codex":0.0035067413,"about_ca_system_score_gemma":0.00229775,"threshold_uncertainty_score":0.66265464},"labels":[],"label_agreement":null},{"id":"W3012924198","doi":"","title":"2D and 3D reflection seismic investigations in the Brunswick No. 6 area, Bathurst Mining Camp, New Brunswick, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Modeling and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Reflection (computer programming); Archaeology; Mining engineering; Seismology; Geography","score_opus":0.030252296546086358,"score_gpt":0.2190652882350098,"score_spread":0.18881299168892343,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3012924198","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9878335,0.00046895284,0.00044807317,0.00026621413,0.000014746807,0.00009084131,0.0037286894,0.00003470347,0.007114344],"genre_scores_gemma":[0.9899014,0.00045982315,0.0018719786,0.000059534574,0.0000037873651,0.000051379695,0.0017381909,0.000020280822,0.0058936896],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99954176,0.000026885471,0.000026823136,0.00006932832,0.00018452131,0.00015070924],"domain_scores_gemma":[0.99937445,0.000043961587,0.00005928459,0.000022407432,0.00041734558,0.00008254841],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024107553,0.00034811656,0.00034469427,0.0022990273,0.0026162995,0.0011793706,0.0013327593,0.00046667564,0.0023438837],"category_scores_gemma":[0.0009078784,0.0004827867,0.00025400645,0.005459725,0.0009683117,0.0004019762,0.0009808686,0.00050806155,0.00042919067],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00037212516,0.00023430058,0.862174,0.00040938647,0.0001264205,0.002553381,0.014574549,0.0106181,0.015694946,0.0011963838,0.006961903,0.0850845],"study_design_scores_gemma":[0.000020164323,0.000020487803,0.9813153,0.00006899214,0.00001639043,0.00014471204,0.00994643,0.0031107191,0.0005456929,0.00006575916,0.004708828,0.00003656793],"about_ca_topic_score_codex":0.9943526,"about_ca_topic_score_gemma":0.99883956,"teacher_disagreement_score":0.01541902,"about_ca_system_score_codex":0.01541902,"about_ca_system_score_gemma":0.022566656,"threshold_uncertainty_score":0.11187333},"labels":[],"label_agreement":null},{"id":"W3013120621","doi":"","title":"Spreading of Labrador Sea Water in the vicinity of the Mid-Atlantic Ridge in the central subpolar North Atlantic","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mid-Atlantic Ridge; North Atlantic Deep Water; Ridge; Oceanography; Geology; Gulf Stream; Deep water; Paleontology","score_opus":0.02376220053204674,"score_gpt":0.19897197840328493,"score_spread":0.17520977787123818,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013120621","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99899894,0.00006898908,0.000011855435,0.000040653435,0.000003285624,0.0000020873945,0.0000786252,0.0000022738502,0.0007932276],"genre_scores_gemma":[0.99957925,0.000049298906,0.000030022682,0.000018106728,0.0000031026746,0.0000015447846,0.000087843495,9.612884e-7,0.00022980465],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986124,0.000026973537,0.000012646945,0.00002902882,0.000021882512,0.000048204216],"domain_scores_gemma":[0.9994822,0.00006375497,0.00016339663,0.0000211317,0.00014172809,0.00012774357],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024882675,0.00011247913,0.00023420481,0.00084907084,0.00078199065,0.001100656,0.00034834063,0.00035512296,0.00095149525],"category_scores_gemma":[0.00075129163,0.00012251396,0.00019014934,0.00089764514,0.0005053906,0.0003516132,0.00065777305,0.0001934115,0.00015168912],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000232065,0.00002603397,0.98966837,0.000028899733,0.000052944986,0.00033268353,0.0015659354,0.00025041937,0.0026887557,0.0001159893,0.00024385721,0.004794071],"study_design_scores_gemma":[0.0000033901551,0.000013946587,0.9978073,0.0000076834685,0.000010396901,0.00002937946,0.0014381858,0.00018615837,0.00007163696,0.000008860671,0.0004201169,0.0000029217217],"about_ca_topic_score_codex":0.37262025,"about_ca_topic_score_gemma":0.635845,"teacher_disagreement_score":0.37262025,"about_ca_system_score_codex":0.0014298162,"about_ca_system_score_gemma":0.0013534997,"threshold_uncertainty_score":0.7409027},"labels":[],"label_agreement":null},{"id":"W3013263788","doi":"","title":"Enigmatic mounds in 'Subglacial Meltwater Corridors' on the Canadian Shield: a record of channelised, subglacial meltwater drainage during Laurentide deglaciation","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meltwater; Deglaciation; Geology; Drainage; Geomorphology; Hydrology (agriculture); Glacial period; Geotechnical engineering","score_opus":0.02219662231398881,"score_gpt":0.23848819076224995,"score_spread":0.21629156844826114,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013263788","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99512213,0.00032067407,0.00016935522,0.00016764992,0.0000071715153,0.000007772441,0.0005554395,0.000016190832,0.003633701],"genre_scores_gemma":[0.9985599,0.00010870017,0.00022797087,0.000044572404,0.0000032911469,0.000003412884,0.0002560956,0.0000071340937,0.0007888921],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999798,0.0000073030187,0.0000051271845,0.00004414149,0.000051727002,0.00009375889],"domain_scores_gemma":[0.999529,0.000037011818,0.000117839336,0.000029595985,0.0001926642,0.000093900264],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026215706,0.00016161482,0.00023429036,0.0016452592,0.0039050444,0.0011596545,0.0007958729,0.00046166132,0.0021141798],"category_scores_gemma":[0.0006524337,0.0002162721,0.00014404104,0.0022346294,0.0032755318,0.000412473,0.0010696943,0.00048054243,0.00015921646],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001938496,0.00003068975,0.88788164,0.00010195934,0.000080811384,0.0005285405,0.05230404,0.0003343086,0.014193821,0.0018056651,0.0032681345,0.039276466],"study_design_scores_gemma":[0.000001440044,0.0000052111113,0.98820764,0.000019912248,0.00000839981,0.00008825837,0.0063682348,0.00006261226,0.0002519066,0.000050929237,0.004928371,0.0000070311003],"about_ca_topic_score_codex":0.9542583,"about_ca_topic_score_gemma":0.9917184,"teacher_disagreement_score":0.045741677,"about_ca_system_score_codex":0.0066377167,"about_ca_system_score_gemma":0.007476355,"threshold_uncertainty_score":0.09202206},"labels":[],"label_agreement":null},{"id":"W3013287743","doi":"","title":"Glacier-volcano Interactions Provide Insight on Glacial History and Geomorphic Evolution, Ft. Selkirk, Yukon Territory, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacial period; Glacier; Geology; Volcano; Physical geography; Earth science; Geomorphology; Paleontology; Geography","score_opus":0.01571925522731791,"score_gpt":0.18919695549681184,"score_spread":0.17347770026949394,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013287743","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97104037,0.0019576466,0.00027598118,0.00097579084,0.000020506803,0.00001920509,0.008467706,0.00005913396,0.017183725],"genre_scores_gemma":[0.9889859,0.0008270487,0.00042470527,0.00004204187,0.0000036990089,0.0000058470173,0.0020386174,0.000024523928,0.0076476773],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990153,0.000009703532,0.000004452131,0.000017880562,0.000021403699,0.00004503265],"domain_scores_gemma":[0.9997203,0.000030447372,0.000032975444,0.00000947171,0.00015096474,0.000055761793],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017719585,0.00018455583,0.00016825265,0.00091074914,0.0014958868,0.001189813,0.00029396135,0.00021507774,0.0046085003],"category_scores_gemma":[0.00047432518,0.00014225351,0.00017337808,0.0018515333,0.00040206377,0.00035974075,0.0004451187,0.0003260868,0.00033844146],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014478959,0.000024513885,0.9477017,0.00011290849,0.00011887996,0.00016423484,0.0012406901,0.0016597052,0.0028820236,0.0011537619,0.007481505,0.037315264],"study_design_scores_gemma":[0.0000046820633,0.0000036785282,0.9927488,0.000027856571,0.000021942851,0.00001751936,0.0013169266,0.0006936837,0.00015670332,0.000099166326,0.00490199,0.000007046449],"about_ca_topic_score_codex":0.98041713,"about_ca_topic_score_gemma":0.9966989,"teacher_disagreement_score":0.019582868,"about_ca_system_score_codex":0.010274851,"about_ca_system_score_gemma":0.0128636565,"threshold_uncertainty_score":0.074549675},"labels":[],"label_agreement":null},{"id":"W3013391935","doi":"","title":"Post-fire Vegetation Regeneration Dynamics to Topography and Burn Severity in two contrasting ecosystems: the Case of the Montane Cordillera Ecozones of Western Canada & that of a Typical Mediterranean site in Greece","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Montane ecology; Mediterranean climate; Vegetation (pathology); Ecosystem; Regeneration (biology); Physical geography; Climate change; Forestry; Geology; Climatology; Environmental science; Geography; Ecology; Archaeology; Oceanography","score_opus":0.009514349792139977,"score_gpt":0.2190683422340602,"score_spread":0.20955399244192022,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013391935","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99979466,0.000022079248,0.000008488524,0.0000057295624,2.6136195e-7,0.0000012605759,0.000025641804,6.716618e-7,0.00014126279],"genre_scores_gemma":[0.99979395,0.000011969291,0.000016871969,0.0000029679322,4.5374338e-7,9.001675e-7,0.000051764393,5.543815e-7,0.00012044298],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997956,0.00004200704,0.000008020916,0.000045825334,0.00002414784,0.00008436031],"domain_scores_gemma":[0.9994773,0.00013382545,0.00008062526,0.000037390066,0.00011330464,0.00015747333],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029361265,0.0001825733,0.00020904787,0.0009138759,0.00053007866,0.00077006314,0.00048657882,0.00040893292,0.001093633],"category_scores_gemma":[0.00075060973,0.00013241344,0.0002575262,0.0009500509,0.0009362735,0.00026355122,0.00046465377,0.00018444024,0.00009742725],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00052687095,0.00008044667,0.98776126,0.00001745132,0.000091310016,0.0006957506,0.0011658866,0.0013936806,0.0037146409,0.00016474095,0.00011205284,0.0042758496],"study_design_scores_gemma":[0.0000029861353,0.000010908631,0.9985958,0.00000167173,0.0000072051603,0.000055483088,0.00061770633,0.0005602386,0.000065972745,0.000013569189,0.0000656298,0.0000028765214],"about_ca_topic_score_codex":0.4404157,"about_ca_topic_score_gemma":0.6564661,"teacher_disagreement_score":0.55958426,"about_ca_system_score_codex":0.0024108526,"about_ca_system_score_gemma":0.00071866333,"threshold_uncertainty_score":0.8757044},"labels":[],"label_agreement":null},{"id":"W3013423717","doi":"","title":"Multi-decadal frontal change rates of tidewater glaciers in the Canadian Arctic Archipelago","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Tidewater; Glacier; Arctic; Climatology; The arctic; Oceanography; Tidewater glacier cycle; Physical geography; Geography; Geology; Environmental science","score_opus":0.08179285902418627,"score_gpt":0.3011058316358789,"score_spread":0.21931297261169264,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013423717","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99597615,0.0004927717,0.000059373153,0.0001661272,0.000012665336,0.000004048621,0.0022665032,0.000010268377,0.0010120646],"genre_scores_gemma":[0.997926,0.00021967405,0.00007608838,0.000030850064,0.000004155808,0.0000022838237,0.0011198665,0.000004189169,0.0006169254],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997105,0.00001704093,0.000020190784,0.00007310174,0.000059546288,0.00011962661],"domain_scores_gemma":[0.99878937,0.000086907494,0.00014734128,0.00005191008,0.0006757904,0.00024873746],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00058676203,0.00029018518,0.00027647876,0.0027187064,0.0016445067,0.0012597572,0.00067569246,0.0004919762,0.0017518387],"category_scores_gemma":[0.001372825,0.00029506203,0.00043165745,0.0026481699,0.0005765878,0.00058923656,0.0008409891,0.00045489226,0.00016748019],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001027209,0.000019415922,0.99028826,0.000023919032,0.0001672432,0.000064400694,0.00072916166,0.0008937523,0.00082044967,0.00014580367,0.00090414274,0.005840647],"study_design_scores_gemma":[0.000001204149,0.0000019156137,0.99887496,0.0000063991997,0.000013466266,0.00001129382,0.00033442947,0.00032889532,0.00003738065,0.000009780215,0.00037564713,0.0000045924535],"about_ca_topic_score_codex":0.9873089,"about_ca_topic_score_gemma":0.9956552,"teacher_disagreement_score":0.012691081,"about_ca_system_score_codex":0.01024162,"about_ca_system_score_gemma":0.007874311,"threshold_uncertainty_score":0.074308455},"labels":[],"label_agreement":null},{"id":"W3013506334","doi":"","title":"Integrating terrestrial and marine archives of Late Wisconsinan ice stream dynamics in the Canadian Arctic Archipelago","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Oceanography; Arctic; Sea ice; Arctic ice pack; Geology; Seabed gouging by ice; Geography; Physical geography; Antarctic sea ice","score_opus":0.01192760024262715,"score_gpt":0.2218415593233944,"score_spread":0.20991395908076724,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013506334","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98554254,0.0013052163,0.0003099977,0.00023349831,0.000031598447,0.000033971064,0.008622356,0.000049741786,0.0038710304],"genre_scores_gemma":[0.990458,0.0008442256,0.0012470183,0.00007046047,0.000012758686,0.000017784878,0.0054695304,0.000013416769,0.0018668341],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995931,0.000032850974,0.000045498586,0.00009243259,0.000121321,0.00011480265],"domain_scores_gemma":[0.99801564,0.00008892411,0.00015112053,0.00008577395,0.0014721557,0.0001863294],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007730124,0.00031938442,0.00021319083,0.0036921024,0.0019434006,0.0019969,0.0005705408,0.00032619003,0.00093908276],"category_scores_gemma":[0.0018650274,0.0002552263,0.00023142569,0.0059366077,0.00032083556,0.0006839292,0.0009429609,0.00030621592,0.00020384131],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000113270806,0.000045571647,0.95508945,0.00008793804,0.00029991756,0.00011309951,0.0012319768,0.0017745135,0.002903712,0.00022747416,0.00343015,0.034682874],"study_design_scores_gemma":[0.0000045265424,0.000005792242,0.9894685,0.0000543088,0.000096400465,0.000029611496,0.001488543,0.0013906453,0.00047332692,0.00003070332,0.0069405064,0.00001716864],"about_ca_topic_score_codex":0.9900079,"about_ca_topic_score_gemma":0.9973557,"teacher_disagreement_score":0.009992123,"about_ca_system_score_codex":0.0097857285,"about_ca_system_score_gemma":0.016728083,"threshold_uncertainty_score":0.071000755},"labels":[],"label_agreement":null},{"id":"W3013565833","doi":"","title":"Holocene sedimentary dynamics of the Belcher Glacier (Devon Ice Cap, Nunavut, Canada)","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Glacier; Ice caps; Holocene; Physical geography; Sedimentary rock; Glacier morphology; Climatology; Geomorphology; Cryosphere; Oceanography; Ice stream; Sea ice; Geography; Paleontology","score_opus":0.0070612928538492945,"score_gpt":0.17549173812702243,"score_spread":0.16843044527317313,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013565833","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9904018,0.0006920451,0.000076399585,0.00020663979,0.000013420408,0.000008225095,0.0045434013,0.000017953971,0.004040041],"genre_scores_gemma":[0.99462175,0.00028227325,0.00010939929,0.00004082806,0.0000043988334,0.0000054112515,0.0020839965,0.000012372193,0.0028395457],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998481,0.000009638354,0.000008488678,0.000037550013,0.000030252007,0.000065897795],"domain_scores_gemma":[0.9993705,0.000034781813,0.00007915304,0.000020118021,0.00035846248,0.00013703326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032918816,0.00020368045,0.00020598188,0.0017057899,0.0021500671,0.0012499486,0.0008755524,0.00038173143,0.003865041],"category_scores_gemma":[0.00082450215,0.00025563617,0.00021866175,0.0019095433,0.00078563,0.00058037485,0.00075966155,0.00042027404,0.0004741559],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029239687,0.00005204056,0.96537006,0.00009384558,0.00010975814,0.00026782887,0.0051336507,0.0014953081,0.0017857079,0.0010500309,0.005395208,0.018954193],"study_design_scores_gemma":[0.000003275459,0.0000045895727,0.99663985,0.00001785861,0.000007449661,0.00002381542,0.0008116699,0.00020078143,0.00007200137,0.000021640553,0.0021911378,0.0000058355017],"about_ca_topic_score_codex":0.9925575,"about_ca_topic_score_gemma":0.9978478,"teacher_disagreement_score":0.019737575,"about_ca_system_score_codex":0.019737575,"about_ca_system_score_gemma":0.012172423,"threshold_uncertainty_score":0.14320678},"labels":[],"label_agreement":null},{"id":"W3013600886","doi":"","title":"Multi-Year Mobile Surface Measurements of CH4 in the Athabasca Oil Sands Region of Alberta","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oil sands; Surface mining; Geology; Mining engineering; Environmental science; Asphalt; Geography; Archaeology; Coal mining; Coal","score_opus":0.018469258329093984,"score_gpt":0.22697049909221298,"score_spread":0.208501240763119,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013600886","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9981832,0.00006378478,0.00009554806,0.00004466058,0.000003930568,0.000004810875,0.00058279134,0.000014160689,0.0010070273],"genre_scores_gemma":[0.99833715,0.000053628268,0.00016615583,0.000014285379,0.0000026181247,0.0000028376928,0.0005924944,0.00000318587,0.0008275896],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998118,0.00001155857,0.000007740854,0.000037749323,0.000057247482,0.00007392037],"domain_scores_gemma":[0.9998325,0.000014070416,0.000020699163,0.0000087133885,0.000076941644,0.000046906443],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021992548,0.00029721737,0.00024336949,0.00079814857,0.0012199676,0.00082196726,0.00073025736,0.00047046234,0.0005709469],"category_scores_gemma":[0.0002843387,0.0001839143,0.00022299032,0.0011869492,0.0004430459,0.00030899077,0.00055767887,0.00025876297,0.00012196425],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00080830883,0.00020359748,0.94527173,0.00006755744,0.00023601034,0.0010298898,0.002083098,0.008596066,0.019897288,0.00041335158,0.0016214814,0.01977165],"study_design_scores_gemma":[0.00001590283,0.000019792997,0.9922603,0.000009298951,0.000030253304,0.000049452796,0.0015208264,0.0036987797,0.0007571092,0.000038993923,0.001582826,0.0000165651],"about_ca_topic_score_codex":0.9571073,"about_ca_topic_score_gemma":0.98185754,"teacher_disagreement_score":0.042892694,"about_ca_system_score_codex":0.005438424,"about_ca_system_score_gemma":0.003828804,"threshold_uncertainty_score":0.08629054},"labels":[],"label_agreement":null},{"id":"W3013748679","doi":"","title":"Exchanges of volume, heat and freshwater through the Canadian Arctic Archipelago: a numerical study.","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Arctic; The arctic; Oceanography; Geography; Volume (thermodynamics); Environmental science; Climatology; Geology","score_opus":0.03665690169221084,"score_gpt":0.24066537623259554,"score_spread":0.2040084745403847,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013748679","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99324155,0.000180114,0.000650271,0.00037320508,0.000020890631,0.00001816412,0.0024407883,0.000089836256,0.002985285],"genre_scores_gemma":[0.9971783,0.00014536556,0.00080182916,0.000043140008,0.000005287447,0.00001564964,0.0008837741,0.000020889394,0.0009057793],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99984837,0.000019770629,0.000009514354,0.000037125363,0.000029904586,0.00005529063],"domain_scores_gemma":[0.99957865,0.0001086287,0.00003961726,0.000028332517,0.00013583068,0.00010892975],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003304204,0.0003400628,0.00035978397,0.00070484483,0.002042901,0.0016373666,0.0014378205,0.0012209063,0.0022152227],"category_scores_gemma":[0.0015610504,0.00048205323,0.0008405946,0.0019883437,0.0008973235,0.0006988828,0.0005921729,0.0007427432,0.00019291091],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00039339653,0.00032425375,0.26580957,0.00014134386,0.00049402076,0.0003714099,0.0007416808,0.7026546,0.0030795163,0.006784952,0.0073157586,0.011889653],"study_design_scores_gemma":[0.000173718,0.00004649908,0.25233722,0.000043134823,0.00017064156,0.00009948413,0.0012727669,0.73932046,0.00079573045,0.00095275213,0.0046703205,0.000117256524],"about_ca_topic_score_codex":0.98951286,"about_ca_topic_score_gemma":0.9848038,"teacher_disagreement_score":0.017567549,"about_ca_system_score_codex":0.017567549,"about_ca_system_score_gemma":0.015699986,"threshold_uncertainty_score":0.12746203},"labels":[],"label_agreement":null},{"id":"W3013803143","doi":"","title":"A subglacial landform assemblage on the outer-shelf of M'Clure Strait, Canadian Arctic, ploughed by deglacial iceberg keels","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Iceberg; Geology; Oceanography; Landform; Assemblage (archaeology); Arctic; Paleontology; Ice sheet","score_opus":0.03298126661075028,"score_gpt":0.21795147236480514,"score_spread":0.18497020575405487,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013803143","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99737155,0.00012597391,0.000058051068,0.000024773342,0.0000015953261,0.000009581438,0.0011254228,0.0000070152255,0.0012761629],"genre_scores_gemma":[0.9971885,0.00011586808,0.00020754231,0.000020255051,0.0000014102441,0.0000072812627,0.0012298288,0.0000040194964,0.001225287],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998319,0.0000075494254,0.00000666474,0.00003958892,0.000036912756,0.00007731961],"domain_scores_gemma":[0.99963117,0.00001948789,0.000043594162,0.000011856152,0.00017808728,0.00011586537],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013813694,0.00021235559,0.00021210972,0.0021768422,0.0024499646,0.00083270326,0.0004320677,0.00021790023,0.0015891455],"category_scores_gemma":[0.00037396027,0.00016705546,0.0002053947,0.0023823506,0.00064628856,0.00028321295,0.0005374093,0.000171367,0.00023154466],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018219576,0.000024033066,0.9621254,0.0000588086,0.000050945684,0.00018440443,0.009665871,0.00026960732,0.009095508,0.00031059587,0.0009906826,0.017041821],"study_design_scores_gemma":[7.843992e-7,0.00000571947,0.99766433,0.000006043512,0.0000040653076,0.00002276777,0.0014248509,0.00008973981,0.00007048516,0.000007504191,0.00070150674,0.0000023704545],"about_ca_topic_score_codex":0.9815824,"about_ca_topic_score_gemma":0.99547714,"teacher_disagreement_score":0.018417597,"about_ca_system_score_codex":0.0059214565,"about_ca_system_score_gemma":0.0068247146,"threshold_uncertainty_score":0.042963326},"labels":[],"label_agreement":null},{"id":"W3013809374","doi":"","title":"Sedimentary processes and depositional environments of the Horn River Shale in British Columbia, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Sedimentary depositional environment; Sedimentary rock; Oil shale; Geochemistry; Archaeology; Paleontology; Geography; Structural basin","score_opus":0.004515324144775167,"score_gpt":0.1677893167139015,"score_spread":0.1632739925691263,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013809374","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99578387,0.00035550297,0.00006107677,0.00013622514,0.000005314136,0.000012126119,0.0012233155,0.00001251565,0.0024100288],"genre_scores_gemma":[0.9961196,0.00031543206,0.00012825371,0.000037332004,0.0000019448594,0.0000060771554,0.0007225327,0.000007835959,0.002661033],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997353,0.000018301229,0.000022061397,0.000042337666,0.000072582814,0.00010948322],"domain_scores_gemma":[0.99915814,0.000058135818,0.000078844234,0.000020839885,0.0005109718,0.0001730455],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025762786,0.00029930228,0.0003567218,0.0021293457,0.0032660114,0.0018421279,0.00083965115,0.0004645362,0.002613315],"category_scores_gemma":[0.0009062798,0.00035927378,0.00027593446,0.0042600064,0.00080370094,0.00041430528,0.0008837332,0.00046834548,0.00036274234],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002602222,0.0000880812,0.96130943,0.00011140901,0.0001573494,0.00060932053,0.0047038845,0.0024273067,0.0029158238,0.00053352903,0.0032114051,0.023672355],"study_design_scores_gemma":[0.0000072587104,0.0000070508054,0.9944014,0.00002906332,0.000019948619,0.00003382202,0.0028927552,0.00086652726,0.00013350487,0.000029689132,0.0015654104,0.0000134949505],"about_ca_topic_score_codex":0.9977221,"about_ca_topic_score_gemma":0.99935335,"teacher_disagreement_score":0.020610537,"about_ca_system_score_codex":0.020610537,"about_ca_system_score_gemma":0.022171224,"threshold_uncertainty_score":0.14954066},"labels":[],"label_agreement":null},{"id":"W3013938529","doi":"","title":"Fire and vegetation history during the Holocene epoch in the North Slave Region, Northwest Territories, Canada.","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Holocene; Vegetation (pathology); Fire history; Epoch (astronomy); Physical geography; Geology; Archaeology; Geography; History; Climate change; Oceanography","score_opus":0.00502679142853478,"score_gpt":0.16483233280448206,"score_spread":0.15980554137594727,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3013938529","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9961957,0.00074182526,0.000040072297,0.00019848855,0.000008112195,0.0000060716293,0.0012177279,0.0000026754853,0.001589406],"genre_scores_gemma":[0.9972338,0.0004664004,0.000052235835,0.00003745701,0.000005443322,0.0000041209446,0.0006993831,0.000003517014,0.0014975076],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979,0.000018870262,0.00000827406,0.000026319294,0.000032105978,0.00012455026],"domain_scores_gemma":[0.9993418,0.00006396554,0.0001061483,0.000025726627,0.00022424283,0.00023812386],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002970675,0.00012508797,0.00019988324,0.0009225243,0.0019836354,0.0011010184,0.0006723086,0.00041682375,0.002003013],"category_scores_gemma":[0.0011098371,0.000155128,0.00017282565,0.0019282041,0.0008361815,0.00036047216,0.00067241985,0.0004579262,0.0002197689],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001513818,0.000038823266,0.98218614,0.000033495908,0.00006531498,0.00021119168,0.0045409454,0.00028308612,0.0005535518,0.00031488994,0.001193488,0.010427693],"study_design_scores_gemma":[0.000001527103,0.0000043744326,0.9956507,0.00001480148,0.000007442389,0.000030649844,0.0029820476,0.000091945636,0.000027502238,0.00001909293,0.0011663642,0.0000035350586],"about_ca_topic_score_codex":0.99239504,"about_ca_topic_score_gemma":0.9983021,"teacher_disagreement_score":0.010993877,"about_ca_system_score_codex":0.010993877,"about_ca_system_score_gemma":0.012772866,"threshold_uncertainty_score":0.07976657},"labels":[],"label_agreement":null},{"id":"W3014125084","doi":"","title":"Integrating McGill Wetland Model (MWM) with microbial controls and corhot development","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Constructed Wetlands for Wastewater Treatment","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Wetland; Geography; Environmental planning; Environmental resource management; Environmental science; Ecology; Biology","score_opus":0.008004151881546169,"score_gpt":0.1947868066650306,"score_spread":0.18678265478348444,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014125084","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.88645446,0.00031807105,0.061709832,0.00061455125,0.00017760553,0.0003523129,0.008288019,0.003428566,0.03865653],"genre_scores_gemma":[0.977621,0.000097160715,0.016649418,0.000051081388,0.0000073367305,0.00014214468,0.0011277497,0.00011393566,0.004190238],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998778,0.000016077758,0.000005656298,0.00003193357,0.00003404369,0.000034502355],"domain_scores_gemma":[0.9998124,0.000041183142,0.000016077136,0.000019850473,0.00007893703,0.000031541418],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018711909,0.00063061895,0.00039008568,0.00022798308,0.0003964869,0.00069211714,0.0012389867,0.00070667965,0.0025185714],"category_scores_gemma":[0.00044631388,0.00021839942,0.00051240565,0.00027169572,0.0002269001,0.0004751212,0.000449682,0.00050259224,0.00026955316],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000164172,0.000181761,0.0065412563,0.0001727993,0.000035849927,0.00012373859,0.00004808798,0.95773757,0.01491811,0.0023255493,0.0027247842,0.015026263],"study_design_scores_gemma":[0.000042438784,0.00006517891,0.0022296896,0.0000073425435,0.000020449066,0.000011346236,0.000024057923,0.9898399,0.0048337397,0.000342296,0.002559412,0.000024208255],"about_ca_topic_score_codex":0.18088843,"about_ca_topic_score_gemma":0.19961634,"teacher_disagreement_score":0.18088843,"about_ca_system_score_codex":0.0021613273,"about_ca_system_score_gemma":0.0029772427,"threshold_uncertainty_score":0.35967106},"labels":[],"label_agreement":null},{"id":"W3014377861","doi":"","title":"On improving the quality of precipitation data for Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Precipitation Measurement and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Quality (philosophy); Precipitation; Data quality; Business; Environmental science; Geography; Meteorology; Marketing","score_opus":0.0789529736998321,"score_gpt":0.2788534381255039,"score_spread":0.19990046442567178,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014377861","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6936068,0.017017914,0.05308623,0.07357812,0.0016171633,0.0009604782,0.11327479,0.0037184202,0.043140188],"genre_scores_gemma":[0.79212224,0.010248721,0.12610915,0.0050751925,0.0004118819,0.00018045824,0.055283893,0.00060257135,0.009965889],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9938,0.00089190877,0.00045675653,0.0004123509,0.0035319503,0.00090714736],"domain_scores_gemma":[0.9528207,0.0046499823,0.0013883177,0.0018626156,0.037930652,0.00134776],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.010046947,0.00076069415,0.0005712131,0.0031951596,0.002889449,0.0032815386,0.0024768184,0.00089714443,0.0024995843],"category_scores_gemma":[0.037021287,0.00032322627,0.0005945108,0.007854949,0.0007409842,0.0019693063,0.0013824926,0.0013180859,0.0007307986],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046457877,0.00023333603,0.40540305,0.0008463574,0.00031948448,0.00015942764,0.0012305852,0.026739744,0.007696092,0.008320474,0.14161406,0.4069729],"study_design_scores_gemma":[0.00019539586,0.00010412271,0.7603715,0.00090969435,0.00037975592,0.00008757398,0.0029386529,0.062091555,0.018231645,0.0026960964,0.15181838,0.00017564918],"about_ca_topic_score_codex":0.9922924,"about_ca_topic_score_gemma":0.9940215,"teacher_disagreement_score":0.021919958,"about_ca_system_score_codex":0.021919958,"about_ca_system_score_gemma":0.08364149,"threshold_uncertainty_score":0.15904117},"labels":[],"label_agreement":null},{"id":"W3014409914","doi":"","title":"Sedimentological, physical and magnetic properties of surface sediments from the Canadian Arctic","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Arctic; The arctic; Oceanography; Rock magnetism; Geochemistry; Physical geography; Geography","score_opus":0.030928044593460612,"score_gpt":0.23135454541472755,"score_spread":0.20042650082126695,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014409914","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9969613,0.00034510042,0.00006948523,0.000044399985,0.000005820391,0.0000053801996,0.0010439113,0.000007212133,0.0015174892],"genre_scores_gemma":[0.99778134,0.00023239275,0.00015087296,0.000022044625,0.0000034380746,0.0000029601815,0.00090643513,0.000005626412,0.0008949757],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996673,0.0000109007115,0.000021773445,0.000053543547,0.00013066821,0.000115898176],"domain_scores_gemma":[0.9992091,0.00003234738,0.00006605684,0.000014256083,0.00058193225,0.00009628563],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002923013,0.00041451206,0.00035000022,0.0023758553,0.0041738283,0.0016004789,0.0005468741,0.0003102988,0.0009951157],"category_scores_gemma":[0.0008113508,0.0002840247,0.00022142673,0.0041047917,0.000889506,0.00034236556,0.0005865828,0.00028954734,0.00019914401],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00068017154,0.00006306755,0.9297735,0.00020606039,0.00018804322,0.0005235921,0.0062600165,0.0016046225,0.02807145,0.00031948418,0.0014975816,0.030812424],"study_design_scores_gemma":[0.0000050104777,0.00001101341,0.995867,0.000012301858,0.000033343047,0.00005476408,0.001261003,0.00025205465,0.00087259995,0.00001929753,0.0016009143,0.000010695606],"about_ca_topic_score_codex":0.9909977,"about_ca_topic_score_gemma":0.99575764,"teacher_disagreement_score":0.009950882,"about_ca_system_score_codex":0.009950882,"about_ca_system_score_gemma":0.011210729,"threshold_uncertainty_score":0.07219899},"labels":[],"label_agreement":null},{"id":"W3014449541","doi":"","title":"Responsible management of peatlands in Canada, from peat industry to oil sands","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Oil sands; Environmental science; Petroleum industry; Geology; Hydrology (agriculture); Geography; Asphalt; Environmental engineering; Geotechnical engineering; Archaeology","score_opus":0.006580300120019275,"score_gpt":0.19808121696268216,"score_spread":0.19150091684266288,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014449541","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9376738,0.002851048,0.0026987777,0.017309073,0.00013013765,0.00021247721,0.00041880464,0.00016871672,0.03853728],"genre_scores_gemma":[0.9827633,0.00065168046,0.0011522205,0.00062313554,0.0000091692345,0.000014845005,0.000081205064,0.000013953786,0.014690628],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.9981811,0.00013843244,0.000040198825,0.000088581975,0.0003905309,0.0011612028],"domain_scores_gemma":[0.9969241,0.00019180692,0.00021813979,0.00008018366,0.0009162218,0.0016694609],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008374462,0.00019199119,0.00013872724,0.000920168,0.007630661,0.002656097,0.0014782245,0.0006551519,0.0016733013],"category_scores_gemma":[0.0023581816,0.00018087057,0.00014942691,0.0008049947,0.0024910541,0.0005637503,0.0019625402,0.0008237028,0.000116864176],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00030680822,0.00042793315,0.31563348,0.00046178515,0.00012859493,0.005604054,0.025389649,0.014920155,0.015387394,0.08266542,0.07489994,0.4641748],"study_design_scores_gemma":[0.000040537907,0.00011231882,0.6544138,0.0003669096,0.00007015954,0.00057738123,0.052853856,0.01021691,0.0053363987,0.010002798,0.26588476,0.00012403262],"about_ca_topic_score_codex":0.98091733,"about_ca_topic_score_gemma":0.9966785,"teacher_disagreement_score":0.041443773,"about_ca_system_score_codex":0.041443773,"about_ca_system_score_gemma":0.17249548,"threshold_uncertainty_score":0.30069703},"labels":[],"label_agreement":null},{"id":"W3014627668","doi":"","title":"Organic geochemical signatures controlling methane outgassing at active mud volcanoes in the Canadian Beaufort Sea","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Outgassing; Methane; Beaufort sea; Volcano; Mud volcano; Geology; Oceanography; Earth science; Atmospheric methane; Environmental science; Astrobiology; Sea ice; Geochemistry; Chemistry; Greenhouse gas","score_opus":0.008180919980420738,"score_gpt":0.21021207605090342,"score_spread":0.2020311560704827,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014627668","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99895775,0.0000898314,0.000049070048,0.00002897069,0.0000026156406,0.0000037446923,0.00021328701,0.0000059188615,0.0006488016],"genre_scores_gemma":[0.9992747,0.000058179477,0.000063128355,0.000013984064,0.0000017227442,0.000002186147,0.0001554348,0.000004387542,0.00042630383],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981254,0.0000060332804,0.000005560971,0.000042048672,0.00004497774,0.000088845896],"domain_scores_gemma":[0.99977773,0.000019818819,0.00003894948,0.0000064105807,0.00010373491,0.000053352596],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014338859,0.00033432862,0.0004006292,0.0011204835,0.0027963745,0.00094106887,0.0005842622,0.00049487955,0.0009264338],"category_scores_gemma":[0.00028532065,0.00033776957,0.0002409597,0.0010242055,0.0011878421,0.00037133077,0.00060721184,0.00033666415,0.00010646429],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00069102785,0.00007659364,0.7752476,0.00007953541,0.00015606219,0.0004924813,0.003764045,0.0013597877,0.20816596,0.00032667225,0.00045983936,0.009180467],"study_design_scores_gemma":[0.0000037754212,0.000014187058,0.9956939,0.0000033402346,0.000013582219,0.000024207244,0.0011557131,0.00037163554,0.002292111,0.000016876718,0.00040093408,0.000009688879],"about_ca_topic_score_codex":0.9327334,"about_ca_topic_score_gemma":0.9684156,"teacher_disagreement_score":0.06726658,"about_ca_system_score_codex":0.006366891,"about_ca_system_score_gemma":0.004296615,"threshold_uncertainty_score":0.13532543},"labels":[],"label_agreement":null},{"id":"W3014898045","doi":"","title":"Using Archean sedimentary rocks from the Superior Province to decipher the crustal history and composition of the Canadian Shield","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archean; Geology; Shield; Sedimentary rock; DECIPHER; Geochemistry; Earth science; Paleontology","score_opus":0.04123973519569724,"score_gpt":0.20932768955266204,"score_spread":0.1680879543569648,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3014898045","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.992874,0.00072266284,0.00039501122,0.00006908938,0.0000073467063,0.000015931526,0.00137686,0.000017727702,0.004521302],"genre_scores_gemma":[0.994936,0.0005201599,0.0014471579,0.00004590012,0.0000044333988,0.0000061162114,0.0015341237,0.000015731184,0.0014903996],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99963117,0.000014707145,0.000018153074,0.00008371552,0.000112060494,0.0001402617],"domain_scores_gemma":[0.999376,0.000036425405,0.00007159477,0.000043309905,0.00037521133,0.00009750864],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004068627,0.00043515407,0.00029840763,0.0044869105,0.003318385,0.0015076236,0.00056298997,0.0003931513,0.0019144845],"category_scores_gemma":[0.0009201247,0.0002559337,0.00031410955,0.005919467,0.00080651423,0.00042939265,0.0008634145,0.00039321443,0.00030375112],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031405577,0.00006705091,0.8752114,0.00020982235,0.0003329293,0.00067074836,0.004897687,0.0025832278,0.036513176,0.0008859795,0.0013293489,0.0769846],"study_design_scores_gemma":[0.000006065095,0.000007467291,0.9914709,0.000035379802,0.000058977388,0.000121829646,0.0016130026,0.0007647049,0.0009097101,0.00008776307,0.0049113506,0.00001287075],"about_ca_topic_score_codex":0.9849166,"about_ca_topic_score_gemma":0.99691415,"teacher_disagreement_score":0.015083373,"about_ca_system_score_codex":0.009488474,"about_ca_system_score_gemma":0.012511773,"threshold_uncertainty_score":0.06884408},"labels":[],"label_agreement":null},{"id":"W3015001066","doi":"","title":"Geoconservation Monitoring Networks: Protecting the World's Oldest Complex Macrofossils in the Ediacaran of Newfoundland","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Macrofossil; Geology; Paleontology; Archaeology; Geography; Holocene","score_opus":0.05192387304471478,"score_gpt":0.29623269659439244,"score_spread":0.24430882354967765,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015001066","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9351798,0.0017720488,0.0061452417,0.0056497576,0.00009644238,0.00018812009,0.03356298,0.00039748204,0.017008042],"genre_scores_gemma":[0.96270424,0.0017445298,0.011896394,0.00086025114,0.000039924915,0.00015832424,0.011924325,0.000041022366,0.010630938],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999726,0.0000399044,0.000017279042,0.000049851824,0.000050911327,0.00011610611],"domain_scores_gemma":[0.9974306,0.00027812851,0.000753674,0.0002716867,0.0008669988,0.0003987405],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009563627,0.00020294031,0.00011330675,0.0009169185,0.00072095694,0.0007667,0.0006617996,0.00027041495,0.0012186134],"category_scores_gemma":[0.0022454464,0.00013455813,0.000059784932,0.0014313563,0.00033618527,0.0006688942,0.0010279126,0.00030122342,0.00019347052],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013818068,0.00006891257,0.76115924,0.000169061,0.00006344844,0.00024808184,0.0016341717,0.0034466968,0.002982262,0.0012348994,0.04367637,0.18517868],"study_design_scores_gemma":[0.0000125820525,0.000025713103,0.9490521,0.000113564536,0.000040285766,0.00005914812,0.002400197,0.0040188297,0.0011834002,0.00025831952,0.042823177,0.000012714205],"about_ca_topic_score_codex":0.8805429,"about_ca_topic_score_gemma":0.9415091,"teacher_disagreement_score":0.119457126,"about_ca_system_score_codex":0.0035711383,"about_ca_system_score_gemma":0.008399424,"threshold_uncertainty_score":0.24032122},"labels":[],"label_agreement":null},{"id":"W3015130012","doi":"","title":"Field evidence and monitoring of slope processes in subarctic Québec, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subarctic climate; Field (mathematics); Environmental science; Geology; Oceanography","score_opus":0.0073523786882966485,"score_gpt":0.20817251675175408,"score_spread":0.20082013806345744,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015130012","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9887748,0.0007900098,0.00040815768,0.00019706371,0.0000071912277,0.00007556122,0.0025935324,0.000034519406,0.0071191774],"genre_scores_gemma":[0.9925965,0.0005407861,0.0010318294,0.0000726404,0.000004547699,0.00003436175,0.0011358048,0.000008973523,0.004574656],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9994923,0.0000673066,0.000025037703,0.00008831943,0.00019996715,0.00012712117],"domain_scores_gemma":[0.9962781,0.0003232182,0.0004285463,0.00010859451,0.0025000975,0.00036138017],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005614919,0.00029492396,0.00022309154,0.0025959467,0.0026668478,0.0011324859,0.001066888,0.0003237533,0.0020120754],"category_scores_gemma":[0.0015818676,0.00020085722,0.0001173525,0.004374569,0.0010863421,0.00036613882,0.0004102302,0.00036711097,0.00027176228],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018402126,0.00014735833,0.9411536,0.00010884988,0.00007442935,0.0002850237,0.003499403,0.0009669812,0.0056045363,0.00029412544,0.0024640588,0.04521769],"study_design_scores_gemma":[0.000006251364,0.000019991701,0.9946102,0.000026262387,0.000012809216,0.000033626864,0.0014916789,0.00040941872,0.0002992549,0.000018052835,0.0030643216,0.000008051475],"about_ca_topic_score_codex":0.9950989,"about_ca_topic_score_gemma":0.99885726,"teacher_disagreement_score":0.018203462,"about_ca_system_score_codex":0.018203462,"about_ca_system_score_gemma":0.015132555,"threshold_uncertainty_score":0.13207597},"labels":[],"label_agreement":null},{"id":"W3015169406","doi":"","title":"Glacier and hydrology changes in future climate over western Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Hydrology (agriculture); Climate change; Physical geography; Glacier mass balance; Climatology; Geology; Environmental science; Geography; Oceanography","score_opus":0.008110792107666253,"score_gpt":0.18679664665154602,"score_spread":0.17868585454387978,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015169406","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9940813,0.00023358001,0.00006631759,0.00070349907,0.000015012044,0.0000038327667,0.0029581678,0.0000129716,0.0019253305],"genre_scores_gemma":[0.99682605,0.000255748,0.000058745405,0.00005916511,0.0000062907548,0.0000021590367,0.0011669784,0.000006185546,0.0016186872],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99983716,0.000009348716,0.000010758191,0.00003767942,0.000034956644,0.000070146874],"domain_scores_gemma":[0.9992424,0.00006380834,0.000119119315,0.000022134122,0.00035026376,0.00020227738],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029227175,0.00015362304,0.0001536998,0.0006535651,0.0015206155,0.0014440668,0.0004885803,0.00047875842,0.0030821578],"category_scores_gemma":[0.0012692363,0.00018403286,0.00038444504,0.0014488982,0.000548815,0.0006847108,0.0005294051,0.00068339944,0.00022315854],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014623997,0.000040950017,0.9840418,0.000028110144,0.00008729714,0.00016868017,0.0012201463,0.0034774202,0.00068171613,0.000863983,0.0031484452,0.006095358],"study_design_scores_gemma":[0.000007782385,0.000004675333,0.99414307,0.000014754169,0.000023199793,0.000026624553,0.0012546061,0.0019511932,0.000103732586,0.00008356741,0.0023752723,0.000011457424],"about_ca_topic_score_codex":0.9956185,"about_ca_topic_score_gemma":0.9978909,"teacher_disagreement_score":0.022894384,"about_ca_system_score_codex":0.022894384,"about_ca_system_score_gemma":0.01943744,"threshold_uncertainty_score":0.16611117},"labels":[],"label_agreement":null},{"id":"W3015217993","doi":"","title":"Aseismic and seismic slip induced by fluid injection from poroelastic and rate-state friction modeling with application to the Fox Creek, Alberta, 2013-2015 earthquake sequence","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Rock Mechanics and Modeling","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Poromechanics; Geology; Slip (aerodynamics); Seismology; Geotechnical engineering; Induced seismicity; Foreshock; Aftershock; Sequence (biology); Intraplate earthquake; Engineering; Porosity; Tectonics; Porous medium","score_opus":0.009937582226861374,"score_gpt":0.19989625006197337,"score_spread":0.189958667835112,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015217993","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99388194,0.00007456249,0.0024517213,0.000061639876,0.000011263439,0.000014674764,0.00031665116,0.00011715838,0.003070365],"genre_scores_gemma":[0.9988311,0.00003626095,0.0004129593,0.0000036791937,0.0000022600009,0.0000032934538,0.00014026175,0.000008010611,0.00056229025],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999907,0.000012194876,0.0000066944235,0.000017146993,0.000027946951,0.000029071236],"domain_scores_gemma":[0.99976426,0.00008619985,0.000041861353,0.000011703992,0.00006843249,0.000027638864],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025789402,0.0004972893,0.00033234878,0.0008176488,0.0006288835,0.000686899,0.00073103927,0.0008514954,0.0011173014],"category_scores_gemma":[0.00089909806,0.00039985354,0.0004635548,0.0007898946,0.0005304347,0.00026097178,0.00032248136,0.00041035612,0.00010401318],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002578125,0.00015051055,0.033001725,0.000048574493,0.000036292768,0.00019654217,0.00009212669,0.95543617,0.0031565463,0.00084346323,0.00041671377,0.0063635292],"study_design_scores_gemma":[0.000017701032,0.00003379556,0.028629718,0.0000057700504,0.000017081167,0.0000128587035,0.00006395083,0.97017586,0.00073791173,0.000083770225,0.0002096129,0.000011954499],"about_ca_topic_score_codex":0.5877193,"about_ca_topic_score_gemma":0.6452,"teacher_disagreement_score":0.41228068,"about_ca_system_score_codex":0.0030787252,"about_ca_system_score_gemma":0.0026093542,"threshold_uncertainty_score":0.82941735},"labels":[],"label_agreement":null},{"id":"W3015418439","doi":"","title":"Diffusive Transport Modelling of Corrosion Agents through the Engineered Barrier System in the Canadian Deep Geological Repository for Used Nuclear Fuel","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Groundwater flow and contamination studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Corrosion; Spent nuclear fuel; Nuclear engineering; Environmental science; Engineering; Materials science; Metallurgy","score_opus":0.023636099076512304,"score_gpt":0.20852181658558272,"score_spread":0.1848857175090704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015418439","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99186736,0.00018415865,0.0044445535,0.00015081764,0.00001433818,0.000038118167,0.0003675511,0.00007196435,0.0028612192],"genre_scores_gemma":[0.9966498,0.00013768187,0.0011109797,0.000011686673,0.0000014310629,0.000011464186,0.00013078081,0.000009311886,0.0019368412],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99983525,0.000013464513,0.000008265129,0.000039474966,0.00003455779,0.000069040114],"domain_scores_gemma":[0.99978405,0.00006456771,0.00002837463,0.000007993669,0.00008428953,0.000030770363],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024032462,0.0006075207,0.0005402417,0.0006740065,0.0012840672,0.0014882775,0.001218491,0.0011078523,0.0009975405],"category_scores_gemma":[0.0006196089,0.0003640007,0.00062904356,0.00054016727,0.0006973257,0.00050282484,0.00044419954,0.00061163225,0.00011567068],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019682609,0.00012403145,0.0147988815,0.00007947959,0.000029941193,0.00021895724,0.00017600102,0.95204496,0.024215,0.0022369907,0.0005541082,0.0053248084],"study_design_scores_gemma":[0.000024749701,0.0000608001,0.004620699,0.0000064558276,0.000021098393,0.000018944536,0.00014878414,0.99007416,0.0044890414,0.0001559219,0.00035775304,0.00002163043],"about_ca_topic_score_codex":0.8375212,"about_ca_topic_score_gemma":0.6949065,"teacher_disagreement_score":0.1624788,"about_ca_system_score_codex":0.009341543,"about_ca_system_score_gemma":0.008667955,"threshold_uncertainty_score":0.32687134},"labels":[],"label_agreement":null},{"id":"W3015464517","doi":"","title":"Numerical simulation of tides in Ontario Lacus","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Meteorology; Climatology; Computer science; Geography","score_opus":0.032848747882833235,"score_gpt":0.2248217563734,"score_spread":0.19197300849056675,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015464517","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99360436,0.000042531905,0.0004054361,0.00020858411,0.000014728043,0.000014814227,0.000409606,0.00004324315,0.0052567776],"genre_scores_gemma":[0.99762064,0.000033888668,0.0004029227,0.0000154631,0.0000028815696,0.000009804014,0.00022638826,0.000007668936,0.0016802574],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99987197,0.000015494581,0.0000080745485,0.000023099192,0.000029432445,0.0000519128],"domain_scores_gemma":[0.9994809,0.00013629167,0.00005597128,0.000026590249,0.00015139539,0.00014882564],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017143271,0.00027825637,0.00035054886,0.00052467734,0.0018181163,0.0011542948,0.0011095469,0.001175064,0.0035098186],"category_scores_gemma":[0.0016785222,0.00041235896,0.00047820446,0.00092535006,0.0011529675,0.00044827414,0.0008197559,0.0006578674,0.00018720905],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002704301,0.00015464981,0.067258984,0.00005557574,0.000059222893,0.0004860257,0.0006818103,0.9198781,0.0018577687,0.003218398,0.0017859181,0.0042930534],"study_design_scores_gemma":[0.00011514688,0.000065718996,0.026330536,0.0000143503175,0.000032315384,0.000020797115,0.00088447356,0.9699866,0.00044177583,0.00031659193,0.0017567971,0.000034957528],"about_ca_topic_score_codex":0.95570904,"about_ca_topic_score_gemma":0.9537184,"teacher_disagreement_score":0.04429096,"about_ca_system_score_codex":0.013165816,"about_ca_system_score_gemma":0.009378492,"threshold_uncertainty_score":0.095525146},"labels":[],"label_agreement":null},{"id":"W3015680171","doi":"","title":"Hydrologic resilience of a Canadian Foothills watershed to forest harvest","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Foothills; Watershed; Resilience (materials science); Hydrology (agriculture); Environmental science; Geography; Environmental resource management; Water resource management; Geology; Cartography; Computer science","score_opus":0.01920711466294471,"score_gpt":0.19040753785688735,"score_spread":0.17120042319394263,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015680171","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99815035,0.00002544636,0.000043279113,0.00012193641,0.0000017928976,0.000010325249,0.0002916392,0.000009183309,0.0013460527],"genre_scores_gemma":[0.9992601,0.000029736027,0.000059077964,0.00001914328,0.0000011106494,0.0000042256866,0.00016137614,0.0000028482639,0.00046232462],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99960905,0.000022633849,0.000012398422,0.000071685536,0.00006990443,0.00021427916],"domain_scores_gemma":[0.999503,0.000049804406,0.00006010641,0.000026152382,0.00019986788,0.00016114698],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025794172,0.00017722914,0.00036438523,0.0012232623,0.003379441,0.0020917105,0.0011281279,0.0005431025,0.0021096296],"category_scores_gemma":[0.0013547105,0.00024728687,0.00030826515,0.0022085307,0.0016193704,0.00043763718,0.0010941968,0.00042324478,0.00014619034],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00025738328,0.00021964347,0.96133024,0.0000380116,0.00013466494,0.00079004606,0.0043097977,0.008775959,0.0040388815,0.0014854886,0.0023572992,0.016262682],"study_design_scores_gemma":[0.000008312374,0.0000122955225,0.99142355,0.000008226681,0.000020137992,0.000052293388,0.0036625934,0.0036502979,0.00011387242,0.00015452951,0.00087471656,0.000019234874],"about_ca_topic_score_codex":0.99257106,"about_ca_topic_score_gemma":0.9972312,"teacher_disagreement_score":0.022916615,"about_ca_system_score_codex":0.022916615,"about_ca_system_score_gemma":0.019540485,"threshold_uncertainty_score":0.16627246},"labels":[],"label_agreement":null},{"id":"W3015685527","doi":"","title":"Examining the relationship between mercury and organic matter in lake sediments along a latitudinal transect in subarctic Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Mercury impact and mitigation studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subarctic climate; Transect; Mercury (programming language); Oceanography; Organic matter; Geology; Physical geography; Environmental science; Ecology; Geography","score_opus":0.04090659136045235,"score_gpt":0.24711751465328474,"score_spread":0.2062109232928324,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015685527","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99928313,0.00010353349,0.000038695685,0.00004536842,0.0000017407156,0.0000034173238,0.00011690435,0.0000018910882,0.00040522346],"genre_scores_gemma":[0.9990144,0.00013515694,0.0001043489,0.000029802122,0.0000011942103,0.000003409459,0.00013166956,0.0000016131492,0.00057837204],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99971706,0.000035383717,0.000014121943,0.00005905123,0.000064128726,0.000110321176],"domain_scores_gemma":[0.99907684,0.00008901833,0.0001506081,0.000021002785,0.00046613297,0.00019633822],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036064044,0.00027887837,0.00020470473,0.0013015071,0.0026930894,0.0010367715,0.0005251592,0.0003433074,0.0006426763],"category_scores_gemma":[0.00087041757,0.00023975453,0.0002621351,0.002536635,0.0009622657,0.00029539445,0.00070811424,0.0003837746,0.0000767913],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00007676823,0.0000279538,0.99273795,0.000015745381,0.00007057034,0.00009962945,0.0023189515,0.00019589307,0.0015090994,0.00008170478,0.00014918372,0.0027165187],"study_design_scores_gemma":[0.0000016370707,0.000007660063,0.996956,0.000005978626,0.0000177509,0.000018928886,0.0024835952,0.00011924741,0.000096965574,0.000011133673,0.00027813087,0.0000029871005],"about_ca_topic_score_codex":0.99140656,"about_ca_topic_score_gemma":0.9974056,"teacher_disagreement_score":0.010676428,"about_ca_system_score_codex":0.010676428,"about_ca_system_score_gemma":0.013254534,"threshold_uncertainty_score":0.07746327},"labels":[],"label_agreement":null},{"id":"W3015691737","doi":"","title":"The influence of natural climate variability on Canadian Arctic glaciers during the last millennium","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Natural (archaeology); Arctic; Climatology; Climate change; Physical geography; The arctic; Geography; Environmental science; Oceanography; Geology; Archaeology","score_opus":0.006243165434695319,"score_gpt":0.2163483864635444,"score_spread":0.21010522102884907,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015691737","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98709446,0.0032609203,0.00010874473,0.002037602,0.00007211405,0.0000060959287,0.0027781297,0.000015602274,0.0046263007],"genre_scores_gemma":[0.9978588,0.0007891589,0.000053851385,0.00008150135,0.000019118292,0.0000015742611,0.0005703459,0.000006261396,0.0006193843],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993801,0.00005496545,0.000038353595,0.00010127121,0.00017110562,0.00025416567],"domain_scores_gemma":[0.99672526,0.00029399633,0.0005568779,0.00011627996,0.0018019818,0.00050555397],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011053976,0.00027461984,0.0003077862,0.0015534266,0.0025464878,0.0020020858,0.000819561,0.00055082503,0.0015369093],"category_scores_gemma":[0.0046872473,0.00028099967,0.00049099216,0.0020421203,0.001422579,0.0006708771,0.001134986,0.00062244816,0.00011458998],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012903487,0.000016273334,0.9857039,0.00006405655,0.00021513471,0.000108041255,0.0011434909,0.0015038839,0.0006826742,0.00075980066,0.0017446241,0.007929156],"study_design_scores_gemma":[0.0000023130515,0.0000042317774,0.9963315,0.000015614447,0.000026141224,0.000025013856,0.00046763849,0.0003698866,0.000062747466,0.000042765572,0.0026427484,0.000009436112],"about_ca_topic_score_codex":0.9884809,"about_ca_topic_score_gemma":0.9958448,"teacher_disagreement_score":0.022342268,"about_ca_system_score_codex":0.022342268,"about_ca_system_score_gemma":0.024117736,"threshold_uncertainty_score":0.16210526},"labels":[],"label_agreement":null},{"id":"W3015967393","doi":"","title":"The influence of vegetation cover and soil physical properties on deflagration of shallow landslides - Nova Friburgo, RJ / Brazil","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Vegetation (pathology); Cover (algebra); Landslide; Forestry; Nova (rocket); Nova scotia; Geography; Geology; Environmental science; Hydrology (agriculture); Physical geography; Archaeology; Geomorphology; Geotechnical engineering; Engineering","score_opus":0.01065046777727742,"score_gpt":0.2359363693099601,"score_spread":0.2252859015326827,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015967393","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99879384,0.00016245435,0.000028124752,0.000027379607,0.00000144837,0.0000028161617,0.00009891212,0.0000011996535,0.0008838186],"genre_scores_gemma":[0.99964714,0.00008068673,0.000024273611,0.000003490202,7.8732427e-7,0.0000010833413,0.000045111447,9.3662976e-7,0.00019654082],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998503,0.000029448485,0.000012070406,0.00002368727,0.000035044086,0.0000494662],"domain_scores_gemma":[0.9994336,0.00017195349,0.00013497466,0.00003557613,0.000120413344,0.000103383114],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024510224,0.00014722905,0.00018098202,0.00047960115,0.0002807798,0.00053568993,0.0002054942,0.00014966619,0.000825702],"category_scores_gemma":[0.0015041205,0.00010792188,0.0003132277,0.00048806155,0.00036764634,0.00014660285,0.00034073376,0.00017055846,0.00012420108],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000752546,0.000029491435,0.9905872,0.000023552457,0.00007526895,0.0002124556,0.00096335803,0.0002790347,0.00225665,0.0002838909,0.000069329304,0.0051445235],"study_design_scores_gemma":[9.043688e-7,0.000017365752,0.99864715,0.0000065996555,0.000019563404,0.000053524112,0.00058285514,0.00019428134,0.00014663894,0.000017327357,0.00031183963,0.0000019281538],"about_ca_topic_score_codex":0.20703836,"about_ca_topic_score_gemma":0.37826884,"teacher_disagreement_score":0.20703836,"about_ca_system_score_codex":0.0010326048,"about_ca_system_score_gemma":0.00087081705,"threshold_uncertainty_score":0.4116665},"labels":[],"label_agreement":null},{"id":"W3015976041","doi":"","title":"High resolution carbon isotope stratigraphy and glendonite occurrences of the Christopher Formation, Sverdrup Basin (Axel Heiberg Island, Canada): implications for mid Cretaceous high latitude climate change","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Paleontology and Stratigraphy of Fossils","field":"Earth and Planetary Sciences","cited_by":4,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sverdrup; Geology; Cretaceous; Stratigraphy; Paleontology; Latitude; Structural basin; Isotopes of carbon; Climate change; Oceanography; Paleoclimatology; Isotope","score_opus":0.014613624902337238,"score_gpt":0.2034419513252989,"score_spread":0.18882832642296166,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3015976041","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9980234,0.00024771987,0.000050066115,0.00003896328,0.0000023511896,0.0000044716567,0.0003895349,0.0000063887337,0.0012370991],"genre_scores_gemma":[0.99900156,0.00010643608,0.000095220974,0.000011047886,9.635847e-7,0.0000019561958,0.0002114543,0.000003917045,0.0005674812],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998242,0.0000088321,0.00000964962,0.000046637848,0.000047063157,0.00006354796],"domain_scores_gemma":[0.99973947,0.00002144125,0.000048817164,0.000012065593,0.00011683711,0.000061407634],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021584732,0.00020249035,0.00021098804,0.0016185443,0.0016751153,0.0009729238,0.0006758165,0.00036363688,0.0017578605],"category_scores_gemma":[0.0007187157,0.0002662181,0.00015845813,0.0017800811,0.0012204814,0.00036387666,0.0006204557,0.0002604719,0.00019796607],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014550175,0.000034967677,0.95453715,0.00006882508,0.00010036218,0.0003517644,0.008099227,0.0005729787,0.009379405,0.0005544839,0.0007274339,0.025427977],"study_design_scores_gemma":[0.0000021087874,0.000003536856,0.9980969,0.0000093368235,0.000006140378,0.000040160416,0.0010512641,0.00011355807,0.00010395076,0.000020813024,0.0005486745,0.0000036929102],"about_ca_topic_score_codex":0.97081304,"about_ca_topic_score_gemma":0.9934917,"teacher_disagreement_score":0.029186964,"about_ca_system_score_codex":0.0075870757,"about_ca_system_score_gemma":0.006017757,"threshold_uncertainty_score":0.058717668},"labels":[],"label_agreement":null},{"id":"W3016262145","doi":"","title":"Integrating Hydrology and Historical Geography in an Interdisciplinary Environmental Masters Program in Northern Ontario, Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Hydrology (agriculture); Physical geography; Environmental resource management; Environmental science; Geology","score_opus":0.015763043229666162,"score_gpt":0.21360850445550966,"score_spread":0.1978454612258435,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016262145","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9828941,0.00041960026,0.00038821748,0.0033389514,0.00003086101,0.00014992089,0.001620791,0.000037122216,0.011120444],"genre_scores_gemma":[0.9764064,0.00059703446,0.0014601068,0.0003739276,0.000012009376,0.000082552346,0.0010478606,0.000026306145,0.019993765],"study_design_codex":"observational","study_design_gemma":"not_applicable","domain_scores_codex":[0.99869543,0.00016419834,0.00004223325,0.00014841004,0.00038650236,0.0005632932],"domain_scores_gemma":[0.99540883,0.00023685918,0.0002817546,0.000102679674,0.0017078406,0.0022620745],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0013215716,0.00016307394,0.0002611161,0.0011740699,0.006076292,0.0018025322,0.0011819939,0.00036191905,0.002385368],"category_scores_gemma":[0.002517599,0.0002581191,0.00017517207,0.0028307969,0.00099435,0.0008269315,0.0017354608,0.0007439652,0.00026287415],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":true,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000107955624,0.00037332813,0.8648189,0.00009265382,0.000033869568,0.00032567678,0.029463721,0.0010819996,0.0010115823,0.0017475692,0.014581122,0.08636165],"study_design_scores_gemma":[0.000009849753,0.000047321537,0.9257619,0.00006844971,0.000015357076,0.000046548976,0.045792814,0.0010772381,0.00034734327,0.00024128839,0.026572108,0.000019685844],"about_ca_topic_score_codex":0.99672014,"about_ca_topic_score_gemma":0.99947673,"teacher_disagreement_score":0.926221,"about_ca_system_score_codex":0.07377896,"about_ca_system_score_gemma":0.16818932,"threshold_uncertainty_score":0.53530633},"labels":[],"label_agreement":null},{"id":"W3016430337","doi":"","title":"Prolonged episodic Paleoproterozoic metamorphism in the Thelon Tectonic Zone, Canada: an in-situ SHRIMP/EPMA monazite geochronology study","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geochronology; Monazite; Metamorphism; Geology; Geochemistry; Tectonics; Shrimp; Petrology; Zircon; Paleontology","score_opus":0.01836772380319282,"score_gpt":0.22030575311281592,"score_spread":0.2019380293096231,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016430337","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99769694,0.00013770183,0.00007078218,0.000040768264,0.000002245338,0.000008702203,0.00073784834,0.0000063396933,0.0012986582],"genre_scores_gemma":[0.9981331,0.00014049269,0.00014398646,0.000023314105,0.0000017192867,0.0000055342334,0.000455906,0.0000059425433,0.0010900542],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998368,0.0000075328635,0.0000076130864,0.00003926803,0.000040998206,0.00006769692],"domain_scores_gemma":[0.999506,0.000019405632,0.00006050376,0.000015282232,0.000311147,0.000087711414],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002581602,0.00027050622,0.00031888118,0.0015155142,0.002420519,0.0011709403,0.0007550842,0.00035961528,0.0013396798],"category_scores_gemma":[0.00051695405,0.00024267899,0.00021836403,0.0028909154,0.0009362306,0.0003685814,0.0007141035,0.00034560543,0.00022474442],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022858895,0.000056670564,0.97040313,0.00005746903,0.000086695334,0.00030984086,0.004821826,0.0004665888,0.008262379,0.00033039213,0.0006867823,0.014289665],"study_design_scores_gemma":[0.0000033797983,0.000008168936,0.99721247,0.000011219247,0.000019484503,0.0000409535,0.0010722831,0.00019895963,0.00023129077,0.000013080503,0.0011840427,0.0000047316466],"about_ca_topic_score_codex":0.9901502,"about_ca_topic_score_gemma":0.9968746,"teacher_disagreement_score":0.015322662,"about_ca_system_score_codex":0.015322662,"about_ca_system_score_gemma":0.014499654,"threshold_uncertainty_score":0.111174226},"labels":[],"label_agreement":null},{"id":"W3016439127","doi":"","title":"Controls on the distribution of arsenic in lake sediments impacted by 65 years of gold ore processing in subarctic Canada: the role of organic matter","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Heavy metals in environment","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subarctic climate; Organic matter; Geology; Arsenic; Geochemistry; Environmental science; Oceanography; Ecology; Chemistry","score_opus":0.005393358085712144,"score_gpt":0.2054351228754448,"score_spread":0.20004176478973265,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016439127","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990075,0.00008656859,0.000029026394,0.000033776178,0.0000016894968,0.0000026278724,0.00025329672,0.0000030262554,0.00058244634],"genre_scores_gemma":[0.99881494,0.00007417516,0.00005158422,0.000018437913,7.3711846e-7,0.0000013564382,0.00018689327,0.0000021135995,0.00084978394],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977833,0.000015173556,0.000011259738,0.000043724707,0.000052996278,0.000098509125],"domain_scores_gemma":[0.9995914,0.00001898077,0.00006761315,0.000009669682,0.00022099353,0.00009129486],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023036193,0.00019478025,0.00017190824,0.000760389,0.0013760548,0.0009253448,0.0003563382,0.0003002609,0.0008963878],"category_scores_gemma":[0.00033643923,0.0001543082,0.00020984428,0.0008323534,0.00073226605,0.00023063135,0.00044887685,0.00020466257,0.00011012328],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00077422784,0.000058641675,0.9596434,0.000044214852,0.0001591388,0.00018314282,0.001625406,0.0007052161,0.029354107,0.00033950986,0.00042978398,0.006683235],"study_design_scores_gemma":[0.0000027859385,0.000014822227,0.9977731,0.0000042802317,0.00001552355,0.000020609106,0.0008438858,0.00016440738,0.00060340576,0.000024700474,0.00052814506,0.000004324429],"about_ca_topic_score_codex":0.9633195,"about_ca_topic_score_gemma":0.98227054,"teacher_disagreement_score":0.03668052,"about_ca_system_score_codex":0.010741692,"about_ca_system_score_gemma":0.008100666,"threshold_uncertainty_score":0.07793683},"labels":[],"label_agreement":null},{"id":"W3016471469","doi":"","title":"Ecological and geochemical impacts of exotic earthworm dispersal in forest ecosystems of Eastern Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Invertebrate Taxonomy and Ecology","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Earthworm; Ecosystem; Biological dispersal; Ecology; Environmental science; Forest ecology; Geography; Agroforestry; Environmental protection; Forestry; Biology; Population","score_opus":0.01438315864294918,"score_gpt":0.1716807025503787,"score_spread":0.15729754390742953,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016471469","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99924314,0.00009873377,0.000018286846,0.00002822117,7.781035e-7,0.0000017561745,0.00008102456,0.000001142748,0.0005269204],"genre_scores_gemma":[0.999383,0.000106406165,0.00003490603,0.00000987951,5.288204e-7,8.932159e-7,0.00006586105,6.974906e-7,0.00039787253],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981886,0.000016178274,0.0000077504665,0.000025850935,0.000030216119,0.00010114016],"domain_scores_gemma":[0.9995461,0.000035241825,0.00009199593,0.000012186499,0.00014361268,0.00017090849],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016756995,0.00014224103,0.00014562812,0.0009935162,0.0014739113,0.0008598689,0.00035087115,0.00018914665,0.0012187423],"category_scores_gemma":[0.000520859,0.00010569976,0.00017018855,0.0011632196,0.00090386224,0.00030379483,0.0007461779,0.0002145972,0.00006227083],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014475366,0.000028916129,0.98818934,0.000027076718,0.000048568592,0.00021839606,0.0020398486,0.00042952888,0.002386275,0.00042083196,0.0002094308,0.005856991],"study_design_scores_gemma":[0.00000155061,0.0000061734177,0.99739933,0.0000052918826,0.000006968983,0.000032885277,0.0020495919,0.00015234605,0.00005051884,0.000027066095,0.00026543334,0.0000029152288],"about_ca_topic_score_codex":0.9763282,"about_ca_topic_score_gemma":0.9963108,"teacher_disagreement_score":0.023671806,"about_ca_system_score_codex":0.009747521,"about_ca_system_score_gemma":0.006855079,"threshold_uncertainty_score":0.07072353},"labels":[],"label_agreement":null},{"id":"W3016628608","doi":"","title":"Exploring the Monitoring Capacity of a Cabled Coastal Observatory in the Arctic as a Proxy for Seasonal Phytoplankton Dynamics: A 6-year time-series in Cambridge Bay, Nunavut, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Oceanography; Arctic; Observatory; Phytoplankton; Proxy (statistics); Series (stratigraphy); Circumpolar star; The arctic; Environmental science; Geology; Climatology; Ecology","score_opus":0.022138647782371665,"score_gpt":0.19536765738608786,"score_spread":0.17322900960371618,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016628608","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9964497,0.00016493148,0.0001287889,0.00017379399,0.000009472812,0.000011075526,0.0019773685,0.000009826727,0.0010748481],"genre_scores_gemma":[0.99741024,0.000124393,0.0002371361,0.000029017761,0.000004869254,0.0000061035576,0.001421049,0.0000060647176,0.0007610504],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99947315,0.000058700873,0.000027094578,0.00012424203,0.00015650163,0.00016027957],"domain_scores_gemma":[0.9979056,0.0002856519,0.00022811086,0.00007042023,0.0012112976,0.00029890734],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00089689234,0.0003532264,0.00031706534,0.0014035692,0.0011590216,0.0015046449,0.0009774212,0.0004433467,0.0006661675],"category_scores_gemma":[0.0022342997,0.00028135916,0.00028629453,0.0027409757,0.00060795626,0.0005374357,0.0009319125,0.0004568288,0.00014050932],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000114479335,0.000048368816,0.9876486,0.000028613775,0.00009429628,0.00014745364,0.0011314863,0.0022738802,0.0015081235,0.0001651752,0.0011582099,0.005681297],"study_design_scores_gemma":[0.0000064296837,0.000010626993,0.99323374,0.00001783756,0.000025252626,0.000018262743,0.0016207321,0.0037846514,0.00019243282,0.000017338736,0.0010620195,0.0000105731315],"about_ca_topic_score_codex":0.98941797,"about_ca_topic_score_gemma":0.9936631,"teacher_disagreement_score":0.011248188,"about_ca_system_score_codex":0.011248188,"about_ca_system_score_gemma":0.0100453105,"threshold_uncertainty_score":0.08161169},"labels":[],"label_agreement":null},{"id":"W3016641631","doi":"","title":"4300-Year Old 'Glacier Forests', Southern Coast Mountains, British Columbia and their Global Context","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Context (archaeology); Physical geography; Geography; Geology; Archaeology; Oceanography","score_opus":0.008289348720859208,"score_gpt":0.20172701919306937,"score_spread":0.19343767047221017,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016641631","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9860081,0.0012213718,0.000032129476,0.0005614644,0.000011332653,0.000010199411,0.0037204062,0.00000891676,0.008426156],"genre_scores_gemma":[0.9901721,0.0011726962,0.00008015002,0.00013860242,0.0000048632337,0.000009367836,0.0017416392,0.000005510293,0.0066751377],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984765,0.00001464334,0.0000080767095,0.000021676404,0.00001932099,0.00008853799],"domain_scores_gemma":[0.9994838,0.000030714924,0.00007476482,0.000015162332,0.00020450828,0.00019107643],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018645941,0.00017542379,0.00015646471,0.0015690783,0.0022620545,0.0013504865,0.00039963558,0.00023571114,0.0034200116],"category_scores_gemma":[0.0005624353,0.0001334354,0.000097360105,0.0039165365,0.0006351416,0.00056084304,0.0008537804,0.00046715056,0.00025543736],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00009730365,0.0000472909,0.9519405,0.000121870835,0.00007379535,0.0006744136,0.008074161,0.0001773058,0.00072307483,0.001016048,0.006936459,0.03011773],"study_design_scores_gemma":[0.0000018588404,0.000003908762,0.98796415,0.00002780609,0.00001282606,0.00006112602,0.005783943,0.000040249306,0.000034143377,0.000058250254,0.006007307,0.0000043684104],"about_ca_topic_score_codex":0.97972095,"about_ca_topic_score_gemma":0.99685055,"teacher_disagreement_score":0.02027905,"about_ca_system_score_codex":0.0074031577,"about_ca_system_score_gemma":0.0076035666,"threshold_uncertainty_score":0.053713858},"labels":[],"label_agreement":null},{"id":"W3016649709","doi":"","title":"Structural characterization of the Nemiscau subprovince, Superior Province, Canada: tectonic implications for the development of Archean sedimentary basins","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archean; Geology; Tectonics; Sedimentary rock; Sedimentary basin; Geochemistry; Earth science; Paleontology","score_opus":0.016172937256887867,"score_gpt":0.19031903748954077,"score_spread":0.1741461002326529,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016649709","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9847194,0.00058303826,0.00043574785,0.0003425762,0.0000054183524,0.000053028787,0.0025605045,0.00002932211,0.011271025],"genre_scores_gemma":[0.99428684,0.00028139513,0.00077087816,0.00003974066,0.0000018173988,0.000014067476,0.0009530167,0.000011734283,0.003640536],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997098,0.00001175306,0.000015267631,0.00004951905,0.00010660056,0.000107068],"domain_scores_gemma":[0.9991708,0.00003905717,0.00008874662,0.00002046179,0.0005486777,0.00013234638],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002877251,0.00026364648,0.00026849846,0.0023725564,0.0034372527,0.0018321171,0.00092001463,0.0002653001,0.003071933],"category_scores_gemma":[0.0011730643,0.00023062411,0.00017672307,0.004607943,0.0012590945,0.00033561367,0.0010740197,0.00038162793,0.0002911826],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013809341,0.000041235864,0.9182572,0.00017503236,0.00006438865,0.00033372364,0.008571517,0.0021619105,0.007127569,0.006598434,0.0031667876,0.053364094],"study_design_scores_gemma":[0.0000047745793,0.000009847928,0.98661345,0.000052193755,0.000016532113,0.000100295416,0.005431799,0.0013337195,0.00042700415,0.00022360278,0.005776644,0.00001017806],"about_ca_topic_score_codex":0.99605465,"about_ca_topic_score_gemma":0.9991561,"teacher_disagreement_score":0.026647924,"about_ca_system_score_codex":0.026647924,"about_ca_system_score_gemma":0.05117694,"threshold_uncertainty_score":0.19334513},"labels":[],"label_agreement":null},{"id":"W3016689519","doi":"","title":"Scoping the risks associated with accelerated coastal permafrost thaw: lessons from Bykovsky (Sakha Republic) and Tuktoyaktuk (Northwest Territories)","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Geography; Environmental protection; Environmental resource management; Environmental planning; Physical geography; Environmental science; Geology; Oceanography","score_opus":0.09190569263894824,"score_gpt":0.29831932550944584,"score_spread":0.2064136328704976,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016689519","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.73997605,0.047742195,0.002873985,0.15067549,0.0009457042,0.00009155583,0.0013648252,0.00005270174,0.056277387],"genre_scores_gemma":[0.96530503,0.024218036,0.0013236606,0.005340117,0.00024966616,0.000023756553,0.00024228956,0.000033318327,0.0032640307],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99929726,0.00029173272,0.00005036074,0.0000750637,0.00011714104,0.00016847106],"domain_scores_gemma":[0.9947114,0.0025527459,0.0007841366,0.0004546916,0.0011202263,0.00037684923],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0039701555,0.00048656957,0.0004398247,0.00072208006,0.0016677442,0.0025552122,0.0012460521,0.0017752462,0.0027254117],"category_scores_gemma":[0.007585712,0.00017367574,0.00055310613,0.0011417766,0.0024493388,0.0020768207,0.0027990777,0.0031032898,0.0002196673],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001300545,0.00030643214,0.3657744,0.0022511468,0.0010194455,0.0069319513,0.054561485,0.011124729,0.0030069256,0.03707099,0.062046386,0.4546055],"study_design_scores_gemma":[0.000115371724,0.0006503448,0.54091495,0.0073211608,0.00075438805,0.0018994464,0.1647203,0.004071658,0.0045867465,0.08972346,0.18496488,0.0002773304],"about_ca_topic_score_codex":0.15023576,"about_ca_topic_score_gemma":0.26589018,"teacher_disagreement_score":0.8497642,"about_ca_system_score_codex":0.0036914777,"about_ca_system_score_gemma":0.0066093607,"threshold_uncertainty_score":0.29872262},"labels":[],"label_agreement":null},{"id":"W3016696555","doi":"","title":"The role of lichen on peatland development in the Hudson Bay Lowlands, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Lichen and fungal ecology","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Bay; Geography; Bog; Physical geography; Vegetation (pathology); Lichen; Geology; Archaeology; Ecology","score_opus":0.013949420894784348,"score_gpt":0.18143111425572567,"score_spread":0.16748169336094132,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016696555","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99667275,0.0006624155,0.000041847085,0.000113547,0.000003101298,0.0000057265834,0.00024000219,0.000005607227,0.0022551205],"genre_scores_gemma":[0.99830914,0.00031225238,0.00006101574,0.000016358608,0.0000013815712,0.000001824885,0.00008398975,0.000002144158,0.001211885],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99954456,0.00004377451,0.000014094134,0.00003647431,0.00008451273,0.00027661753],"domain_scores_gemma":[0.9989858,0.00007981351,0.00013430852,0.000019008765,0.00040147014,0.00037960743],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032793081,0.00019653239,0.00026783985,0.0017394033,0.0019192246,0.0017117043,0.0006277801,0.00024116793,0.001804273],"category_scores_gemma":[0.0007718759,0.00016574803,0.00014002167,0.0015428226,0.0015128325,0.00037812386,0.00077886897,0.0002804708,0.00016053434],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022700551,0.00005580417,0.96575034,0.00010020744,0.000069112575,0.0005190176,0.0033512118,0.00042946264,0.004632019,0.00081987324,0.0007504576,0.023295444],"study_design_scores_gemma":[0.0000021444866,0.000011481518,0.99508566,0.000025139432,0.000007080246,0.000034322984,0.0033888367,0.00015653548,0.00014536045,0.000042689535,0.0010960561,0.0000046920286],"about_ca_topic_score_codex":0.9849672,"about_ca_topic_score_gemma":0.997083,"teacher_disagreement_score":0.016258514,"about_ca_system_score_codex":0.016258514,"about_ca_system_score_gemma":0.013764791,"threshold_uncertainty_score":0.11796433},"labels":[],"label_agreement":null},{"id":"W3016730955","doi":"","title":"Quantification of tsunami hazard on Canada's Pacific Coast; implications for risk assessment","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Tropical and Extratropical Cyclones Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Risk assessment; Hazard analysis; Hazard; Geography; Forensic engineering; Engineering; Computer science; Computer security","score_opus":0.05562829999666419,"score_gpt":0.30215726644594004,"score_spread":0.24652896644927585,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016730955","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.94579345,0.0017476024,0.018980943,0.0019657705,0.00004249945,0.0002707195,0.00722869,0.00022441702,0.023745954],"genre_scores_gemma":[0.9871389,0.0008173984,0.008275797,0.00006633261,0.000010177218,0.000027504866,0.001155299,0.0000146649245,0.0024939836],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99941564,0.0001168892,0.000030894964,0.000069762325,0.0002690289,0.00009789575],"domain_scores_gemma":[0.9979976,0.00041439894,0.00029927946,0.000098014025,0.0010107727,0.000179843],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015687586,0.00082071696,0.00033413075,0.0027008462,0.0012835524,0.0027313086,0.001147671,0.00038231633,0.0017090922],"category_scores_gemma":[0.0056084297,0.0002518112,0.00044618818,0.0035978258,0.00077042973,0.0010384208,0.00093444384,0.0006179534,0.00009092683],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023963414,0.00014549968,0.5173717,0.00042716876,0.0005907102,0.00023570622,0.0007100646,0.3543604,0.0026533543,0.022496281,0.005156793,0.095612645],"study_design_scores_gemma":[0.000048570706,0.00010704358,0.563636,0.000338718,0.00033327812,0.00010873674,0.004328286,0.40296838,0.003200671,0.016714321,0.008091777,0.00012415911],"about_ca_topic_score_codex":0.97842205,"about_ca_topic_score_gemma":0.98629445,"teacher_disagreement_score":0.02351461,"about_ca_system_score_codex":0.02351461,"about_ca_system_score_gemma":0.0355213,"threshold_uncertainty_score":0.17061126},"labels":[],"label_agreement":null},{"id":"W3016764130","doi":"10.13140/rg.2.2.36478.79688","title":"Spatio-temporal dynamics of evapotranspiration from forested, ephemeral wetlands and its implication for hydrologic connectivity in the Western Boreal Plain in Alberta, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ephemeral key; Wetland; Evapotranspiration; Hydrology (agriculture); Boreal; Groundwater recharge; Taiga; Environmental science; Geology; Physical geography; Geography; Groundwater; Forestry; Ecology; Aquifer","score_opus":0.01194908797973659,"score_gpt":0.23735035407828958,"score_spread":0.225401266098553,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016764130","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984359,0.00012117639,0.00005890226,0.00008212321,0.00000329904,0.000003247574,0.0005398597,0.0000055967735,0.0007498988],"genre_scores_gemma":[0.9989569,0.00007742992,0.000068733745,0.0000112814405,0.0000019582924,0.0000020878363,0.00030550268,0.0000020579819,0.0005740272],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983215,0.0000151344975,0.000012022145,0.00003539383,0.000037057733,0.00006818723],"domain_scores_gemma":[0.9994326,0.00008729026,0.00012912122,0.000018356299,0.00019834201,0.00013423794],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024032417,0.000108129345,0.00015863516,0.0009774435,0.00091965316,0.0011646814,0.000489313,0.00026822725,0.0013667764],"category_scores_gemma":[0.0008190013,0.00015700782,0.0001813714,0.0015254783,0.0006847402,0.0003541582,0.00054667494,0.0002730492,0.00012393323],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010132924,0.000039442733,0.98797506,0.000021580208,0.0000722904,0.0002054113,0.0016958745,0.0012717142,0.0010847098,0.00034761045,0.00093490665,0.0062501333],"study_design_scores_gemma":[0.0000016295638,0.0000025943707,0.9980363,0.000004856023,0.0000067647197,0.000019035431,0.0009180093,0.00057729986,0.00003212102,0.000025237217,0.0003719702,0.000004193966],"about_ca_topic_score_codex":0.9670679,"about_ca_topic_score_gemma":0.98946595,"teacher_disagreement_score":0.032932103,"about_ca_system_score_codex":0.0058917752,"about_ca_system_score_gemma":0.0046809535,"threshold_uncertainty_score":0.06625205},"labels":[],"label_agreement":null},{"id":"W3016811252","doi":"","title":"Examination of temporal and spatial variability of NO2 VCDs measured using mobile-MAX-DOAS in Toronto, Canada.","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Air Quality Monitoring and Forecasting","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Cartography; Optometry; Medicine","score_opus":0.029614774913170265,"score_gpt":0.27641805424669036,"score_spread":0.2468032793335201,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016811252","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97872144,0.000882703,0.0006658707,0.00061998295,0.000026361628,0.000024763676,0.009710186,0.000063818654,0.009284857],"genre_scores_gemma":[0.9957312,0.00019761198,0.0002564046,0.000050929717,0.00000577311,0.000006584836,0.0016759145,0.0000061897576,0.0020694423],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997377,0.000017549895,0.000012637968,0.000060377704,0.00008481393,0.000086848595],"domain_scores_gemma":[0.9991399,0.000066736415,0.00010807676,0.00002754101,0.0005274406,0.00013039466],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020409258,0.00028489062,0.00018575598,0.0007527528,0.001052194,0.0007976913,0.00062285824,0.00032164287,0.0012482865],"category_scores_gemma":[0.00082935527,0.00022537594,0.00020587172,0.0021342603,0.0003831077,0.00021339499,0.00040931688,0.00038183387,0.00017528234],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027300572,0.000034248646,0.96913874,0.00010219005,0.00012864418,0.00047958456,0.0016845214,0.0017540742,0.0058777444,0.0006571389,0.005974594,0.013895409],"study_design_scores_gemma":[0.000002376492,0.000005611164,0.9970606,0.000009157035,0.000013758193,0.000019243995,0.0005894655,0.00071395386,0.00016203207,0.00001279308,0.0014052427,0.000005799781],"about_ca_topic_score_codex":0.99398935,"about_ca_topic_score_gemma":0.9964406,"teacher_disagreement_score":0.011944901,"about_ca_system_score_codex":0.011944901,"about_ca_system_score_gemma":0.010130694,"threshold_uncertainty_score":0.08666676},"labels":[],"label_agreement":null},{"id":"W3016831777","doi":"","title":"Comparison of rainfall and stemflow peak intensities and infiltration patterns for a mature coastal forest in British Columbia, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil erosion and sediment transport","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Stemflow; Environmental science; Infiltration (HVAC); Forestry; Hydrology (agriculture); Geography; Meteorology; Geology; Throughfall; Soil science; Soil water","score_opus":0.02080531442017754,"score_gpt":0.23096884293337128,"score_spread":0.21016352851319373,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016831777","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9980178,0.000119592616,0.000046564237,0.000034722543,0.0000020439084,0.000009557738,0.00091030827,0.0000071154736,0.00085229083],"genre_scores_gemma":[0.99802077,0.00011362903,0.000111363785,0.000021817563,0.0000013036605,0.0000062323247,0.00084895117,0.000003961348,0.0008719052],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977857,0.000018560475,0.000018227453,0.000048473543,0.00004510645,0.000091151174],"domain_scores_gemma":[0.99927133,0.000069053705,0.00006186653,0.000020931924,0.00039768507,0.00017920378],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022745135,0.00023546204,0.00026243215,0.0015107278,0.0016770877,0.0010724063,0.00061524316,0.00028936274,0.0013694259],"category_scores_gemma":[0.00067869254,0.00023844438,0.00024079089,0.0030357996,0.00047282493,0.0002479018,0.0004912775,0.00025961528,0.00018571844],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001657891,0.000044430024,0.98658854,0.00003110644,0.00006836948,0.0003080242,0.0011244887,0.0005943914,0.001355202,0.00009321538,0.00077714823,0.008849252],"study_design_scores_gemma":[0.0000041300445,0.0000053466833,0.9983127,0.000007304127,0.000010010501,0.000025477526,0.0009460712,0.00029376138,0.00005011345,0.000005568501,0.00033469638,0.000004752568],"about_ca_topic_score_codex":0.99345547,"about_ca_topic_score_gemma":0.99806887,"teacher_disagreement_score":0.011754767,"about_ca_system_score_codex":0.011754767,"about_ca_system_score_gemma":0.009044642,"threshold_uncertainty_score":0.08528721},"labels":[],"label_agreement":null},{"id":"W3016836485","doi":"","title":"Labrador Sea surface temperature control on the summer weather in the Eastern Europe","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Environmental science; Sea surface temperature; Meteorology; Geography; Geology","score_opus":0.011169962877282086,"score_gpt":0.1954712044306728,"score_spread":0.18430124155339073,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016836485","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9989526,0.00016124402,0.000020697087,0.00003587449,0.0000050856834,5.763849e-7,0.00007895675,0.0000025144716,0.00074233685],"genre_scores_gemma":[0.9993293,0.000080093916,0.000014010418,0.000018822126,0.000007027012,6.8655305e-7,0.00010298975,0.0000041522803,0.00044292022],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985754,0.000041529165,0.000010432473,0.000024479155,0.000009981514,0.000055937344],"domain_scores_gemma":[0.99970955,0.00007170286,0.000059101996,0.00002601531,0.000050997573,0.00008260303],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033796058,0.00019196374,0.00029901337,0.00040096065,0.0003238867,0.0007749695,0.00022658297,0.00021595952,0.00150894],"category_scores_gemma":[0.0006175861,0.00010286428,0.00033431654,0.00034268887,0.0003666399,0.00033540162,0.00039243908,0.00019417983,0.00020347915],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0046108253,0.00021466934,0.9543974,0.000059395883,0.00063126726,0.00036145686,0.0011498978,0.0036223815,0.014543539,0.0010541786,0.0013089651,0.018046137],"study_design_scores_gemma":[0.000008645701,0.00002247348,0.9987658,0.000004007517,0.000042813965,0.000010705687,0.00021125627,0.00038384524,0.00016580334,0.000030644806,0.0003509081,0.0000031705247],"about_ca_topic_score_codex":0.08974121,"about_ca_topic_score_gemma":0.1382129,"teacher_disagreement_score":0.08974121,"about_ca_system_score_codex":0.0007101731,"about_ca_system_score_gemma":0.00043495523,"threshold_uncertainty_score":0.17843771},"labels":[],"label_agreement":null},{"id":"W3016934791","doi":"","title":"Potential methane production and oxidation in soil reclamation covers of an oil sands mining site in Alberta, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Landfill Environmental Impact Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Land reclamation; Oil sands; Environmental science; Methane; Production (economics); Mining engineering; Geology; Archaeology; Geography; Chemistry","score_opus":0.009067478145479294,"score_gpt":0.20955529338835002,"score_spread":0.20048781524287074,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016934791","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99841905,0.00005613536,0.000052207073,0.000024853629,9.219161e-7,0.00000796136,0.00020705581,0.0000036662564,0.0012282068],"genre_scores_gemma":[0.99803644,0.00008242193,0.00012382594,0.000009565075,6.3642824e-7,0.0000030961376,0.00019144038,0.0000017168658,0.0015508358],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997869,0.000011770905,0.0000069813696,0.000024029503,0.000098029384,0.00007212272],"domain_scores_gemma":[0.9998388,0.000015761436,0.000016667092,0.0000030222843,0.000096888456,0.000028742947],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013556215,0.000266262,0.00019280333,0.00090561603,0.002351221,0.00080939673,0.0006919196,0.0003139449,0.0008671411],"category_scores_gemma":[0.00022683498,0.00020773726,0.00020547913,0.0012801376,0.0004770726,0.00018575492,0.00034528677,0.00020991992,0.00012055235],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008310319,0.0002205361,0.9446415,0.00011165466,0.00009300092,0.0015111753,0.003608819,0.004661982,0.019120935,0.00033677372,0.0009080243,0.023954732],"study_design_scores_gemma":[0.000010558679,0.000047470778,0.9881485,0.000015997457,0.000025305148,0.0001089749,0.0054923003,0.0028296418,0.0020461364,0.000042448406,0.0012208109,0.000011782563],"about_ca_topic_score_codex":0.98631173,"about_ca_topic_score_gemma":0.9949567,"teacher_disagreement_score":0.013688266,"about_ca_system_score_codex":0.012302936,"about_ca_system_score_gemma":0.008169695,"threshold_uncertainty_score":0.08926445},"labels":[],"label_agreement":null},{"id":"W3016976426","doi":"","title":"Superconducting Gravity Effects of Earthquake at Cascadia Subduction Zone on Vancouver Island, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Earthquake Detection and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subduction; Geology; Seismology; Episodic tremor and slip; Tectonics","score_opus":0.004952399732208682,"score_gpt":0.16552531561694053,"score_spread":0.16057291588473185,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3016976426","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99648106,0.000066880275,0.000032724533,0.00013144819,0.000008494118,0.00000910558,0.0010962402,0.00001393056,0.002160079],"genre_scores_gemma":[0.997865,0.000076876844,0.00004209676,0.000017375134,0.0000026105877,0.0000030548551,0.000630268,0.0000043890564,0.0013583209],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999711,0.000025779733,0.000018107663,0.000035998237,0.0001042181,0.000104913466],"domain_scores_gemma":[0.9982279,0.00011750897,0.00011527274,0.00003468745,0.0010979876,0.00040656843],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023812018,0.00034587982,0.0003891137,0.0013511138,0.0019754714,0.0010002533,0.00068061176,0.0005050763,0.0027129026],"category_scores_gemma":[0.0012969064,0.00024456697,0.00026824666,0.0020874597,0.00058507663,0.00023612026,0.0007504538,0.0005215013,0.00027284308],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00043386914,0.00009287552,0.9768684,0.000058012247,0.00013314161,0.0008641389,0.0013855235,0.0053422577,0.0033501834,0.00032164776,0.0037837815,0.007366173],"study_design_scores_gemma":[0.000012678987,0.000021160959,0.9960024,0.000011580583,0.000022521575,0.00002934741,0.0013831359,0.001434999,0.00017493224,0.000018539264,0.0008780267,0.000010670751],"about_ca_topic_score_codex":0.9896762,"about_ca_topic_score_gemma":0.996042,"teacher_disagreement_score":0.01226615,"about_ca_system_score_codex":0.01226615,"about_ca_system_score_gemma":0.013398918,"threshold_uncertainty_score":0.08899754},"labels":[],"label_agreement":null},{"id":"W3017054501","doi":"","title":"Life history traits of the bivalve mollusk textit{Saxidomus gigantea} from the coast of British Columbia: Insights for paleoclimate and archaeological applications","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine Bivalve and Aquaculture Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Paleoclimatology; Archaeology; Fire history; Gigantea; Taphonomy; History; Geology; Geography; Oceanography; Biology; Climate change","score_opus":0.010519767160575894,"score_gpt":0.19924606283845603,"score_spread":0.18872629567788013,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017054501","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99894506,0.000081844366,0.000022387405,0.000018655619,7.7866855e-7,0.0000017505179,0.0003083894,0.0000017819822,0.0006192055],"genre_scores_gemma":[0.99864346,0.000078657205,0.000050232757,0.000016352044,5.3295264e-7,0.000002358635,0.00039300878,0.0000021777432,0.0008133672],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987864,0.000009829278,0.000009020471,0.000030793064,0.00002886116,0.00004279958],"domain_scores_gemma":[0.9996283,0.00002167847,0.000060866416,0.000014782248,0.00018473715,0.00008958506],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014665864,0.00023803984,0.00021736031,0.0013097241,0.0015389082,0.00077618647,0.00043220687,0.00028091046,0.0016692278],"category_scores_gemma":[0.0004959851,0.00019584791,0.00012212858,0.0015738598,0.00048665298,0.00025524676,0.0005327094,0.00036474946,0.0003922401],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010973908,0.000021266831,0.97216034,0.000031781,0.000036457535,0.0002609943,0.004658832,0.00009787025,0.008435945,0.000053394488,0.0005136766,0.013619829],"study_design_scores_gemma":[5.076005e-7,0.000005668585,0.998406,0.0000047812496,0.0000045497472,0.000049202128,0.0010868204,0.00003517646,0.00008640597,0.0000039426864,0.00031444573,0.000002652248],"about_ca_topic_score_codex":0.85254484,"about_ca_topic_score_gemma":0.96300143,"teacher_disagreement_score":0.14745516,"about_ca_system_score_codex":0.0024857786,"about_ca_system_score_gemma":0.0013523671,"threshold_uncertainty_score":0.29664707},"labels":[],"label_agreement":null},{"id":"W3017091804","doi":"","title":"Pleistocene glacial/interglacial contrasts in the Labrador Sea prior and after the Mid-Brunhes transition","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Interglacial; Pleistocene; Glacial period; Geology; Paleontology; Oceanography; Physical geography; Geography","score_opus":0.010919179603458307,"score_gpt":0.22468391048080436,"score_spread":0.21376473087734604,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017091804","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990152,0.00010211885,0.0000128481925,0.000046325604,0.000002341303,6.5742506e-7,0.000117539654,0.000003997729,0.0006988337],"genre_scores_gemma":[0.99945074,0.000043585795,0.000018450231,0.00001431646,0.0000023226153,9.398527e-7,0.00017361545,0.000005543405,0.00029059124],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978155,0.000028801747,0.000016492342,0.000047293663,0.00001512532,0.00011074826],"domain_scores_gemma":[0.9996209,0.0000654805,0.000119638935,0.000023565179,0.00008898844,0.00008137531],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038386224,0.00016869779,0.0002316968,0.0010953159,0.00089638354,0.0011648119,0.00042089348,0.00032908868,0.0022237138],"category_scores_gemma":[0.0009953555,0.0001754161,0.00024798053,0.001333643,0.00080092193,0.00057755393,0.0008420023,0.00039955613,0.0002932249],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00096107915,0.00006419932,0.9687941,0.000044781515,0.00012279904,0.00029196343,0.0078686,0.00045343864,0.006192386,0.00068176334,0.0005158831,0.014008894],"study_design_scores_gemma":[0.0000031310085,0.000008372798,0.99849904,0.0000055910987,0.000008307752,0.000015700045,0.0009314674,0.00007979775,0.00008823469,0.000015401754,0.0003424553,0.000002623951],"about_ca_topic_score_codex":0.3716177,"about_ca_topic_score_gemma":0.68518394,"teacher_disagreement_score":0.6283823,"about_ca_system_score_codex":0.0018460248,"about_ca_system_score_gemma":0.0014672533,"threshold_uncertainty_score":0.7389093},"labels":[],"label_agreement":null},{"id":"W3017167216","doi":"","title":"Vertical Profiles of SO2 and NO2 in the Alberta Oil Sands: MAX-DOAS Measurements and Comparison to in-situ Instrumentation","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Instrumentation (computer programming); In situ; Environmental science; Geology; Remote sensing; Meteorology; Geography","score_opus":0.04881460454485487,"score_gpt":0.2762415951881917,"score_spread":0.22742699064333682,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017167216","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9957611,0.00005123719,0.00046804873,0.00003468403,0.000005824604,0.000004412773,0.00068075693,0.000054037995,0.0029399667],"genre_scores_gemma":[0.9979843,0.00005611846,0.0005238261,0.000009343956,0.000002369149,0.0000022891209,0.00031818388,0.00000694521,0.001096585],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999126,0.0000034413038,0.0000027877381,0.000018721423,0.00004211095,0.000020438665],"domain_scores_gemma":[0.99991834,0.000008174254,0.000009143004,0.0000051834295,0.000041986317,0.000017106418],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00010514153,0.0002682022,0.0001690938,0.00048389632,0.00058524957,0.00045456458,0.00039437556,0.00022458825,0.00068599393],"category_scores_gemma":[0.0001848302,0.00017891193,0.000118075026,0.0008227751,0.00030085002,0.0002692814,0.00019947108,0.00018304166,0.000116796764],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015356641,0.00022698208,0.7159536,0.00011048874,0.00010468029,0.00044919187,0.0012027816,0.020209279,0.20878147,0.0010323839,0.0019297504,0.04846376],"study_design_scores_gemma":[0.000026613192,0.000041063555,0.9557321,0.000008006336,0.000029682731,0.000056669916,0.00054206373,0.01575756,0.025122466,0.00014688088,0.0025159696,0.00002086144],"about_ca_topic_score_codex":0.6431334,"about_ca_topic_score_gemma":0.74870783,"teacher_disagreement_score":0.3568666,"about_ca_system_score_codex":0.0020157748,"about_ca_system_score_gemma":0.0014875493,"threshold_uncertainty_score":0.7179365},"labels":[],"label_agreement":null},{"id":"W3017193047","doi":"","title":"Retreating Canadian glaciers and their implications for regional climate and hydrology in future climate","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Hydrology (agriculture); Climatology; Climate change; Environmental science; Physical geography; Geography; Geology; Oceanography","score_opus":0.02705463631465248,"score_gpt":0.24200797605781105,"score_spread":0.21495333974315856,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017193047","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97999394,0.0021981425,0.00015348896,0.0038832985,0.00004677681,0.000012444864,0.0014503909,0.000010033432,0.0122514535],"genre_scores_gemma":[0.9950859,0.0013117193,0.00017177232,0.00024105211,0.000016218075,0.0000047127705,0.000435504,0.0000074156364,0.0027257197],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962604,0.00003562787,0.00001216664,0.00005336475,0.000075377175,0.00019740751],"domain_scores_gemma":[0.9982778,0.00015793109,0.00035750444,0.00005880381,0.0008383271,0.00030964136],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00090749125,0.00022900024,0.0001637132,0.0010002881,0.0030254277,0.0018023734,0.000700374,0.00054796325,0.004702002],"category_scores_gemma":[0.003336828,0.00014654023,0.00027679052,0.002288269,0.0013516711,0.0012457803,0.0007181622,0.00090800336,0.00018312948],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019098532,0.000053690885,0.9503838,0.00005842582,0.0000863397,0.00021120845,0.0063132425,0.001117129,0.0005996204,0.00457093,0.005382298,0.031032396],"study_design_scores_gemma":[0.000004491734,0.0000064265328,0.9861963,0.000032210133,0.00002411896,0.000034830417,0.006056843,0.0003525013,0.000063284286,0.00030587448,0.0069104196,0.000012690856],"about_ca_topic_score_codex":0.9925045,"about_ca_topic_score_gemma":0.99744153,"teacher_disagreement_score":0.023638584,"about_ca_system_score_codex":0.023638584,"about_ca_system_score_gemma":0.026830789,"threshold_uncertainty_score":0.17151076},"labels":[],"label_agreement":null},{"id":"W3017214453","doi":"","title":"Experimental Forecasts of Wildfire Pollution at the Canadian Meteorological Centre","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Environmental science; Meteorology; Air pollution; Climatology; Pollution; Geography; Geology","score_opus":0.00814852813256106,"score_gpt":0.1986313218296968,"score_spread":0.19048279369713575,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017214453","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9794393,0.0000863542,0.0022252742,0.0006545664,0.0001087375,0.00008017717,0.008676589,0.00022699959,0.008501991],"genre_scores_gemma":[0.99338335,0.000046334266,0.0011790807,0.000027929058,0.000009767047,0.000022763576,0.0035835607,0.000020350159,0.0017268998],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99963105,0.00008361552,0.0000149963425,0.000066879664,0.00013805446,0.000065331835],"domain_scores_gemma":[0.9973871,0.00076885184,0.00011974397,0.00020680374,0.0012979957,0.00021953198],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009047144,0.00029975947,0.0001957751,0.00026707177,0.0010267895,0.00081464136,0.00081388874,0.0006050034,0.0024600707],"category_scores_gemma":[0.0041353423,0.00022363717,0.0002441753,0.0005089738,0.00034186817,0.00059153634,0.00017937722,0.0009194065,0.00027771358],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0018502779,0.0006074252,0.21492931,0.00009911037,0.00016436643,0.00021874334,0.0007556562,0.69617915,0.0090510575,0.005015719,0.041275576,0.029853502],"study_design_scores_gemma":[0.00026113464,0.00019994039,0.24910249,0.00002793639,0.000063854044,0.000024060408,0.0007359459,0.7275857,0.010372969,0.0015773108,0.009939137,0.000109576475],"about_ca_topic_score_codex":0.8226166,"about_ca_topic_score_gemma":0.93165874,"teacher_disagreement_score":0.17738342,"about_ca_system_score_codex":0.0059557846,"about_ca_system_score_gemma":0.005153637,"threshold_uncertainty_score":0.3568561},"labels":[],"label_agreement":null},{"id":"W3017216553","doi":"","title":"Groundwater Resources Evolution in Degrading Permafrost Environments: A Small Catchment-Scale Study in Northern Quebec, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Groundwater; Scale (ratio); Hydrology (agriculture); Drainage basin; Environmental science; Geology; Physical geography; Water resource management; Geography; Oceanography; Cartography","score_opus":0.029998959179334015,"score_gpt":0.21123085707648168,"score_spread":0.18123189789714766,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017216553","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9974712,0.00016221959,0.00013190848,0.00012470421,0.0000033347123,0.000046048906,0.0012201577,0.00000985203,0.0008306038],"genre_scores_gemma":[0.99734455,0.00015160393,0.00026977804,0.00007951681,0.0000024418061,0.000026478207,0.0007287589,0.0000061087926,0.0013906546],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99964154,0.000039728115,0.000017501046,0.00008441877,0.00006246718,0.00015429477],"domain_scores_gemma":[0.99928904,0.00006836351,0.000097838085,0.00002869735,0.00032798713,0.00018816315],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003149378,0.00033348694,0.0005080223,0.0009938712,0.0031160659,0.0013286594,0.0013934292,0.00066887605,0.0017222367],"category_scores_gemma":[0.00074287417,0.00027693334,0.00047157565,0.0032742242,0.0011482981,0.00043228726,0.0007623618,0.0004957164,0.000192912],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020654322,0.00021552315,0.9734247,0.00008866741,0.0001397436,0.0005330435,0.0054829465,0.0011840679,0.0021302942,0.0002904906,0.0018584537,0.014445591],"study_design_scores_gemma":[0.000011593558,0.000026047324,0.99353975,0.00001986287,0.0000288943,0.000058037713,0.004090641,0.000828371,0.00010896319,0.000032137752,0.0012422324,0.000013497898],"about_ca_topic_score_codex":0.99721634,"about_ca_topic_score_gemma":0.9990484,"teacher_disagreement_score":0.031181464,"about_ca_system_score_codex":0.031181464,"about_ca_system_score_gemma":0.019451953,"threshold_uncertainty_score":0.22623843},"labels":[],"label_agreement":null},{"id":"W3017329540","doi":"","title":"A multi-instrument approach to monitoring turbidity currents: Case study from the Squamish Delta, British Columbia (Canada)","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Underwater Acoustics Research","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Delta; Turbidity; Remote sensing; Geography; Environmental science; Geology; Oceanography; Engineering","score_opus":0.052980034484280486,"score_gpt":0.25784889505084335,"score_spread":0.20486886056656287,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017329540","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99312276,0.00022150062,0.0016074331,0.00025017437,0.000007726097,0.0001580051,0.0002753664,0.000038783455,0.004318351],"genre_scores_gemma":[0.9867942,0.00034642636,0.00859909,0.00012968885,0.0000052968207,0.00004874876,0.00017559221,0.000014752353,0.0038863067],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9991978,0.00011718268,0.00003991482,0.00011546829,0.00032273814,0.00020700874],"domain_scores_gemma":[0.9988967,0.000181993,0.00008698467,0.000054029682,0.00062797376,0.0001523282],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00085239694,0.0006398625,0.0003789694,0.0015750112,0.0039009175,0.0015555011,0.0011097572,0.0010030154,0.0008131291],"category_scores_gemma":[0.0015822297,0.000379149,0.00027773742,0.003091305,0.0007970158,0.0005635072,0.0012983265,0.0006957663,0.00015114596],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003457096,0.0005351325,0.83758414,0.0002780221,0.00025711078,0.00907533,0.010187647,0.011021222,0.015804773,0.0006107557,0.0023484665,0.11195174],"study_design_scores_gemma":[0.000064029526,0.000430687,0.91073865,0.00016030471,0.00026255357,0.0018262239,0.044842135,0.027945206,0.00405686,0.00041720888,0.009168654,0.00008749803],"about_ca_topic_score_codex":0.9605673,"about_ca_topic_score_gemma":0.98987037,"teacher_disagreement_score":0.039432704,"about_ca_system_score_codex":0.009327987,"about_ca_system_score_gemma":0.012528515,"threshold_uncertainty_score":0.07932979},"labels":[],"label_agreement":null},{"id":"W3017385360","doi":"","title":"Late Quaternary marine records from High Arctic Canada: problems, solutions, and multiproxy perspectives","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Quaternary; Arctic; Oceanography; Geology; Climatology; Geography; Paleontology","score_opus":0.016505834360444702,"score_gpt":0.16858603147087625,"score_spread":0.15208019711043155,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017385360","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.706009,0.12745762,0.030188268,0.07188332,0.0011630043,0.0002247602,0.011590084,0.00032479133,0.051159162],"genre_scores_gemma":[0.9252626,0.02808528,0.031455997,0.0032368447,0.0013132878,0.00007368882,0.0029736415,0.00010957531,0.007488992],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9974548,0.0009908847,0.00026635063,0.00024647248,0.00074830145,0.0002932563],"domain_scores_gemma":[0.9796338,0.0069235773,0.0013580626,0.0016462692,0.009613034,0.0008253044],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0089751715,0.000525534,0.0008458045,0.0070551345,0.0039396877,0.007153259,0.0019675414,0.0013053338,0.0018724522],"category_scores_gemma":[0.017681355,0.00037892297,0.0004665298,0.009647031,0.0024795942,0.0028520366,0.002265019,0.0014282049,0.0002451062],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003165759,0.0001333716,0.6706098,0.0012510483,0.00070368324,0.00065990025,0.0052605923,0.0044024386,0.0043420773,0.014714154,0.0109583335,0.28664806],"study_design_scores_gemma":[0.000030025869,0.00008455986,0.86214846,0.0010119511,0.00046344416,0.0006979656,0.01915529,0.0067180367,0.0016898229,0.017874707,0.090006046,0.00011969217],"about_ca_topic_score_codex":0.680877,"about_ca_topic_score_gemma":0.88583356,"teacher_disagreement_score":0.31912303,"about_ca_system_score_codex":0.008692069,"about_ca_system_score_gemma":0.017563049,"threshold_uncertainty_score":0.6420048},"labels":[],"label_agreement":null},{"id":"W3017402764","doi":"","title":"Accretion of arc and backarc crust to continental margins: Inferences from the Annieopsquotch accretionary tract, Newfoundland Appalachians","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Accretion (finance); Continental crust; Oceanic crust; Accretionary wedge; Crust; Continental margin; Earth science; Back-arc basin; Subduction; Geochemistry; Paleontology; Tectonics","score_opus":0.016305164183145343,"score_gpt":0.21315497159341976,"score_spread":0.1968498074102744,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017402764","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99610585,0.00021189745,0.00006316037,0.000055340202,0.0000028741472,0.0000045634774,0.00024460544,0.0000043901186,0.003307319],"genre_scores_gemma":[0.99824417,0.00020374023,0.00013289378,0.000028886949,0.0000035466435,0.0000050564204,0.00027489135,0.0000045572256,0.0011021774],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997757,0.000021303773,0.000019239069,0.000059604543,0.00003276829,0.0000914125],"domain_scores_gemma":[0.9990306,0.00013978282,0.00021162687,0.000059202615,0.00040397307,0.00015482407],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040331236,0.0002275327,0.00023835075,0.0020327284,0.002301737,0.0014668104,0.0005467612,0.0002695452,0.002713901],"category_scores_gemma":[0.0016356885,0.00028357687,0.0002559952,0.0018042318,0.0013360464,0.0005041067,0.0013331058,0.00037844843,0.0003079321],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001561661,0.000018596003,0.97878116,0.00004106477,0.00006422737,0.0003386159,0.003142177,0.00091975456,0.0015361343,0.0003532442,0.00056084176,0.014087929],"study_design_scores_gemma":[0.0000030707188,0.000005359547,0.9978041,0.00001970944,0.000013877618,0.000029018978,0.001215071,0.00015661785,0.00008290162,0.000020605698,0.00064660935,0.0000031000607],"about_ca_topic_score_codex":0.9438844,"about_ca_topic_score_gemma":0.9782401,"teacher_disagreement_score":0.9438844,"about_ca_system_score_codex":0.0050867945,"about_ca_system_score_gemma":0.003907443,"threshold_uncertainty_score":0.11289215},"labels":[],"label_agreement":null},{"id":"W3017721210","doi":"","title":"Unravelling the complexities of a high-grade Paleoarchean terrane: Saglek Block, Labrador, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Terrane; Geology; Geochemistry; Block (permutation group theory); Earth science; Paleontology","score_opus":0.03999439631197958,"score_gpt":0.24776758755304423,"score_spread":0.20777319124106464,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017721210","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9170783,0.0059709945,0.00087015255,0.0065794317,0.0000996499,0.00005801346,0.000636841,0.00006579099,0.06864076],"genre_scores_gemma":[0.98921865,0.0016607135,0.0011640424,0.00032747808,0.000015694173,0.0000066953116,0.00016030634,0.000038405233,0.0074080424],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996057,0.000033798402,0.00000781619,0.000041036878,0.00010377207,0.00020775951],"domain_scores_gemma":[0.99957925,0.000042556192,0.00003899147,0.000017759017,0.00018922261,0.00013221185],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037187274,0.00028442655,0.0002800243,0.0015101992,0.009963226,0.004168732,0.0009469119,0.000678206,0.0038762377],"category_scores_gemma":[0.00094178965,0.00028958547,0.0001516816,0.0024074432,0.0052303397,0.0008734355,0.0016969176,0.001312909,0.00028151076],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00048814437,0.00013708566,0.5466815,0.00070204627,0.00022219581,0.010499522,0.14515463,0.005413106,0.021635428,0.058195855,0.022901697,0.1879688],"study_design_scores_gemma":[0.000013402492,0.000045048728,0.67260194,0.00036775804,0.000065730674,0.0009968923,0.13816601,0.0015213534,0.0013454577,0.003659838,0.18115081,0.000065848944],"about_ca_topic_score_codex":0.98915815,"about_ca_topic_score_gemma":0.9980051,"teacher_disagreement_score":0.02153678,"about_ca_system_score_codex":0.02153678,"about_ca_system_score_gemma":0.039478127,"threshold_uncertainty_score":0.15626103},"labels":[],"label_agreement":null},{"id":"W3017747083","doi":"","title":"Contributing towards a conceptual model of soil-landscape co-evolution: observations from historic mining sites in Alberta, Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Landscape history; Conceptual model; Environmental resource management; Physical geography; Earth science; Environmental planning; Archaeology; Geology; Environmental science; Landscape archaeology","score_opus":0.021226454645880598,"score_gpt":0.20873707394781013,"score_spread":0.18751061930192953,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017747083","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99096394,0.00019018675,0.0044167405,0.00051387504,0.0000048483744,0.000016494496,0.0004854542,0.000044066444,0.0033643271],"genre_scores_gemma":[0.9980862,0.00007034598,0.0014063267,0.000016200742,0.0000014842022,0.0000044067824,0.00012067286,0.000009701326,0.00028477167],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998273,0.00004406968,0.000008764582,0.000049423998,0.000022499082,0.000047864658],"domain_scores_gemma":[0.9995617,0.00015287392,0.00007000246,0.000044146716,0.00011465474,0.00005671535],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004926449,0.00019639039,0.00022807658,0.0008335614,0.0013021444,0.0025055,0.0015702567,0.0006279049,0.0019099186],"category_scores_gemma":[0.0021121346,0.00027659241,0.0002733654,0.002366043,0.0016209247,0.0009183804,0.00064546865,0.00040317068,0.00014108044],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00008053899,0.00011571883,0.5340465,0.000100315585,0.00014727068,0.0003286144,0.0037986266,0.41113323,0.0021288446,0.023477122,0.0029377216,0.021705573],"study_design_scores_gemma":[0.000022970013,0.000020569185,0.3721403,0.00004600704,0.000060922404,0.00014786543,0.006913507,0.6022345,0.00023084384,0.012401931,0.005714944,0.00006564706],"about_ca_topic_score_codex":0.9499949,"about_ca_topic_score_gemma":0.9713498,"teacher_disagreement_score":0.05000508,"about_ca_system_score_codex":0.013047775,"about_ca_system_score_gemma":0.006612354,"threshold_uncertainty_score":0.10059911},"labels":[],"label_agreement":null},{"id":"W3017954867","doi":"","title":"The dendroclimatic proxies from the northern Quebec taiga in the PAGES 2K network: recent advances and future developments.","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Tree-ring climate responses","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Taiga; Climatology; Geography; Geology; Forestry","score_opus":0.012921055854078808,"score_gpt":0.21367527172128759,"score_spread":0.20075421586720876,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3017954867","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9220059,0.0060937195,0.0022059868,0.0023876575,0.00010187868,0.000059643495,0.0524655,0.0002278372,0.014451818],"genre_scores_gemma":[0.98623174,0.0009293101,0.0010088476,0.000101855825,0.00002069076,0.000022365773,0.009017363,0.00003586175,0.002632031],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976903,0.00004711925,0.000010744602,0.000050186267,0.000052911906,0.000070059665],"domain_scores_gemma":[0.9984213,0.00018446341,0.00023605564,0.00008487125,0.000842052,0.0002312194],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007567901,0.00035193952,0.00024961063,0.0013651145,0.00089283683,0.0013101129,0.00048502124,0.00028347713,0.003436023],"category_scores_gemma":[0.0025913268,0.00010298824,0.00016721674,0.0047079343,0.0003104838,0.00067692966,0.0005594829,0.0006042151,0.0003915508],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028279005,0.00006652852,0.9020715,0.00021126353,0.00033350918,0.00009116468,0.0021134366,0.0050856303,0.0038629377,0.0015429163,0.022554278,0.061784085],"study_design_scores_gemma":[0.0000062213785,0.0000067323754,0.9850734,0.000055940636,0.000030494268,0.000012771979,0.00081467745,0.0027314443,0.00020008578,0.0001513174,0.010898299,0.00001847445],"about_ca_topic_score_codex":0.98366135,"about_ca_topic_score_gemma":0.99546576,"teacher_disagreement_score":0.016338646,"about_ca_system_score_codex":0.008302372,"about_ca_system_score_gemma":0.0071638976,"threshold_uncertainty_score":0.060238242},"labels":[],"label_agreement":null},{"id":"W3018309741","doi":"","title":"Satellite Based Probabilistic Snow Cover Extent Mapping (SCE) at Hydro-Québec","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow cover; Satellite; Environmental science; Remote sensing; Probabilistic logic; Snow; Cover (algebra); Meteorology; Geography; Computer science; Artificial intelligence","score_opus":0.023670344414995225,"score_gpt":0.19921628005795608,"score_spread":0.17554593564296087,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018309741","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8940139,0.00022667708,0.0074764923,0.00076048507,0.000033286702,0.00021233238,0.079698466,0.001300334,0.016278103],"genre_scores_gemma":[0.96359277,0.00010305277,0.008196914,0.000056742545,0.000010618119,0.00006178518,0.018718079,0.00009450794,0.0091655115],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99983597,0.00002751513,0.0000043228442,0.000043067204,0.000056796147,0.000032262582],"domain_scores_gemma":[0.9993043,0.00006345981,0.00004396462,0.000052864118,0.00043968164,0.00009572363],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038029524,0.00021738686,0.00016859165,0.000811543,0.0007487076,0.0006168619,0.00051380123,0.00023652517,0.004196828],"category_scores_gemma":[0.0009780541,0.00017206286,0.00016089246,0.0013396243,0.00024921686,0.00037577734,0.00027146036,0.00027042683,0.00048578775],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00054875965,0.00024045269,0.6685951,0.00015128602,0.00021817871,0.00033776843,0.00083703076,0.1331446,0.008639597,0.0026366473,0.060794607,0.12385601],"study_design_scores_gemma":[0.000128374,0.000037789174,0.7182982,0.000046039513,0.00003519384,0.0000395069,0.00044058132,0.25152397,0.0023358965,0.00037853236,0.026679913,0.000056062985],"about_ca_topic_score_codex":0.98510844,"about_ca_topic_score_gemma":0.9930114,"teacher_disagreement_score":0.014891565,"about_ca_system_score_codex":0.005976762,"about_ca_system_score_gemma":0.00757242,"threshold_uncertainty_score":0.043364704},"labels":[],"label_agreement":null},{"id":"W3018387548","doi":"","title":"The Northern Manitoba Mining Academy","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Mining and Resource Management","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Archaeology","score_opus":0.019273272406510784,"score_gpt":0.2235982338970138,"score_spread":0.20432496149050303,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018387548","genre_codex":"other","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":"other","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.18331176,0.0061135655,0.0004195727,0.036976516,0.0012427451,0.00014463694,0.0017028239,0.00029185772,0.76979655],"genre_scores_gemma":[0.095803335,0.0026219753,0.0009188418,0.001834307,0.00007231512,0.000033686174,0.0004946419,0.000053768068,0.89816713],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9992587,0.00006529641,0.00002256235,0.0000892348,0.00029358585,0.00027056865],"domain_scores_gemma":[0.9971445,0.00019441424,0.00008329769,0.000110906665,0.0010652539,0.001401499],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00069427537,0.0003104959,0.00024087679,0.0013615477,0.011430235,0.0047593787,0.00091100176,0.0010546799,0.077789955],"category_scores_gemma":[0.0019564545,0.0004749446,0.00016008264,0.0020559544,0.0013361692,0.0009605098,0.002144309,0.0012383969,0.009129256],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00027321192,0.00035054883,0.12717739,0.0005285976,0.00006805506,0.0034796402,0.007902456,0.0007903025,0.004306852,0.03917101,0.55355823,0.2623937],"study_design_scores_gemma":[0.000011982567,0.000031327883,0.12208025,0.00019891359,0.000012113782,0.000281643,0.01138086,0.00026269894,0.00039205296,0.0010450947,0.8642833,0.000019707872],"about_ca_topic_score_codex":0.71374625,"about_ca_topic_score_gemma":0.95832163,"teacher_disagreement_score":0.28625375,"about_ca_system_score_codex":0.017438686,"about_ca_system_score_gemma":0.08188538,"threshold_uncertainty_score":0.5758791},"labels":[],"label_agreement":null},{"id":"W3018579553","doi":"","title":"Observed and simulated rainfall at multiple scales: how do extremes from the Canadian CRCM5 Large-Ensemble scale in space and time in historical and future climate?","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Scale (ratio); Climatology; Environmental science; Meteorology; Climate change; Geography; Geology; Cartography","score_opus":0.017645725673878586,"score_gpt":0.20154786437211392,"score_spread":0.18390213869823532,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018579553","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9460506,0.0029568672,0.011220412,0.010001293,0.0003351664,0.000041583862,0.009528304,0.0002723912,0.01959335],"genre_scores_gemma":[0.9955444,0.00045831752,0.0013558633,0.00022833481,0.00003821648,0.000008592737,0.0016162004,0.000053589796,0.0006964679],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.998643,0.00027761247,0.000082783285,0.0003925926,0.00029233017,0.00031169917],"domain_scores_gemma":[0.99637103,0.0011780285,0.00041272555,0.00047475845,0.0012017913,0.00036163145],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0036635692,0.00034826194,0.00048798294,0.0009153921,0.0011690184,0.0039664935,0.001499522,0.0012187585,0.0018081152],"category_scores_gemma":[0.020032687,0.00045737476,0.0008673589,0.0026940822,0.001128151,0.003421553,0.001095477,0.0014976,0.00025362795],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044434876,0.00012633884,0.7297888,0.00014802629,0.0011132779,0.00013349667,0.001263442,0.17137025,0.002101714,0.021814877,0.009813738,0.06188159],"study_design_scores_gemma":[0.000039040533,0.000022974726,0.81793594,0.00012757341,0.000244283,0.00003773934,0.0011448173,0.15574047,0.0011273345,0.01167232,0.011689849,0.00021771553],"about_ca_topic_score_codex":0.9119396,"about_ca_topic_score_gemma":0.9413527,"teacher_disagreement_score":0.08806038,"about_ca_system_score_codex":0.008571896,"about_ca_system_score_gemma":0.00743012,"threshold_uncertainty_score":0.17715794},"labels":[],"label_agreement":null},{"id":"W3018635388","doi":"","title":"Timing and Rate Of Deglaciation of the MIS 2 Cordilleran Ice Sheet in Yukon Territory, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Deglaciation; Geology; Ice sheet; Oceanography; Physical geography; Geography; Holocene","score_opus":0.014793583448602597,"score_gpt":0.19382980082471726,"score_spread":0.17903621737611466,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018635388","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9967198,0.0003195656,0.0000340137,0.000071138515,0.00000552946,0.0000047900103,0.0015996958,0.000008054529,0.0012373968],"genre_scores_gemma":[0.99792695,0.00024330083,0.000054645534,0.000017499324,0.0000023630196,0.0000029102582,0.00092414196,0.0000033270887,0.0008247139],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998436,0.000008889242,0.00001461659,0.000037128662,0.000031070504,0.00006458153],"domain_scores_gemma":[0.9989827,0.000088412315,0.00019191139,0.00003219419,0.0005233605,0.00018130704],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024870507,0.000206852,0.00019430576,0.0016932494,0.0008597969,0.0010870668,0.0004644299,0.0003888888,0.0015694952],"category_scores_gemma":[0.0012674895,0.00017139578,0.00023373768,0.0018151868,0.00040334385,0.00036006325,0.0006272718,0.00026213282,0.00014758098],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013564865,0.0000097108,0.9927033,0.000027020016,0.00007505833,0.00013178574,0.0006843671,0.000775765,0.0010061382,0.00021075839,0.00063711475,0.0036032242],"study_design_scores_gemma":[0.0000019723839,0.0000034957989,0.99871254,0.000008512337,0.0000093793815,0.000020829557,0.00040923603,0.00028108907,0.000093299444,0.000008477404,0.00044749022,0.0000037048035],"about_ca_topic_score_codex":0.9720933,"about_ca_topic_score_gemma":0.9835218,"teacher_disagreement_score":0.027906716,"about_ca_system_score_codex":0.007664377,"about_ca_system_score_gemma":0.008096484,"threshold_uncertainty_score":0.05614209},"labels":[],"label_agreement":null},{"id":"W3018678353","doi":"","title":"Lake-river and lake-atmosphere interactions in a changing climate over Northeast Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université du Québec à Montréal","funders":"","keywords":"Environmental science; Climate change; Climate model; Climatology; Precipitation; Streamflow; Forcing (mathematics); Interim; Hydrology (agriculture); Geography; Drainage basin; Meteorology; Geology","score_opus":0.0055128089979807424,"score_gpt":0.1971078003339242,"score_spread":0.19159499133594346,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018678353","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.995764,0.000085350104,0.00022232748,0.00025266822,0.0000084753565,0.000011437624,0.001208489,0.000039185987,0.0024079923],"genre_scores_gemma":[0.9977435,0.00009136539,0.00037451411,0.000037271035,0.000002276735,0.000006034051,0.0007939121,0.0000100194975,0.000941137],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99979526,0.000024131255,0.0000069529838,0.000044174216,0.00004398362,0.000085532505],"domain_scores_gemma":[0.9996921,0.000046860958,0.00002764106,0.000013597682,0.00014765389,0.0000721606],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002733146,0.00042597431,0.00032580277,0.0004033881,0.0015734918,0.0013145462,0.0009233214,0.00057232234,0.001394925],"category_scores_gemma":[0.00085330213,0.00024636343,0.0006542011,0.0009861144,0.0005998582,0.00046413142,0.00050860643,0.0005421594,0.00009030416],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028267124,0.00017888073,0.29364213,0.00008101317,0.0002846129,0.000577286,0.00047010824,0.68413246,0.0042444523,0.0032393513,0.004531835,0.008335161],"study_design_scores_gemma":[0.00015269608,0.000062153544,0.27943888,0.000028746234,0.00016551989,0.000059604212,0.0012154831,0.71272856,0.001331975,0.00054872886,0.004168136,0.00009952768],"about_ca_topic_score_codex":0.98997974,"about_ca_topic_score_gemma":0.9905641,"teacher_disagreement_score":0.022644466,"about_ca_system_score_codex":0.022644466,"about_ca_system_score_gemma":0.020194978,"threshold_uncertainty_score":0.16429788},"labels":[],"label_agreement":null},{"id":"W3018684704","doi":"","title":"Effects of helicopter liming on stream water chemistry in an experimental catchment in Nova Scotia, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Smart Materials for Construction","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nova scotia; Environmental science; Nova (rocket); Drainage basin; Water chemistry; Hydrology (agriculture); Geography; Geology; Archaeology; Engineering; Environmental engineering","score_opus":0.00544721067390644,"score_gpt":0.2135670043509622,"score_spread":0.20811979367705577,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018684704","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990337,0.000018018369,0.00004117984,0.000029465715,0.0000036993952,0.00003278897,0.00015234662,0.000004627438,0.00068423024],"genre_scores_gemma":[0.9984035,0.000043623582,0.00017236604,0.00005236278,0.0000015839673,0.000021181226,0.00017491836,0.000003625222,0.001126872],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99958986,0.00005197815,0.000016070813,0.000100305326,0.000097218326,0.00014454342],"domain_scores_gemma":[0.99936885,0.000090249094,0.000048559705,0.000019609084,0.00030125814,0.00017143854],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000334033,0.00029247216,0.0004808515,0.00038123483,0.003351406,0.0010974292,0.00082660373,0.0004974621,0.00085093494],"category_scores_gemma":[0.0005544873,0.0002520235,0.0003942498,0.0005715022,0.0012256264,0.00027755077,0.00058742124,0.00054754264,0.00015313776],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0073621245,0.002766851,0.85443616,0.00028822533,0.0002593532,0.00244602,0.00764941,0.005175117,0.097919546,0.00044488,0.002747665,0.018504668],"study_design_scores_gemma":[0.00008217101,0.0005002133,0.9868859,0.000015521737,0.000049360453,0.0000596917,0.0043671113,0.0027133266,0.004182467,0.000046351102,0.0010722043,0.000025710691],"about_ca_topic_score_codex":0.97869956,"about_ca_topic_score_gemma":0.98973197,"teacher_disagreement_score":0.021300435,"about_ca_system_score_codex":0.019532576,"about_ca_system_score_gemma":0.01426785,"threshold_uncertainty_score":0.1417194},"labels":[],"label_agreement":null},{"id":"W3018823000","doi":"","title":"Contrasting perceptions of anthropogenic coastal agricultural landscape meanings and management in Italy and Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Coastal and Marine Management","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Agriculture; Perception; Environmental resource management; Environmental planning; Archaeology; Environmental science","score_opus":0.003069656607247381,"score_gpt":0.17259445445260477,"score_spread":0.1695247978453574,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018823000","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98201895,0.00011548288,0.000067916015,0.0006479967,0.0000074443296,0.000011790683,0.000055035012,0.0000023324465,0.017073141],"genre_scores_gemma":[0.996956,0.00015941642,0.00007188813,0.00015088855,0.0000024338326,0.0000074739028,0.000053345797,0.0000054279144,0.00259311],"study_design_codex":"qualitative","study_design_gemma":"qualitative","domain_scores_codex":[0.99860734,0.0002669678,0.0000444512,0.000093317285,0.0004498511,0.000538159],"domain_scores_gemma":[0.99704915,0.0004993629,0.00031716624,0.0000636978,0.0010979329,0.0009728194],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015309163,0.00020634632,0.00024143276,0.0014526346,0.006280122,0.0050474466,0.00084138307,0.0006036044,0.0034010897],"category_scores_gemma":[0.0046155313,0.00018385504,0.00027625533,0.0022681141,0.004746105,0.00085530063,0.0029190497,0.001405217,0.0001437854],"study_design_candidate":"qualitative","study_design_consensus":"qualitative","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00039749328,0.0001641741,0.3920191,0.00009320519,0.00006480965,0.000842927,0.564326,0.0005334649,0.0014988483,0.013607156,0.0040336917,0.022419201],"study_design_scores_gemma":[0.000014043865,0.000038374703,0.34716982,0.00010069356,0.000020274398,0.00009049695,0.6359453,0.0003178727,0.00016082931,0.00046609927,0.015636096,0.00004008424],"about_ca_topic_score_codex":0.9858408,"about_ca_topic_score_gemma":0.994913,"teacher_disagreement_score":0.04038031,"about_ca_system_score_codex":0.04038031,"about_ca_system_score_gemma":0.027936807,"threshold_uncertainty_score":0.29298103},"labels":[],"label_agreement":null},{"id":"W3018854567","doi":"","title":"Did the Hudson Strait in Arctic Canada record the opening of the Labrador Sea","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Indigenous Studies and Ecology","field":"Health Professions","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Arctic; The arctic; Geology; Geography; Climatology","score_opus":0.0249927149778243,"score_gpt":0.3071577575238138,"score_spread":0.2821650425459895,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3018854567","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9902462,0.0005054989,0.00009121512,0.0013508912,0.00006765422,0.000007554189,0.000408384,0.000004831855,0.0073178103],"genre_scores_gemma":[0.99715996,0.00034912187,0.00008597833,0.00018602962,0.000022707245,0.0000031469547,0.00013080532,0.0000067966052,0.0020553628],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993352,0.000064967964,0.000019570945,0.00007990846,0.000088989735,0.00041136824],"domain_scores_gemma":[0.9975115,0.0002938315,0.0005684529,0.00010374901,0.00097641,0.0005461532],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00087247393,0.00012708035,0.00026311536,0.0013505279,0.0027830654,0.0032433174,0.00085293717,0.0010203837,0.0031708616],"category_scores_gemma":[0.0037878065,0.00023869572,0.00020425649,0.0031963289,0.002318061,0.0016570803,0.0015076982,0.0011003556,0.0003534797],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016908035,0.000027765875,0.9157146,0.000114636365,0.000085347456,0.00031703414,0.054570362,0.00028815732,0.0008721229,0.002353984,0.0043575116,0.021129383],"study_design_scores_gemma":[0.000003172725,0.000014355229,0.863897,0.00015631593,0.000024376555,0.00006295547,0.12329823,0.00015280981,0.00014644847,0.0001977555,0.012025839,0.000020585048],"about_ca_topic_score_codex":0.97566,"about_ca_topic_score_gemma":0.99247557,"teacher_disagreement_score":0.024339974,"about_ca_system_score_codex":0.008578061,"about_ca_system_score_gemma":0.017408594,"threshold_uncertainty_score":0.062238514},"labels":[],"label_agreement":null},{"id":"W3019028056","doi":"","title":"Tracing sources of suspended sediment in a Canadian agricultural watershed using a Bayesian model: Testing different groups of fingerprinting properties","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Watershed; Tracing; Bayesian probability; Environmental science; Hydrology (agriculture); Sediment; Agriculture; Statistics; Geography; Water resource management; Computer science; Mathematics; Geology; Archaeology; Machine learning; Geotechnical engineering","score_opus":0.04141315801344296,"score_gpt":0.21756564436864242,"score_spread":0.17615248635519948,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3019028056","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9911624,0.000046446778,0.008025849,0.00014459222,0.000002120056,0.000023641454,0.0001231065,0.00004199219,0.00042980444],"genre_scores_gemma":[0.99603075,0.000043689615,0.003439161,0.000012996827,0.0000017982968,0.000007428966,0.00015916629,0.000008131493,0.00029690584],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9994137,0.00011304553,0.000030374995,0.00017734223,0.00011996211,0.00014551493],"domain_scores_gemma":[0.9966307,0.0021154087,0.00031500636,0.00014253246,0.0006004911,0.00019587993],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0025657534,0.00055427145,0.00042248474,0.0014563494,0.0018203252,0.001615845,0.0018370593,0.0010284758,0.00048774458],"category_scores_gemma":[0.009947171,0.00051571825,0.00061974674,0.001124854,0.0011579385,0.000851887,0.0007670972,0.00068478746,0.00007346282],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034644792,0.0002645392,0.39256957,0.000042102794,0.00023138856,0.00023474432,0.0007441521,0.5634031,0.0042270566,0.004468838,0.0006221488,0.032845933],"study_design_scores_gemma":[0.000033165223,0.000025641004,0.05396456,0.000008427137,0.00006498223,0.000025904414,0.00020809412,0.9437772,0.00077020936,0.00094165886,0.00014861621,0.00003150636],"about_ca_topic_score_codex":0.944622,"about_ca_topic_score_gemma":0.9225795,"teacher_disagreement_score":0.05537802,"about_ca_system_score_codex":0.008405915,"about_ca_system_score_gemma":0.013729712,"threshold_uncertainty_score":0.11140823},"labels":[],"label_agreement":null},{"id":"W3019343942","doi":"","title":"Implementation of Controlled Traffic in the Canadian Prairies: Soil and Plant Dynamics under Simulated and Field Conditions","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Forest Biomass Utilization and Management","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Field (mathematics); Environmental science; Dynamics (music); Agronomy; Agricultural engineering; Hydrology (agriculture); Geology; Engineering; Mathematics; Biology; Physics; Geotechnical engineering","score_opus":0.009738951256221618,"score_gpt":0.25842773015342857,"score_spread":0.24868877889720695,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3019343942","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994949,0.00000527855,0.000050366332,0.000016784188,0.0000020879725,0.000011328777,0.00007134039,0.000006630794,0.00034122413],"genre_scores_gemma":[0.9993266,0.000012122649,0.00014616063,0.000011628235,9.427467e-7,0.000014797318,0.00014013301,0.0000023357338,0.00034539338],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995819,0.000055759923,0.000013355174,0.000088336856,0.00009353841,0.00016717508],"domain_scores_gemma":[0.9989278,0.0002219875,0.00009273756,0.0000656669,0.00045271454,0.00023902315],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048734236,0.00028964455,0.00036642238,0.00029201913,0.0012463548,0.00092950184,0.0012529274,0.00057246035,0.0008119723],"category_scores_gemma":[0.0015920337,0.00024158841,0.00025759987,0.00041286697,0.001047192,0.00050329,0.00041106678,0.0005394958,0.00008101158],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010990864,0.012130707,0.6493209,0.00038957314,0.00071146653,0.000997682,0.0054984484,0.16026013,0.090957075,0.0021874455,0.0055067264,0.06104885],"study_design_scores_gemma":[0.00016503611,0.0016526552,0.91063684,0.000018570052,0.000100458,0.00003859351,0.0030578235,0.077294074,0.004910865,0.00019991741,0.0018529585,0.000072158444],"about_ca_topic_score_codex":0.8680501,"about_ca_topic_score_gemma":0.9442659,"teacher_disagreement_score":0.1319499,"about_ca_system_score_codex":0.013866739,"about_ca_system_score_gemma":0.008795044,"threshold_uncertainty_score":0.26545393},"labels":[],"label_agreement":null},{"id":"W3019684140","doi":"","title":"Ice fog and light snow measurements using a high resolution camera system","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric aerosols and clouds","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Environment and Climate Change Canada","funders":"","keywords":"Ice crystals; Snow; Remote sensing; Environmental science; Visibility; Radiative transfer; Meteorology; Optics; Atmospheric sciences; Geology; Physics","score_opus":0.019398187860343544,"score_gpt":0.21291016773770918,"score_spread":0.19351197987736563,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3019684140","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9566589,0.0004563811,0.023872996,0.000052852574,0.000048728256,0.00029056252,0.0036190639,0.0009559697,0.01404463],"genre_scores_gemma":[0.92747504,0.0003504462,0.06474459,0.000119569675,0.000038923354,0.00015207459,0.0032107837,0.000106064894,0.003802556],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99965703,0.000013972187,0.000013219269,0.00010170893,0.00016692447,0.000047046622],"domain_scores_gemma":[0.9997918,0.000019814432,0.000018638235,0.00001903933,0.00011791102,0.00003291396],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002238795,0.00026347485,0.00027815136,0.001165637,0.00046147782,0.00047571282,0.0003766449,0.00035717644,0.0018685511],"category_scores_gemma":[0.00023480269,0.00019043346,0.00021589609,0.0007234253,0.00012171435,0.0003399296,0.00031762596,0.00031164096,0.0004958877],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040970143,0.00028281868,0.07324829,0.0002540129,0.00009677869,0.00029563162,0.00045360753,0.0033001408,0.835103,0.00026016738,0.0037731675,0.08252267],"study_design_scores_gemma":[0.00010230583,0.00052521616,0.7049433,0.00007235941,0.00014314505,0.00091546314,0.00043170073,0.047395986,0.23127957,0.00008177671,0.0139907235,0.00011850787],"about_ca_topic_score_codex":0.017400382,"about_ca_topic_score_gemma":0.042428978,"teacher_disagreement_score":0.017400382,"about_ca_system_score_codex":0.00046570157,"about_ca_system_score_gemma":0.000609118,"threshold_uncertainty_score":0.03459823},"labels":[],"label_agreement":null},{"id":"W3019981112","doi":"","title":"Ar-Ar and Rb-Sr dating of very low-/low-grade metamorphism along the main Iapetus suture, Newfoundland","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Metamorphism; Fibrous joint; Radiometric dating; Geochemistry; K–Ar dating; Paleontology; Mineralogy; Anatomy; Medicine","score_opus":0.015091350549896241,"score_gpt":0.22359638408636848,"score_spread":0.20850503353647223,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3019981112","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99402905,0.00027175562,0.0002621331,0.000040894498,0.0000052390305,0.0000068339878,0.0010657363,0.000017170618,0.0043012314],"genre_scores_gemma":[0.9960288,0.00011585293,0.00041992037,0.000021758198,0.000002208566,0.0000061513383,0.0006357381,0.000009126227,0.0027603246],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996902,0.000023700286,0.000028385173,0.00008595508,0.000058517184,0.000113275826],"domain_scores_gemma":[0.9991742,0.00008850519,0.00021811938,0.00005672614,0.0003726837,0.00008982884],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048121306,0.0001716154,0.00019105001,0.0022477596,0.001074879,0.00069342734,0.0004969432,0.00019941574,0.0015709732],"category_scores_gemma":[0.0007688386,0.00021054172,0.00015227706,0.0016636478,0.00076667697,0.00035221205,0.0005472166,0.0002851553,0.00028363583],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033396258,0.000027451882,0.94633216,0.000067991896,0.0000769245,0.0004497002,0.0016079575,0.00090871914,0.019335674,0.00035397982,0.0008678177,0.029637663],"study_design_scores_gemma":[0.0000020647108,0.000008511375,0.9982559,0.000008863116,0.000010534249,0.000040002054,0.00018309761,0.00011286547,0.0005153273,0.0000059290874,0.00085451687,0.0000023109621],"about_ca_topic_score_codex":0.87406045,"about_ca_topic_score_gemma":0.97255343,"teacher_disagreement_score":0.12593955,"about_ca_system_score_codex":0.0039335294,"about_ca_system_score_gemma":0.002534365,"threshold_uncertainty_score":0.25336242},"labels":[],"label_agreement":null},{"id":"W3020189787","doi":"","title":"Making Room for Wetlands - Design and Implementation of Dyke Managed Realignment for Climate Change Adaptationin the Bay of Fundy, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Invertebrate Taxonomy and Ecology","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Wetland; Climate change; Oceanography; Fishery; Geology; Geography; Environmental science; Environmental resource management; Ecology","score_opus":0.06411382733342201,"score_gpt":0.2586793165553461,"score_spread":0.19456548922192407,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020189787","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9805151,0.00006154102,0.010765605,0.00046706627,0.000033391247,0.0017568176,0.00013875257,0.0001423868,0.0061192745],"genre_scores_gemma":[0.9642363,0.00007428675,0.028869169,0.00011676207,0.0000056525028,0.00108984,0.00013389059,0.000028938259,0.005445262],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.99870384,0.00037096185,0.000040517316,0.000204707,0.00020692988,0.00047307988],"domain_scores_gemma":[0.9980166,0.00014771603,0.00014889473,0.0001717305,0.00071314105,0.00080187863],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0023754747,0.00032158368,0.00021807566,0.0004969076,0.003098355,0.0017069392,0.0018141391,0.0005743122,0.0030554235],"category_scores_gemma":[0.0032273293,0.00023729204,0.00030948105,0.00034800192,0.00091571274,0.0007004003,0.0019298578,0.0004978853,0.00027110265],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0042118896,0.011931804,0.2606508,0.00053671486,0.0001992078,0.0010483253,0.01499849,0.03773776,0.06483239,0.00990673,0.0084060365,0.5855399],"study_design_scores_gemma":[0.0012520306,0.016760712,0.71953195,0.00027274157,0.0003830199,0.0002526741,0.05876785,0.08292266,0.026298204,0.002494802,0.09082135,0.00024195571],"about_ca_topic_score_codex":0.35836133,"about_ca_topic_score_gemma":0.74467814,"teacher_disagreement_score":0.64163864,"about_ca_system_score_codex":0.011956118,"about_ca_system_score_gemma":0.030583404,"threshold_uncertainty_score":0.7125509},"labels":[],"label_agreement":null},{"id":"W3020477213","doi":"","title":"An Early Pennsylvanian threshold for the influence of vegetation on fluvial landscapes, based on the geological record of Atlantic Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Pennsylvanian; Fluvial; Geology; Vegetation (pathology); Paleontology; Physical geography; Earth science; Geography; Structural basin","score_opus":0.029754751408937467,"score_gpt":0.24201952064489712,"score_spread":0.21226476923595966,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020477213","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98866445,0.00036706228,0.00047346714,0.00028120246,0.000005636837,0.0000112428115,0.00055911846,0.000014137071,0.009623656],"genre_scores_gemma":[0.9991628,0.000060535727,0.00026357008,0.000027289858,0.0000018463032,0.000003168604,0.00016834303,0.000003567273,0.00030888728],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998356,0.000017269536,0.0000115433895,0.000050281596,0.000029839708,0.00005540695],"domain_scores_gemma":[0.9984132,0.00034140362,0.00020071368,0.00004660753,0.00073404744,0.00026412946],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040597646,0.00010170352,0.000102118174,0.0012526864,0.0017231002,0.0012590572,0.0003895671,0.00032390954,0.002315103],"category_scores_gemma":[0.0020165136,0.00013292984,0.00012137685,0.0006664425,0.0007049536,0.00055322907,0.00074723817,0.00040760476,0.00015325082],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001341119,0.000019542491,0.97548693,0.000041061634,0.00003684453,0.00020959423,0.0041089817,0.0006635707,0.0023511653,0.0030163587,0.0013964943,0.012535291],"study_design_scores_gemma":[0.0000023928178,0.000008369503,0.9936271,0.000036236666,0.000010272323,0.00009583588,0.0024270087,0.00072627177,0.00027545524,0.00027928545,0.0025038593,0.000007963571],"about_ca_topic_score_codex":0.65272665,"about_ca_topic_score_gemma":0.911674,"teacher_disagreement_score":0.34727335,"about_ca_system_score_codex":0.0031803665,"about_ca_system_score_gemma":0.0027504223,"threshold_uncertainty_score":0.698637},"labels":[],"label_agreement":null},{"id":"W3020600091","doi":"","title":"The distribution of methane in groundwater in Alberta (Canada) and associated aqueous geochemistry conditions","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Groundwater; Methane; Geology; Geochemistry; Distribution (mathematics); Earth science; Environmental science; Hydrology (agriculture); Chemistry","score_opus":0.0028021727732787777,"score_gpt":0.17514153660285636,"score_spread":0.1723393638295776,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020600091","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99739456,0.0001640752,0.00008222467,0.000054358385,0.000002099983,0.00000401228,0.0007289675,0.000008140165,0.0015615507],"genre_scores_gemma":[0.9983132,0.00014190093,0.000130141,0.000014671207,0.0000011539598,0.0000014231548,0.0003821139,0.000001490437,0.0010138958],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998567,0.000007187147,0.000006047534,0.00002181095,0.00004970348,0.000058533573],"domain_scores_gemma":[0.9998356,0.00001212636,0.000024063376,0.0000025442655,0.000085266125,0.000040345527],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000104681545,0.00013844365,0.00009791211,0.0008991213,0.0012842824,0.00067621755,0.00032868766,0.00023896806,0.0006948757],"category_scores_gemma":[0.00022053273,0.000110316134,0.00011409692,0.0015250623,0.0006036671,0.00018252996,0.00036320032,0.00016370209,0.000095995434],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005534077,0.000078834535,0.9452552,0.000079260004,0.000042126638,0.00041468526,0.0022402273,0.0020875372,0.022414926,0.0007927127,0.0010962442,0.024944752],"study_design_scores_gemma":[0.000006776922,0.000029782648,0.9923557,0.000012174054,0.0000134393085,0.00007120332,0.0027882664,0.0010954586,0.0017253626,0.00008907149,0.001801255,0.000011455863],"about_ca_topic_score_codex":0.9797713,"about_ca_topic_score_gemma":0.9891656,"teacher_disagreement_score":0.020228684,"about_ca_system_score_codex":0.0087599885,"about_ca_system_score_gemma":0.006271941,"threshold_uncertainty_score":0.06355846},"labels":[],"label_agreement":null},{"id":"W3020650988","doi":"","title":"Bias-correction of SNODAS snow water equivalent estimates for North America: case study of a Canadian basin","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow; Structural basin; Water equivalent; Geography; Physical geography; Climatology; Environmental science; Geology; Meteorology; Geomorphology","score_opus":0.06060300234233475,"score_gpt":0.25591461109256136,"score_spread":0.19531160875022663,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020650988","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99289024,0.00030316354,0.0025315785,0.0002288261,0.000018313098,0.00004204971,0.0010794193,0.00014918383,0.0027571956],"genre_scores_gemma":[0.9927844,0.00012294513,0.0053800647,0.000028030685,0.0000046576565,0.000009254759,0.00062299287,0.000031078638,0.0010167835],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99956983,0.000059746028,0.000025269415,0.00008464634,0.00015092592,0.00010959243],"domain_scores_gemma":[0.99847704,0.00022134036,0.00011336409,0.00008998542,0.0010434028,0.000054962624],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0012276476,0.0004251127,0.000298015,0.0009981114,0.0012695459,0.00089965377,0.00091234467,0.00037445672,0.0006726041],"category_scores_gemma":[0.0041383086,0.00016709004,0.00037364065,0.0019808826,0.0004023692,0.00038957264,0.0004461499,0.0002807541,0.00010439963],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00038071457,0.00014395379,0.6921737,0.00018554377,0.0003122435,0.0008097895,0.0015773928,0.13905917,0.010377156,0.002177998,0.005148131,0.1476542],"study_design_scores_gemma":[0.0000976486,0.00005036783,0.81046325,0.00007686999,0.00025249834,0.00015888721,0.0018812715,0.17091498,0.0051377174,0.00060793257,0.010285587,0.00007292126],"about_ca_topic_score_codex":0.9806131,"about_ca_topic_score_gemma":0.9879996,"teacher_disagreement_score":0.019386888,"about_ca_system_score_codex":0.008746881,"about_ca_system_score_gemma":0.013614029,"threshold_uncertainty_score":0.06346333},"labels":[],"label_agreement":null},{"id":"W3020873566","doi":"","title":"OASIS-CANADA: observations of boundary layer ozone and mercury depletion from the Arctic Ocean surface","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Mercury impact and mitigation studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mercury (programming language); Ozone depletion; Environmental science; The arctic; Arctic; Boundary layer; Ozone layer; Ozone; Climatology; Atmospheric sciences; Meteorology; Oceanography; Geology; Geography; Physics","score_opus":0.027697681389251647,"score_gpt":0.2361305204460306,"score_spread":0.20843283905677895,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020873566","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99181974,0.0003344905,0.00016155496,0.0001947595,0.000025421361,0.000027389206,0.003732832,0.00006535127,0.0036384654],"genre_scores_gemma":[0.9915036,0.00035224418,0.00079839147,0.000095560965,0.0000109936245,0.000017266757,0.00386292,0.000023778975,0.003335321],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99979466,0.000008425599,0.0000065059326,0.000029583081,0.00009345007,0.000067326706],"domain_scores_gemma":[0.9996755,0.000013976191,0.000028437482,0.000010838584,0.00016571903,0.0001054854],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029085492,0.0005130495,0.00041119588,0.00068630616,0.002636008,0.0012502511,0.00063022546,0.0004641356,0.0012263919],"category_scores_gemma":[0.00041747454,0.00026141305,0.00033407533,0.0019769582,0.0004291211,0.00040219567,0.00077426096,0.0005578726,0.00020269936],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0019574438,0.00033524545,0.91465265,0.00015481914,0.0004306224,0.0007839158,0.0020347186,0.004992071,0.034133103,0.0008752593,0.011828589,0.027821587],"study_design_scores_gemma":[0.000097679884,0.00003854219,0.98869413,0.000018268986,0.000057290014,0.00004673989,0.00083500607,0.0027654173,0.0021686251,0.00005319989,0.0051990254,0.000025997182],"about_ca_topic_score_codex":0.99390703,"about_ca_topic_score_gemma":0.9965579,"teacher_disagreement_score":0.010649035,"about_ca_system_score_codex":0.010649035,"about_ca_system_score_gemma":0.021430075,"threshold_uncertainty_score":0.07726455},"labels":[],"label_agreement":null},{"id":"W3020925566","doi":"","title":"New Developments in Wildfire Pollution Forecasting at the Canadian Meteorological Centre","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meteorology; Environmental science; Pollution; Climatology; Geography; Geology","score_opus":0.02005159148407965,"score_gpt":0.21486013832646667,"score_spread":0.19480854684238702,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3020925566","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.14846174,0.05401249,0.44439486,0.13036028,0.009059156,0.00066492014,0.02904022,0.021194445,0.16281192],"genre_scores_gemma":[0.56458545,0.029770348,0.3168778,0.0030037637,0.005151297,0.00014593733,0.020260073,0.002161318,0.058043867],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9973067,0.0004893536,0.00021323036,0.0003498462,0.001391549,0.00024926115],"domain_scores_gemma":[0.9846096,0.002863417,0.00056255976,0.0014011903,0.008716858,0.0018463796],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.009170766,0.0009950342,0.0010064619,0.0035301633,0.0015662063,0.006324917,0.0034775399,0.001387526,0.014199185],"category_scores_gemma":[0.018331671,0.0006966408,0.0005804144,0.0056930473,0.0007714549,0.0046523097,0.0012932449,0.0032396074,0.0029048587],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020782519,0.0002072682,0.09298896,0.00027945515,0.00013664387,0.0001437623,0.00081584486,0.040506154,0.0027629118,0.009406056,0.14191645,0.7106287],"study_design_scores_gemma":[0.00010385954,0.00011239452,0.09941008,0.0006216872,0.00017423183,0.00013636425,0.0012401332,0.29992652,0.0052434187,0.0101143345,0.5826505,0.00026645995],"about_ca_topic_score_codex":0.85930926,"about_ca_topic_score_gemma":0.893684,"teacher_disagreement_score":0.14069074,"about_ca_system_score_codex":0.006974078,"about_ca_system_score_gemma":0.013404833,"threshold_uncertainty_score":0.28303856},"labels":[],"label_agreement":null},{"id":"W3021021933","doi":"","title":"Time-series Oxygen-18 Precipitation Isoscapes for Canada and the Northern United States","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Precipitation; Series (stratigraphy); Environmental science; Climatology; Geography; Meteorology; Geology","score_opus":0.00288454431856274,"score_gpt":0.1650394771897348,"score_spread":0.16215493287117205,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021021933","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9164246,0.0005383929,0.00040790086,0.00026462824,0.000041798932,0.000023586437,0.07622765,0.00016599083,0.0059054317],"genre_scores_gemma":[0.93482614,0.00038428034,0.00075465953,0.000047936584,0.000012349987,0.000014243053,0.060762882,0.000031426847,0.0031660893],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99983954,0.000009182005,0.000009634218,0.000034381475,0.000053709486,0.00005345159],"domain_scores_gemma":[0.9994906,0.00002419962,0.000049816612,0.000014695768,0.0003316102,0.00008902988],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021362382,0.00027907465,0.00023189327,0.0017051876,0.0005907608,0.00068691734,0.0003747174,0.0002763607,0.0013625518],"category_scores_gemma":[0.00064074335,0.00010661821,0.00037309088,0.003108432,0.00016498331,0.00031094174,0.00032945158,0.000258612,0.00024226677],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007386822,0.00009637149,0.93012595,0.000117983385,0.00036176,0.00025943018,0.0005047579,0.010104092,0.0013013695,0.0011649808,0.029597785,0.02562688],"study_design_scores_gemma":[0.000014742143,0.000007142867,0.9919734,0.000010391919,0.000030142135,0.000023964076,0.00034916608,0.00198348,0.00022233739,0.000039848946,0.0053366423,0.000008701905],"about_ca_topic_score_codex":0.9798665,"about_ca_topic_score_gemma":0.9893511,"teacher_disagreement_score":0.020133495,"about_ca_system_score_codex":0.005173245,"about_ca_system_score_gemma":0.006278018,"threshold_uncertainty_score":0.040504098},"labels":[],"label_agreement":null},{"id":"W3021240509","doi":"","title":"Improved g-dot signature in Canada by terrestrial gravity inversion","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Inversion (geology); Geology; Remote sensing; Geodesy; Seismology","score_opus":0.005591525795453498,"score_gpt":0.18515962646785156,"score_spread":0.17956810067239806,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021240509","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9768702,0.00028306057,0.003524782,0.00042657857,0.000068262554,0.000027688751,0.0045333463,0.0009596137,0.013306499],"genre_scores_gemma":[0.9929987,0.000077040946,0.0030433633,0.00004975503,0.000009234362,0.000004480264,0.0016579897,0.00011156461,0.0020478847],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998293,0.000007672849,0.000003393237,0.000033939537,0.000060343056,0.00006541949],"domain_scores_gemma":[0.9997327,0.0000139226195,0.000015561187,0.000014422414,0.0001801189,0.0000433235],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017731095,0.00045400942,0.00033308056,0.00096301234,0.0010144458,0.0010219028,0.00074131764,0.00048186025,0.002545312],"category_scores_gemma":[0.0005390676,0.00019013592,0.0002552056,0.0022933292,0.00044704665,0.00050086837,0.00061634736,0.00056286814,0.00042763085],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.003177184,0.00047535248,0.37752315,0.00033886795,0.00035098713,0.0025940707,0.0018924677,0.096014544,0.28693542,0.005389132,0.02160572,0.20370314],"study_design_scores_gemma":[0.00033745985,0.00009570123,0.7214072,0.00006359823,0.00024698235,0.00024260825,0.0011135145,0.21333785,0.04138573,0.0011450743,0.020444423,0.00017990211],"about_ca_topic_score_codex":0.88653594,"about_ca_topic_score_gemma":0.9328082,"teacher_disagreement_score":0.11346406,"about_ca_system_score_codex":0.003719204,"about_ca_system_score_gemma":0.007050704,"threshold_uncertainty_score":0.22826451},"labels":[],"label_agreement":null},{"id":"W3021246046","doi":"","title":"Dynamic connectivity within small, forested wetlands impacts runoff generation in Aspen-dominated catchments of the sub-humid Boreal Plain (Canada)","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Wetland; Boreal; Surface runoff; Hydrology (agriculture); Environmental science; Taiga; Permafrost; Peat; Geology; Forestry; Ecology; Geography; Oceanography","score_opus":0.006411372044846811,"score_gpt":0.2033035193019139,"score_spread":0.19689214725706708,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021246046","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999534,0.000011272264,0.000025864578,0.000019729307,5.709077e-7,0.000001951122,0.00009496023,0.0000033274098,0.00030831675],"genre_scores_gemma":[0.9996444,0.000011324574,0.000030137064,0.0000052285277,4.453731e-7,0.0000010319675,0.00006744979,0.0000013312487,0.00023858952],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998566,0.000013526449,0.0000052882815,0.000033874596,0.000015985761,0.000074775955],"domain_scores_gemma":[0.9997743,0.000035377303,0.00003367938,0.00000792238,0.000044062333,0.00010461387],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001131092,0.00009981679,0.00013675714,0.00044810196,0.0007611499,0.0010401178,0.00037940536,0.00023909092,0.0016526836],"category_scores_gemma":[0.00058033725,0.00012354128,0.00016364935,0.00057897624,0.00069744827,0.00041502013,0.00065804925,0.00018301305,0.00008558595],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013732113,0.000074081174,0.986395,0.000014833241,0.000048530732,0.00022354048,0.001211228,0.002763732,0.0024602332,0.00044781555,0.00053578033,0.005687885],"study_design_scores_gemma":[0.000004772872,0.000009339208,0.99470526,0.0000039018996,0.0000099106,0.000028503126,0.0018090083,0.0029776366,0.00006818796,0.000104673454,0.00027387738,0.0000048165493],"about_ca_topic_score_codex":0.9165788,"about_ca_topic_score_gemma":0.9703021,"teacher_disagreement_score":0.08342117,"about_ca_system_score_codex":0.0052226,"about_ca_system_score_gemma":0.0036098252,"threshold_uncertainty_score":0.16782486},"labels":[],"label_agreement":null},{"id":"W3021250849","doi":"","title":"Reconstructing Fire Disturbances in Coastal Temperate Rainforests on the Central Coast of British Columbia, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Rainforest; Temperate rainforest; Geography; Temperate climate; Oceanography; Physical geography; Geology; Ecology; Ecosystem","score_opus":0.007279119151449811,"score_gpt":0.1750247348524279,"score_spread":0.1677456157009781,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021250849","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9970897,0.000290443,0.00022687517,0.000047600948,0.0000042698257,0.00001120713,0.00086989714,0.000017178801,0.0014428546],"genre_scores_gemma":[0.99802136,0.00016761386,0.00042062806,0.000015971458,0.0000015364693,0.000005979698,0.00067942304,0.000008103095,0.0006795144],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998258,0.000016899223,0.000012205589,0.00003920103,0.000027767543,0.00007825076],"domain_scores_gemma":[0.9993319,0.00009806592,0.00008644941,0.000037025875,0.00029333474,0.000153259],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002629461,0.00027128315,0.00028041622,0.0027054008,0.0017640305,0.0016800186,0.0006547188,0.0004463747,0.0013998902],"category_scores_gemma":[0.001176135,0.00031420783,0.00025034114,0.0034606813,0.00042929704,0.00030408867,0.0006357872,0.00034362843,0.0002360802],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000091208676,0.000032724492,0.9720659,0.000036293244,0.000088930465,0.0003477141,0.001231185,0.0057059983,0.0015894452,0.0001199071,0.0011393134,0.017551325],"study_design_scores_gemma":[0.000005597773,0.0000051750403,0.9881272,0.000033394623,0.000024038476,0.00005639711,0.003990483,0.006084853,0.00012050009,0.000058185793,0.0014828161,0.000011301754],"about_ca_topic_score_codex":0.98116505,"about_ca_topic_score_gemma":0.9957858,"teacher_disagreement_score":0.018834949,"about_ca_system_score_codex":0.006409081,"about_ca_system_score_gemma":0.006805311,"threshold_uncertainty_score":0.04650134},"labels":[],"label_agreement":null},{"id":"W3021279253","doi":"","title":"Climatological assessment of spatiotemporal trends in observational monthly snowfall totals and extremes over the Canadian Great Lakes Basin","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Snow; Environmental science; Meteorology; Structural basin; Geography; Geology","score_opus":0.0832038963613241,"score_gpt":0.29713346431424625,"score_spread":0.21392956795292217,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021279253","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.993968,0.00020447985,0.00012855344,0.0001528705,0.000006018112,0.000010334659,0.004607759,0.000016353435,0.00090556405],"genre_scores_gemma":[0.9965222,0.00014283655,0.00022130829,0.000031209544,0.0000039033425,0.000006211736,0.0025564237,0.0000035516414,0.0005123104],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999736,0.00002929091,0.000026757367,0.000064696935,0.00007627489,0.00006692286],"domain_scores_gemma":[0.9988533,0.00011205075,0.00017836702,0.00006662889,0.00064728677,0.00014233588],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00061946304,0.00019874699,0.0001425714,0.001184403,0.0008679173,0.00073489035,0.0004498979,0.00024457884,0.00070416235],"category_scores_gemma":[0.0015396579,0.00019843891,0.0002321096,0.002496824,0.0003540127,0.0003415444,0.0004555121,0.00023814879,0.000090835136],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000093332965,0.000037725822,0.98553234,0.000030862713,0.00016375963,0.000056303536,0.00045777796,0.0016083093,0.0010143716,0.00013237308,0.0015022234,0.009370603],"study_design_scores_gemma":[0.0000026283938,0.000004050998,0.9983637,0.0000046044133,0.00001400672,0.0000067673063,0.00016429022,0.0008196075,0.00005356202,0.0000094607785,0.00055403577,0.0000033734636],"about_ca_topic_score_codex":0.98133904,"about_ca_topic_score_gemma":0.99263203,"teacher_disagreement_score":0.018660963,"about_ca_system_score_codex":0.005986496,"about_ca_system_score_gemma":0.0076902783,"threshold_uncertainty_score":0.043435276},"labels":[],"label_agreement":null},{"id":"W3021339003","doi":"","title":"Baddeleyite with xenocrystic zircon inclusions in the Cambrian Spread Eagle Gabbro, western Avalon Peninsula, Newfoundland","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Baddeleyite; Zircon; Gabbro; Geology; Peninsula; Geochemistry; Geochronology; Archaeology; Paleontology; Igneous rock; Geography","score_opus":0.011438427818560689,"score_gpt":0.2064080537403077,"score_spread":0.19496962592174702,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021339003","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99765414,0.00026987825,0.000058787587,0.00004611761,0.000003643525,0.000004646923,0.00037039036,0.000008679419,0.0015837025],"genre_scores_gemma":[0.99779296,0.00011609222,0.00016918144,0.000035084628,0.0000018243571,0.0000034462,0.0003983968,0.0000073837723,0.0014756966],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99975103,0.000015466785,0.000019591902,0.00006520515,0.00004621604,0.00010247933],"domain_scores_gemma":[0.9997708,0.000019620842,0.00005812732,0.000015168971,0.00009908416,0.000037231297],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030285527,0.00029450306,0.0003250588,0.0022169107,0.0020361566,0.0015504956,0.00066984596,0.00044248413,0.001843956],"category_scores_gemma":[0.0005056915,0.00033571833,0.00016815656,0.0018115615,0.0010222932,0.0004305436,0.0009847404,0.00026974853,0.00032994442],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004003793,0.00005305917,0.95395106,0.000074903604,0.00013531366,0.0011622886,0.0028268634,0.0005627398,0.029472807,0.00028125616,0.00063052814,0.010448684],"study_design_scores_gemma":[0.0000061342466,0.000012416869,0.9952514,0.000017629021,0.000026734606,0.00012447358,0.0018184362,0.0001770853,0.0009862642,0.000013969131,0.001561859,0.0000035764433],"about_ca_topic_score_codex":0.8760147,"about_ca_topic_score_gemma":0.96095955,"teacher_disagreement_score":0.12398529,"about_ca_system_score_codex":0.004739982,"about_ca_system_score_gemma":0.0025896982,"threshold_uncertainty_score":0.2494309},"labels":[],"label_agreement":null},{"id":"W3021532417","doi":"","title":"Investigation of CO, C2H6 and aerosols over Eastern Canada during BORTAS 2011 using ground-based and satellite-based observations and model simulations","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Satellite; Environmental science; Meteorology; Remote sensing; Climatology; Atmospheric sciences; Geography; Geology; Engineering","score_opus":0.02316434295740683,"score_gpt":0.20107571752981512,"score_spread":0.1779113745724083,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021532417","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9976394,0.000088440574,0.000107181004,0.000060831288,0.000005703597,0.000012050633,0.0011468793,0.000030040586,0.00090948073],"genre_scores_gemma":[0.9979652,0.000072682684,0.00022779143,0.000017283153,0.0000027499016,0.000007153193,0.0012785805,0.0000058212527,0.00042280264],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99984086,0.000009013183,0.0000087835115,0.000042635176,0.00004459691,0.000054028067],"domain_scores_gemma":[0.99975497,0.00003442358,0.000024455177,0.000015114379,0.00011570183,0.000055324497],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003009774,0.000581836,0.0003844513,0.0007317687,0.0014501122,0.0010209826,0.0006533216,0.000811335,0.0005404202],"category_scores_gemma":[0.00044266979,0.00040208717,0.0005572623,0.0013223,0.00050842634,0.00044275774,0.00038414705,0.00038180404,0.00010042783],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010278904,0.00039611818,0.88745826,0.00017615833,0.00051860814,0.0011489792,0.0015587879,0.072513506,0.017248094,0.0006984387,0.0024656893,0.014789431],"study_design_scores_gemma":[0.000059439408,0.000042990247,0.9292726,0.000021571774,0.00011232772,0.000064149244,0.0010903483,0.06504464,0.001990895,0.00005383625,0.0021982372,0.00004882312],"about_ca_topic_score_codex":0.9798023,"about_ca_topic_score_gemma":0.9835265,"teacher_disagreement_score":0.02019769,"about_ca_system_score_codex":0.010995454,"about_ca_system_score_gemma":0.007427382,"threshold_uncertainty_score":0.079777956},"labels":[],"label_agreement":null},{"id":"W3021599580","doi":"","title":"Forecast of wind ramps in Gaspe region of Quebec","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology","score_opus":0.006289548421738671,"score_gpt":0.17588586062278255,"score_spread":0.16959631220104388,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021599580","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.974999,0.00043458655,0.0012449862,0.0008215428,0.00007051242,0.000039960138,0.011436622,0.0002821094,0.01067063],"genre_scores_gemma":[0.99353033,0.0002110577,0.00055068376,0.000042307904,0.000010695092,0.00001116246,0.0024497218,0.000011822323,0.003182269],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999099,0.000007860684,0.0000036554843,0.00002441436,0.000023021159,0.00003117357],"domain_scores_gemma":[0.99968505,0.00003207372,0.00003308548,0.000011643328,0.00015639454,0.00008181318],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018477823,0.00037751574,0.00026845213,0.0007177253,0.00080053316,0.0012597296,0.00063913205,0.0007038343,0.002912627],"category_scores_gemma":[0.0007078454,0.00022612889,0.00038639462,0.00091471476,0.00027584346,0.00043430537,0.0002567701,0.0006993968,0.00029524128],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00031563445,0.00013009198,0.39445323,0.00009945822,0.00024634137,0.0007561756,0.00045796574,0.5556037,0.0028500643,0.0034991005,0.02205476,0.019533424],"study_design_scores_gemma":[0.00005126745,0.000037066453,0.40235144,0.00006674494,0.000039106577,0.000049773018,0.00071799813,0.58447963,0.0005051656,0.00038114088,0.011261696,0.000058937047],"about_ca_topic_score_codex":0.9842965,"about_ca_topic_score_gemma":0.987004,"teacher_disagreement_score":0.0157035,"about_ca_system_score_codex":0.013233596,"about_ca_system_score_gemma":0.006984862,"threshold_uncertainty_score":0.096016884},"labels":[],"label_agreement":null},{"id":"W3021610569","doi":"","title":"Biogeochemical Trends and Their Ecosystem Impacts in Atlantic Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Water Quality and Resources Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Biogeochemical cycle; Ecosystem; Environmental science; Oceanography; Environmental resource management; Ecology; Geology","score_opus":0.02357708541081248,"score_gpt":0.21484089970312192,"score_spread":0.19126381429230943,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021610569","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9961659,0.00045317732,0.00003748322,0.00049814984,0.000007753911,0.000003282674,0.00075300236,0.0000050590666,0.0020762112],"genre_scores_gemma":[0.9975183,0.0005490517,0.000060814447,0.00005886429,0.0000036709082,0.0000017473027,0.0003142225,0.0000031027657,0.0014901744],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982786,0.000014197811,0.000012006384,0.000021390735,0.00005441072,0.00006998092],"domain_scores_gemma":[0.9990952,0.00008814897,0.00016042078,0.000025481137,0.00040481103,0.00022593202],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032356725,0.000113878545,0.00011366754,0.0008678797,0.0010881046,0.0012145697,0.00035571132,0.00029181014,0.0016300877],"category_scores_gemma":[0.0012568454,0.00013195488,0.00020722272,0.0020464319,0.0006822596,0.00044477155,0.0006442371,0.0003819395,0.00010013865],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006550242,0.000024234281,0.98696834,0.000017722283,0.000078294295,0.00008534511,0.0011142864,0.00033286455,0.00043648152,0.0003841415,0.0008966531,0.0095960805],"study_design_scores_gemma":[0.0000019778327,0.0000047942935,0.9963141,0.000009030321,0.000019701813,0.00001555665,0.0015963735,0.0002484388,0.00006391916,0.000056493467,0.0016651673,0.000004426134],"about_ca_topic_score_codex":0.9911877,"about_ca_topic_score_gemma":0.99666744,"teacher_disagreement_score":0.015141098,"about_ca_system_score_codex":0.015141098,"about_ca_system_score_gemma":0.012079467,"threshold_uncertainty_score":0.1098569},"labels":[],"label_agreement":null},{"id":"W3021908508","doi":"","title":"Reconstructing deep crustal dynamics in a large, hot orogen: Application of integrated zircon petrochronology and petrological modeling to the Canadian Grenville Province","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Zircon; Geology; Geochemistry; Earth science","score_opus":0.006004226323800074,"score_gpt":0.17709730867446463,"score_spread":0.17109308235066456,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3021908508","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99398947,0.00026568992,0.001709159,0.00017280944,0.000006782023,0.00002048593,0.001448455,0.00013826245,0.002248986],"genre_scores_gemma":[0.99652267,0.00013247812,0.0019442971,0.000014891528,0.0000021390886,0.0000043649893,0.00062870025,0.00003744936,0.0007130418],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997776,0.000012467939,0.000009355918,0.000064065796,0.00007144215,0.00006502754],"domain_scores_gemma":[0.9996977,0.000035823134,0.000032908945,0.000030332209,0.00015723774,0.000046122434],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00048363465,0.0006220695,0.00048436818,0.0015836383,0.0017247587,0.0016702223,0.001314367,0.0005674722,0.0014177738],"category_scores_gemma":[0.001188335,0.00054361654,0.00049687806,0.002519597,0.0007088448,0.0004348626,0.0007920231,0.00047657383,0.0002106855],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00039967985,0.00015701217,0.6554475,0.00014624429,0.0005377336,0.0005526821,0.0018363991,0.2352346,0.025955273,0.002877614,0.0026480928,0.07420728],"study_design_scores_gemma":[0.00009453736,0.000026282287,0.71747065,0.00004121769,0.00015518675,0.000097860306,0.0015555532,0.27027014,0.002690748,0.000623386,0.0068983533,0.00007607927],"about_ca_topic_score_codex":0.9912096,"about_ca_topic_score_gemma":0.9938626,"teacher_disagreement_score":0.012843987,"about_ca_system_score_codex":0.012843987,"about_ca_system_score_gemma":0.018454542,"threshold_uncertainty_score":0.093190074},"labels":[],"label_agreement":null},{"id":"W3022024271","doi":"","title":"The role of lithospheric inheritance in rifting and continental breakup of the Labrador Sea","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Breakup; Geology; Rift; Continental margin; Lithosphere; Inheritance (genetic algorithm); Paleontology; Oceanography; Tectonics; Genetics; Biology","score_opus":0.007088377162709536,"score_gpt":0.18026055084183204,"score_spread":0.1731721736791225,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022024271","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994006,0.00007891302,0.000019529361,0.000018172856,5.1391027e-7,3.5800159e-7,0.000017271275,0.0000016453992,0.00046294337],"genre_scores_gemma":[0.99984217,0.000026867812,0.000011699558,0.0000027979897,7.951656e-7,1.8510902e-7,0.000013162975,0.000001242643,0.00010092312],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997334,0.000085491,0.000020961343,0.00002926749,0.000016435917,0.00011439381],"domain_scores_gemma":[0.9994814,0.0001284983,0.00018500669,0.00004138089,0.0000547753,0.00010892996],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038532694,0.00014492386,0.00015652961,0.0008491797,0.00052188593,0.00093716325,0.0004176067,0.00019213204,0.0012821625],"category_scores_gemma":[0.001506957,0.00010573412,0.00013014396,0.00053228106,0.0009588777,0.00036689703,0.0005884669,0.00020556946,0.0001545174],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040602506,0.000034474462,0.9651782,0.000025337731,0.00008971071,0.0004861329,0.001495093,0.0013911765,0.00884933,0.0012261177,0.00007211208,0.020746283],"study_design_scores_gemma":[0.00000447498,0.000031976193,0.99739647,0.0000063024213,0.000021977105,0.00008178797,0.0010433118,0.0005707189,0.00046342978,0.00015434207,0.00021956628,0.000005624145],"about_ca_topic_score_codex":0.08138941,"about_ca_topic_score_gemma":0.11144944,"teacher_disagreement_score":0.9186106,"about_ca_system_score_codex":0.0010019916,"about_ca_system_score_gemma":0.0008346173,"threshold_uncertainty_score":0.16183138},"labels":[],"label_agreement":null},{"id":"W3022249739","doi":"","title":"Alvar soils and ecology in the boreal forest and taiga regions of Canada.","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Botany and Plant Ecology Studies","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Taiga; Ecology; Soil water; Forestry; Geography; Boreal; Environmental science; Biology","score_opus":0.014552106922843795,"score_gpt":0.18715359820388203,"score_spread":0.17260149128103824,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022249739","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9944951,0.0013043025,0.000106546184,0.00024597725,0.000008942936,0.000015501706,0.0011240868,0.000012898268,0.002686736],"genre_scores_gemma":[0.99753296,0.0004379394,0.00017748144,0.00004435035,0.000002625806,0.000005467485,0.00041007064,0.0000034682068,0.0013855415],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968195,0.000027147837,0.000010684995,0.00003472715,0.000061385595,0.00018405645],"domain_scores_gemma":[0.9994454,0.00003391994,0.00008254034,0.000014051642,0.00018764133,0.00023640708],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023507238,0.00021294196,0.00019657867,0.0015945663,0.0024692582,0.0010355494,0.00044963186,0.00022863875,0.0012745636],"category_scores_gemma":[0.0006735268,0.00015820675,0.00021460025,0.0025519426,0.0009170434,0.00033480485,0.00089126686,0.0003251846,0.00012132037],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018247552,0.00005997838,0.96491045,0.00009095789,0.00008567967,0.00031962324,0.0043788864,0.0003989834,0.0016589767,0.0014685761,0.0016390182,0.024806382],"study_design_scores_gemma":[0.000004668113,0.000009495155,0.99295336,0.000024830506,0.000013486047,0.00007400193,0.0045425543,0.00022803328,0.00008271154,0.000088055385,0.0019714509,0.00000739458],"about_ca_topic_score_codex":0.99522674,"about_ca_topic_score_gemma":0.99909484,"teacher_disagreement_score":0.016566372,"about_ca_system_score_codex":0.016566372,"about_ca_system_score_gemma":0.019614145,"threshold_uncertainty_score":0.12019801},"labels":[],"label_agreement":null},{"id":"W3022288105","doi":"","title":"Freshwater sources, distribution, and temporal variability in the Canadian Basin of the Arctic Ocean: Results from US Arctic GEOTRACES 2015 and comparison with 1994 and 2005 sections","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geotraces; Arctic; Oceanography; The arctic; Canada Basin; Distribution (mathematics); Geology; Structural basin; Climatology; Arctic dipole anomaly; Geography; Environmental science; Physical geography; Arctic ice pack; Geomorphology; Seawater","score_opus":0.010334533747274199,"score_gpt":0.21585886686114,"score_spread":0.2055243331138658,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022288105","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98265344,0.00087582174,0.00019588949,0.00010952091,0.0000100705665,0.000014779415,0.0141532775,0.000028003371,0.0019592235],"genre_scores_gemma":[0.99110764,0.00077844085,0.00038609703,0.000033521712,0.0000050394597,0.000009702628,0.006495442,0.000008731269,0.001175451],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997708,0.0000093680865,0.000018701907,0.00004918442,0.00007001597,0.00008192124],"domain_scores_gemma":[0.9995409,0.00002441648,0.00008134699,0.000015184818,0.00026478284,0.000073407595],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032322534,0.0003095681,0.00021324692,0.0028064062,0.0010501732,0.00086595095,0.00050107564,0.00024220858,0.00064831914],"category_scores_gemma":[0.00054622465,0.00021589301,0.00057564117,0.005357017,0.00042923898,0.00031446043,0.0006262043,0.00018154997,0.00010083951],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018368747,0.000024396832,0.98173,0.00007057378,0.00020828121,0.00009115756,0.000795467,0.0011281525,0.0012397221,0.00030318325,0.0018336605,0.012391825],"study_design_scores_gemma":[0.0000019126596,0.0000037902425,0.9977456,0.0000106007,0.000027893244,0.000016599348,0.0003486724,0.00031332087,0.00012732194,0.000013689626,0.0013842683,0.0000064057194],"about_ca_topic_score_codex":0.9917157,"about_ca_topic_score_gemma":0.99600416,"teacher_disagreement_score":0.009937929,"about_ca_system_score_codex":0.009937929,"about_ca_system_score_gemma":0.010355555,"threshold_uncertainty_score":0.07210505},"labels":[],"label_agreement":null},{"id":"W3022535848","doi":"","title":"Challenges and Early Results: Interactive benthic experiments in hydrate environments of Barkley Canyon, NEPTUNE Canada.","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Canyon; Neptune; Benthic zone; Geology; Geologist; Oceanography; Environmental science; Archaeology; Astrobiology; Geography; Paleontology; Geomorphology; Planet","score_opus":0.0176611934758566,"score_gpt":0.22748590457517182,"score_spread":0.20982471109931522,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022535848","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9897646,0.00020614204,0.001198573,0.0005874591,0.000019545083,0.00011674883,0.001043511,0.00009639566,0.006967058],"genre_scores_gemma":[0.9853302,0.00034350588,0.0065344023,0.00045291867,0.000012358494,0.00014523981,0.0010625608,0.00008166134,0.0060371216],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9995484,0.00008686031,0.000009523081,0.0000816093,0.00012335877,0.00015032753],"domain_scores_gemma":[0.9989957,0.00024889255,0.00003085564,0.000066005894,0.00027220492,0.00038627983],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00089783064,0.00045031856,0.00041920829,0.00017099062,0.004038118,0.0010343372,0.0014380162,0.00064966787,0.0022835352],"category_scores_gemma":[0.0011508584,0.00025681197,0.00020597952,0.00040413943,0.0011278017,0.0005312504,0.001242863,0.0010752262,0.00033779469],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.010549817,0.0042253113,0.28044307,0.0010423646,0.0005413486,0.004028918,0.02990365,0.01172095,0.5151955,0.0032723537,0.020633508,0.11844324],"study_design_scores_gemma":[0.0003603501,0.0029960265,0.8771177,0.00010380537,0.00025626004,0.00035693633,0.031500462,0.0058954824,0.04559016,0.0018240531,0.0338197,0.00017912831],"about_ca_topic_score_codex":0.8480904,"about_ca_topic_score_gemma":0.96592605,"teacher_disagreement_score":0.15190959,"about_ca_system_score_codex":0.0057966183,"about_ca_system_score_gemma":0.0064523406,"threshold_uncertainty_score":0.3056084},"labels":[],"label_agreement":null},{"id":"W3022587741","doi":"","title":"Natural land cover in agricultural catchments alters flood effects on DOM composition and decreases nutrient levels in streams","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Agriculture and Agri-Food Canada; Trent University","funders":"","keywords":"Environmental science; Dissolved organic carbon; Nutrient; Hydrology (agriculture); STREAMS; Land cover; Flood myth; Wetland; Land use; Agricultural land; Phosphorus; Ecology; Chemistry; Geography; Biology; Geology","score_opus":0.00438121418412566,"score_gpt":0.2076425596538526,"score_spread":0.20326134546972693,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022587741","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99982893,0.00001533714,0.000048045607,0.0000029573928,3.4273864e-7,6.338053e-7,0.00003979222,0.000001563286,0.000062289706],"genre_scores_gemma":[0.99978656,0.000016069882,0.00005396607,0.0000027917201,0.0000011444944,0.0000016497638,0.000093736366,7.424285e-7,0.00004333464],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998779,0.00004112634,0.000012015886,0.00003112887,0.000014238822,0.000023632529],"domain_scores_gemma":[0.99967766,0.00011047927,0.000116945266,0.000022542683,0.000026238802,0.00004625599],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027653415,0.0000784165,0.00014691771,0.00036699168,0.00024483923,0.00034632327,0.00008747021,0.00012248114,0.00056691864],"category_scores_gemma":[0.00061264157,0.000072300594,0.00017446064,0.00038582188,0.0003582187,0.00021221775,0.0002561163,0.00008919687,0.000053920052],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014299602,0.000039288185,0.97533995,0.000017664717,0.000050394567,0.000115682495,0.00021503824,0.00077493425,0.019612046,0.00005139493,0.00005165083,0.00358899],"study_design_scores_gemma":[7.86363e-7,0.000011796228,0.9993498,5.539048e-7,0.0000037581672,0.000020318708,0.000046081455,0.00033353292,0.00017533595,0.000016087177,0.00004105314,8.6514865e-7],"about_ca_topic_score_codex":0.0048158183,"about_ca_topic_score_gemma":0.010788821,"teacher_disagreement_score":0.0048158183,"about_ca_system_score_codex":0.00024785855,"about_ca_system_score_gemma":0.00017831466,"threshold_uncertainty_score":0.009575546},"labels":[],"label_agreement":null},{"id":"W3022765029","doi":"","title":"Deterministic and Ensemble Storm Surge Prediction for Atlantic Canada With Lead Times of Hours to Ten Days","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Tropical and Extratropical Cyclones Research","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Dalhousie University; TransCanada (Canada)","funders":"","keywords":"Surge; Storm surge; Meteorology; Environmental science; Lead time; Flooding (psychology); Forecast period; Climatology; Ensemble average; Coastal flood; Allowance (engineering); Lead (geology); Storm; Geography; Geology; Engineering; Oceanography; Production (economics); Economics; Operations management","score_opus":0.023533438835563452,"score_gpt":0.22400708787431522,"score_spread":0.20047364903875178,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022765029","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.987086,0.00016577796,0.0034369242,0.00019725916,0.000035625515,0.000026749236,0.006012985,0.0004082379,0.0026304158],"genre_scores_gemma":[0.9915671,0.000094716,0.0023969128,0.0000152521225,0.000007705958,0.000012163091,0.004737232,0.000016354403,0.0011525787],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998754,0.0000096343165,0.000006467582,0.000029494533,0.000045425102,0.000033549997],"domain_scores_gemma":[0.99931633,0.00015923039,0.00005969859,0.000041554133,0.0003535222,0.000069608795],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00032009007,0.0006328727,0.000360272,0.00050764694,0.0005780052,0.0005874346,0.00082576176,0.00031606967,0.0012951283],"category_scores_gemma":[0.0011890081,0.00030320283,0.00043783957,0.00088710274,0.00019938775,0.00027495465,0.00032337976,0.00053874607,0.00015111324],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016139573,0.000060883656,0.038293004,0.000025034258,0.00007353172,0.000071714945,0.000024925746,0.941327,0.00053409545,0.0002743301,0.0027824508,0.016371751],"study_design_scores_gemma":[0.000017577597,0.000012330898,0.011614311,0.0000025373015,0.000007753244,0.0000038255885,0.000013634542,0.9878499,0.00021207919,0.000053398544,0.00020592463,0.000006627427],"about_ca_topic_score_codex":0.9438042,"about_ca_topic_score_gemma":0.9493758,"teacher_disagreement_score":0.056195796,"about_ca_system_score_codex":0.004607129,"about_ca_system_score_gemma":0.00766413,"threshold_uncertainty_score":0.11305344},"labels":[],"label_agreement":null},{"id":"W3022892705","doi":"","title":"Soil biogeochemistry properties vary between two boreal forest ecosystems in Quebec: significant differences in soil carbon, available nutrients and iron and aluminium crystallinity","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil Carbon and Nitrogen Dynamics","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Biogeochemistry; Nutrient; Environmental science; Soil carbon; Ecosystem; Taiga; Boreal; Soil organic matter; Environmental chemistry; Carbon fibers; Aluminium; Soil nutrients; Soil science; Agroforestry; Ecology; Soil water; Chemistry; Biology; Materials science","score_opus":0.028394779100471074,"score_gpt":0.2133724229661909,"score_spread":0.18497764386571983,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022892705","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.997347,0.00026738687,0.00015973422,0.00009079491,0.0000034342781,0.000016241165,0.0007054252,0.000016811266,0.001393107],"genre_scores_gemma":[0.9980591,0.000091797425,0.00020373723,0.000048043144,0.0000018313484,0.000009290249,0.00037719065,0.0000073168753,0.0012017238],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99970394,0.000038308695,0.000012208363,0.00007594589,0.000053927142,0.00011560955],"domain_scores_gemma":[0.9993919,0.00007708639,0.00011834864,0.000024000088,0.00024765392,0.00014102232],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00035394318,0.0002878203,0.0003739291,0.0013860824,0.0020683608,0.0014419889,0.0007497125,0.00047864523,0.002037346],"category_scores_gemma":[0.0006886658,0.00025162735,0.00032768832,0.001991848,0.0010854629,0.000589345,0.0005348562,0.00033686127,0.00017314019],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00046599188,0.00012581162,0.96181864,0.000074090734,0.0002873476,0.0003420358,0.0027412686,0.00079731963,0.013015706,0.00039540636,0.001090575,0.018845873],"study_design_scores_gemma":[0.0000062873864,0.000009237569,0.9980716,0.000007127899,0.000016507054,0.000030232171,0.0007349522,0.00035533612,0.00014219845,0.000014601502,0.0006044587,0.000007485892],"about_ca_topic_score_codex":0.98783827,"about_ca_topic_score_gemma":0.996062,"teacher_disagreement_score":0.017460922,"about_ca_system_score_codex":0.017460922,"about_ca_system_score_gemma":0.006275832,"threshold_uncertainty_score":0.12668842},"labels":[],"label_agreement":null},{"id":"W3022904931","doi":"","title":"Regional Arctic sea ice variations as predictor for winter climate conditions","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Arctic ice pack; Sea ice; Climatology; Arctic sea ice decline; Arctic; Antarctic sea ice; Cryosphere; Drift ice; Anomaly (physics); Environmental science; Geology; Arctic geoengineering; Lead (geology); Oceanography; Sea ice concentration; Sea ice thickness","score_opus":0.025764517575703628,"score_gpt":0.24991235038025497,"score_spread":0.22414783280455133,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022904931","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9974388,0.00011792758,0.0007095684,0.000031327094,0.000010962992,0.0000022719798,0.001098818,0.00005908033,0.0005312701],"genre_scores_gemma":[0.9973968,0.000055223118,0.00031798868,0.0000040175464,0.0000061970973,0.0000019010711,0.00202767,0.000008090636,0.0001821092],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982387,0.00004952654,0.00001344542,0.00006305147,0.000026332336,0.000023740511],"domain_scores_gemma":[0.99904066,0.0005257128,0.00015963342,0.000069276655,0.00010981609,0.00009498516],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010410636,0.00044215188,0.0002588397,0.00046638615,0.00018285484,0.0005980714,0.00018056919,0.00019103198,0.0011171257],"category_scores_gemma":[0.0017140092,0.00013706615,0.00044429442,0.0004501072,0.000108518354,0.00030888032,0.0003187049,0.00034607938,0.000572495],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013812912,0.000034585904,0.9698666,0.000012457411,0.00013678912,0.0000459152,0.000039429506,0.021818032,0.00068235473,0.000042125277,0.00047831231,0.0067052217],"study_design_scores_gemma":[0.000010217119,0.000073594485,0.8895556,0.000015957005,0.00005132336,0.000048238624,0.00010465363,0.10860026,0.0008230833,0.00011605431,0.0005890311,0.000011959555],"about_ca_topic_score_codex":0.022753742,"about_ca_topic_score_gemma":0.022189286,"teacher_disagreement_score":0.022753742,"about_ca_system_score_codex":0.00022587826,"about_ca_system_score_gemma":0.00039716766,"threshold_uncertainty_score":0.045242608},"labels":[],"label_agreement":null},{"id":"W3022906916","doi":"","title":"A race for ice discharge between ice streams on glaciated continental shelves","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"Université Laval","funders":"","keywords":"Arctic ice pack; Geology; Ice stream; Seabed gouging by ice; Antarctic sea ice; Ice sheet; Sea ice; Drift ice; Ice shelf; Cryosphere; Oceanography; Fast ice; Trough (economics); STREAMS; Glacial period; Ice divide; Geomorphology","score_opus":0.027165596251540525,"score_gpt":0.25150398624946785,"score_spread":0.22433838999792732,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022906916","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991358,0.000026045123,0.000023445407,0.00004157572,0.0000014693766,0.0000014607252,0.0000438297,0.000001817148,0.000724691],"genre_scores_gemma":[0.9997906,0.0000097251905,0.00002598008,0.000011378457,0.0000010813292,0.0000010210673,0.000039632574,7.0619353e-7,0.00011972225],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999081,0.00001514717,0.000004229604,0.000024586147,0.000015765505,0.000032208063],"domain_scores_gemma":[0.99943584,0.00012271892,0.0001296975,0.00003503481,0.00011633462,0.00016030463],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021748905,0.00006123705,0.00014627108,0.0003349504,0.0009740897,0.0010245211,0.0001992515,0.00019361611,0.002959667],"category_scores_gemma":[0.0008593444,0.000073375864,0.00009088486,0.0002970678,0.00091424165,0.0002658407,0.000459179,0.00029739254,0.0001528632],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014827993,0.00002529241,0.987217,0.0000145359745,0.000024038058,0.0001143969,0.0012194233,0.00009799706,0.006179127,0.00039740186,0.00023856417,0.004323889],"study_design_scores_gemma":[0.000004939938,0.000015716632,0.99793845,0.000004939255,0.0000055988953,0.00004285175,0.0009226137,0.00016027663,0.00040859374,0.0000736275,0.00042046173,0.0000020190978],"about_ca_topic_score_codex":0.052822575,"about_ca_topic_score_gemma":0.12836471,"teacher_disagreement_score":0.052822575,"about_ca_system_score_codex":0.0010222392,"about_ca_system_score_gemma":0.00089643564,"threshold_uncertainty_score":0.10503024},"labels":[],"label_agreement":null},{"id":"W3022966255","doi":"","title":"Metal content of road deposited sediment and fluvial channel-bed sediment in the City of Prince George, British Columbia","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Asphalt Pavement Performance Evaluation","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"George (robot); Sediment; Fluvial; Channel (broadcasting); Geology; Hydrology (agriculture); Archaeology; Geomorphology; Geography; Art; Geotechnical engineering; Engineering; Structural basin","score_opus":0.0158515204711963,"score_gpt":0.22099624156463663,"score_spread":0.2051447210934403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3022966255","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99823976,0.0000847869,0.000028589187,0.000033387445,0.0000017944302,0.000009026865,0.0006279894,0.000004019565,0.00097062526],"genre_scores_gemma":[0.9977131,0.000108629334,0.00006699995,0.000024808334,0.0000012571371,0.00000669296,0.000449267,0.0000031653801,0.0016259258],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997129,0.00003033377,0.000023322833,0.000047049652,0.00009910421,0.00008719549],"domain_scores_gemma":[0.99938834,0.000041610507,0.0000543825,0.000019799445,0.00039735006,0.00009864007],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015688315,0.00027655918,0.0002939297,0.0017023084,0.002103459,0.0010338337,0.0008792756,0.00043786815,0.0013005263],"category_scores_gemma":[0.00080394995,0.0002825341,0.00019561817,0.0029065525,0.000501063,0.00019010638,0.0005522949,0.00039428004,0.00033610212],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019888842,0.000051677223,0.98596364,0.000043580127,0.00006118338,0.00039389054,0.0021827065,0.00027955364,0.0016363579,0.0000635076,0.00086356944,0.008261458],"study_design_scores_gemma":[0.0000032714217,0.000013607079,0.9961902,0.000010206142,0.000017268661,0.000066057095,0.0027897025,0.00019436696,0.00018643469,0.000009964365,0.00051324844,0.000005617355],"about_ca_topic_score_codex":0.9846112,"about_ca_topic_score_gemma":0.9947061,"teacher_disagreement_score":0.015388787,"about_ca_system_score_codex":0.007229683,"about_ca_system_score_gemma":0.0053214375,"threshold_uncertainty_score":0.052455306},"labels":[],"label_agreement":null},{"id":"W3023123960","doi":"","title":"Ground surface temperature histories in northern Ontario and Québec for the past 500 years","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Climatology; Geology","score_opus":0.013405413778427194,"score_gpt":0.20850548086087103,"score_spread":0.19510006708244385,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023123960","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9694102,0.0016429698,0.0001920873,0.00042790774,0.000023542827,0.000028209663,0.02187302,0.000038220416,0.0063638547],"genre_scores_gemma":[0.98086745,0.0007411269,0.00018731761,0.000097154814,0.000008048968,0.000020429532,0.0081308605,0.000009757483,0.009937928],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999775,0.000015091808,0.00001666609,0.000042981494,0.00006482743,0.0000854591],"domain_scores_gemma":[0.99908125,0.00004167396,0.0001635872,0.000023233171,0.00053603534,0.00015406776],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020651775,0.00020037613,0.00023769667,0.0010305803,0.0013940114,0.00078420324,0.0006391786,0.00035788096,0.0031215677],"category_scores_gemma":[0.0007592327,0.00015680851,0.00032677455,0.002763623,0.00039982895,0.0003651313,0.0004868265,0.00030567692,0.0004209669],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015374311,0.000026315041,0.97750443,0.00010825146,0.00018462515,0.00019606555,0.0017418761,0.00094034,0.0005668802,0.0001874489,0.0072501837,0.011139717],"study_design_scores_gemma":[0.000003468276,0.000006386148,0.994739,0.000017333776,0.000015607995,0.00002345036,0.00072975626,0.0002488649,0.000038209095,0.000008431202,0.004163589,0.000005979856],"about_ca_topic_score_codex":0.9969254,"about_ca_topic_score_gemma":0.9991738,"teacher_disagreement_score":0.01729747,"about_ca_system_score_codex":0.01729747,"about_ca_system_score_gemma":0.009025119,"threshold_uncertainty_score":0.12550253},"labels":[],"label_agreement":null},{"id":"W3023234348","doi":"","title":"Environmental impact of early Sadlermiut settlements at Native Point (Southampton Island, Nunavut, Canada) before the Little Ice Age","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Indigenous Studies and Ecology","field":"Health Professions","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Human settlement; Geography; Physical geography; Environmental impact assessment; Little ice age; Archaeology; Oceanography; Geology; Glacier; Political science","score_opus":0.021948110286378684,"score_gpt":0.3354222648061285,"score_spread":0.31347415451974986,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023234348","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9972089,0.0001340709,0.000017317983,0.00023054297,0.0000074811337,0.000008485129,0.00016420273,0.0000014154512,0.0022276468],"genre_scores_gemma":[0.9977586,0.0001333227,0.000048264,0.000047864618,0.0000031990533,0.000006893178,0.00010632718,0.0000022025913,0.0018931665],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99943703,0.00007456253,0.000012454519,0.0000482308,0.000074306554,0.00035327402],"domain_scores_gemma":[0.99911696,0.000048148908,0.00008205831,0.000021310678,0.0002878756,0.00044363347],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038283516,0.00020771587,0.0003242188,0.0006881892,0.005655504,0.0020561754,0.0010194159,0.0005138563,0.003130656],"category_scores_gemma":[0.0010606742,0.00022335908,0.00026131485,0.0012135376,0.002903387,0.0005065903,0.0030946468,0.00094164425,0.00022488803],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00043950358,0.00018766374,0.88631725,0.00010246982,0.000053700867,0.0016094828,0.08881473,0.00038294538,0.0018758493,0.0016188638,0.0022939404,0.016303595],"study_design_scores_gemma":[0.000006603111,0.00003887124,0.9035379,0.000064408465,0.000013007116,0.00011867268,0.09318947,0.00007911829,0.00012703497,0.000093322604,0.0027178742,0.000013671752],"about_ca_topic_score_codex":0.985881,"about_ca_topic_score_gemma":0.9972138,"teacher_disagreement_score":0.019526262,"about_ca_system_score_codex":0.019526262,"about_ca_system_score_gemma":0.025091883,"threshold_uncertainty_score":0.14167356},"labels":[],"label_agreement":null},{"id":"W3023358164","doi":"","title":"Seasonal aluminum regimes and drivers thereof discovered in the acidified freshwaters of Nova Scotia, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Mine drainage and remediation techniques","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nova scotia; Nova (rocket); Geography; Environmental science; Oceanography; Archaeology; Geology; Engineering; Aeronautics","score_opus":0.005333693029838012,"score_gpt":0.19506168452199896,"score_spread":0.18972799149216094,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023358164","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9964001,0.00015289654,0.000053525546,0.0001206173,0.000005714473,0.000011406249,0.0013802465,0.000006752393,0.001868682],"genre_scores_gemma":[0.99797195,0.00013283094,0.00006717942,0.000042935822,0.0000022831166,0.0000049154078,0.00039096232,0.0000029905975,0.0013840048],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985194,0.000008486808,0.000008763919,0.000041103038,0.000027362592,0.00006216385],"domain_scores_gemma":[0.99939024,0.000031417167,0.00012531286,0.000016324959,0.00031761278,0.00011909343],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013491491,0.00015568578,0.00024022085,0.0010172141,0.0013572223,0.0009751669,0.00044253984,0.0002408607,0.001335689],"category_scores_gemma":[0.0004917322,0.00017914237,0.00019718333,0.0017818004,0.00066354935,0.00022876915,0.00060610403,0.00025221295,0.00015816014],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012428508,0.000013945371,0.9891812,0.00003375261,0.0000427413,0.00016607852,0.0016344253,0.00017283157,0.0039256685,0.00015511061,0.0006582467,0.0038915284],"study_design_scores_gemma":[9.987491e-7,0.0000040035816,0.99819607,0.0000053101694,0.0000036604563,0.000014744958,0.0011818629,0.00005199673,0.000056899953,0.00000768999,0.0004740797,0.000002817304],"about_ca_topic_score_codex":0.98593396,"about_ca_topic_score_gemma":0.9951047,"teacher_disagreement_score":0.0140660405,"about_ca_system_score_codex":0.009373222,"about_ca_system_score_gemma":0.0074104387,"threshold_uncertainty_score":0.06800777},"labels":[],"label_agreement":null},{"id":"W3023362244","doi":"","title":"The Science Behind Moravian Meteorological Observations for Late-18th Century Labrador","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Indigenous Studies and Ecology","field":"Health Professions","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Physical geography; Meteorology; Geography; Geology","score_opus":0.13431743188940914,"score_gpt":0.42084784438526135,"score_spread":0.2865304124958522,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023362244","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.87482977,0.026086524,0.0017085726,0.05716711,0.0007827356,0.000025578242,0.0013138598,0.000056962843,0.038028818],"genre_scores_gemma":[0.9942636,0.0025266109,0.00041585145,0.00084411376,0.00020622018,0.0000048843353,0.00010545995,0.000015534055,0.001617736],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993231,0.00015337548,0.00003973925,0.00013787225,0.00008060136,0.0002651772],"domain_scores_gemma":[0.9973598,0.0007809258,0.0004471203,0.00023625146,0.0010137442,0.00016219186],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002412267,0.00022021485,0.00024749278,0.0011794588,0.0023862736,0.002759451,0.00062430487,0.00065824686,0.002246871],"category_scores_gemma":[0.0069816043,0.00020095933,0.00015880223,0.0013030376,0.0039675846,0.0017117441,0.0019361675,0.0017745831,0.00021303416],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003812587,0.00007034528,0.53114605,0.00078101584,0.00023417184,0.0011602927,0.15551008,0.0014201526,0.0058300993,0.12469793,0.01824038,0.16052823],"study_design_scores_gemma":[0.000016772889,0.0000562154,0.7178344,0.0013940267,0.00008671981,0.00017174274,0.08817639,0.0011525524,0.001776634,0.021381548,0.16784859,0.00010437447],"about_ca_topic_score_codex":0.629495,"about_ca_topic_score_gemma":0.7429072,"teacher_disagreement_score":0.37050498,"about_ca_system_score_codex":0.0077531487,"about_ca_system_score_gemma":0.007315517,"threshold_uncertainty_score":0.7453739},"labels":[],"label_agreement":null},{"id":"W3023390087","doi":"","title":"Evolution of the Arctic Ocean salinity, 2007-2008: Contrast between the Canadian and the Eurasian basins.","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Arctic; Climatology; The arctic; Contrast (vision); Salinity; Geology; Geography; Environmental science","score_opus":0.013573648931613544,"score_gpt":0.1889974477962974,"score_spread":0.17542379886468384,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023390087","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9924597,0.0007077599,0.00013422675,0.0009383957,0.000030306313,0.000005673232,0.0022564172,0.000019281162,0.0034481047],"genre_scores_gemma":[0.99756765,0.00024927952,0.0001501705,0.000079446436,0.0000048784364,0.0000026802334,0.0012457364,0.000008621605,0.0006915772],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99977213,0.000019029807,0.000010592188,0.000059209564,0.00005790199,0.00008109459],"domain_scores_gemma":[0.9988494,0.000064417334,0.00013089905,0.000028129374,0.0007731596,0.00015404729],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004841263,0.00022379501,0.00025561667,0.0009912509,0.0011959096,0.00097125274,0.0005973692,0.0004722351,0.0011275413],"category_scores_gemma":[0.0014811426,0.00021414916,0.0003900883,0.0023494465,0.0005880483,0.000419095,0.0008177396,0.0005150135,0.00016747379],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00022541104,0.00003005188,0.9805124,0.00003601716,0.00021056335,0.00009060994,0.001118484,0.00094648876,0.0024486147,0.0006408665,0.0033180646,0.010422459],"study_design_scores_gemma":[0.0000020378325,0.000004612614,0.9978154,0.000008822176,0.00001822547,0.000016221233,0.00049129804,0.00025747507,0.00008895528,0.000018419705,0.0012733723,0.0000052102537],"about_ca_topic_score_codex":0.97941303,"about_ca_topic_score_gemma":0.98872757,"teacher_disagreement_score":0.020586967,"about_ca_system_score_codex":0.010265555,"about_ca_system_score_gemma":0.015162673,"threshold_uncertainty_score":0.0744822},"labels":[],"label_agreement":null},{"id":"W3023392969","doi":"","title":"Cloud identification in the Canadian High Arctic using the UV-visible colour index","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Remote sensing; Index (typography); Cloud computing; Arctic; Environmental science; Geography; Meteorology; Computer science; Geology; Oceanography; World Wide Web","score_opus":0.015765105453876615,"score_gpt":0.21528424619281353,"score_spread":0.19951914073893692,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023392969","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9929939,0.0006750335,0.00026665538,0.00017211835,0.000026841952,0.000013354986,0.0024595493,0.000029942217,0.0033626696],"genre_scores_gemma":[0.9970686,0.00023649217,0.0004014482,0.000038727867,0.0000058276714,0.0000032043743,0.00095984846,0.000008585383,0.0012773098],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99959236,0.000029561756,0.000017150984,0.00006913917,0.00011045499,0.00018131374],"domain_scores_gemma":[0.9990225,0.00006520133,0.00008413172,0.000022443932,0.00066446274,0.00014136304],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005636721,0.00034504425,0.0002682303,0.0017471587,0.002658091,0.001576531,0.0006406546,0.00045442508,0.0013073885],"category_scores_gemma":[0.0011268449,0.00019768595,0.00037088,0.0023240633,0.00047652837,0.00039599248,0.0005889786,0.00032411556,0.00022707497],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00056457694,0.00007563778,0.96255755,0.00009412358,0.0001500051,0.00023845934,0.00074226724,0.0024223984,0.0039333906,0.00044534018,0.0037575488,0.025018608],"study_design_scores_gemma":[0.00001074334,0.000009401837,0.9930307,0.000031502917,0.00004402043,0.000045031742,0.001222503,0.0032553342,0.00069981057,0.000055210465,0.0015796582,0.000016170123],"about_ca_topic_score_codex":0.9956756,"about_ca_topic_score_gemma":0.9980108,"teacher_disagreement_score":0.012957238,"about_ca_system_score_codex":0.012957238,"about_ca_system_score_gemma":0.015226706,"threshold_uncertainty_score":0.09401178},"labels":[],"label_agreement":null},{"id":"W3023521593","doi":"","title":"A polluted site revisited a quarter century after the largest oil spill in human history in the Arabian Gulf","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Oil Spill Detection and Mitigation","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Quarter (Canadian coin); Oceanography; Oil spill; Geography; Fishery; Environmental science; Geology; Archaeology; Environmental protection; Biology","score_opus":0.004880001912032247,"score_gpt":0.19102081456130568,"score_spread":0.18614081264927343,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023521593","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9403584,0.009325769,0.00042763184,0.029266538,0.0006867095,0.000008917548,0.00021785972,0.0000116242545,0.019696582],"genre_scores_gemma":[0.98932695,0.0038172696,0.00019613626,0.0015036296,0.000121266195,0.0000034065936,0.000059308084,0.000013471398,0.004958598],"study_design_codex":"qualitative","study_design_gemma":"observational","domain_scores_codex":[0.99944574,0.00019259416,0.000024348748,0.000091453476,0.00007599756,0.0001698633],"domain_scores_gemma":[0.99885285,0.0001960237,0.00025846765,0.00007088101,0.00042208278,0.00019963883],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010527817,0.00030687582,0.00031253,0.001238936,0.008606779,0.0032722827,0.0007415112,0.0030021628,0.004689724],"category_scores_gemma":[0.0023703848,0.00031631597,0.0002048666,0.001863533,0.007148983,0.0025321518,0.0028961198,0.002964404,0.00040802133],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008749124,0.00013603977,0.19989659,0.0006632089,0.000168549,0.021063538,0.53376985,0.0010474097,0.0043843267,0.08484035,0.021592831,0.1315625],"study_design_scores_gemma":[0.000020039595,0.00016338356,0.16377285,0.0010742624,0.000099572135,0.00524656,0.5014821,0.0003771165,0.0018795249,0.007999398,0.31777638,0.000108700515],"about_ca_topic_score_codex":0.26356292,"about_ca_topic_score_gemma":0.5044225,"teacher_disagreement_score":0.26356292,"about_ca_system_score_codex":0.0076008355,"about_ca_system_score_gemma":0.006184203,"threshold_uncertainty_score":0.5240576},"labels":[],"label_agreement":null},{"id":"W3023558137","doi":"","title":"Alberta Wildfire 2016: Likely contribution from the anomalous large-scale planetary-wave circulation due to quasi-resonant amplification","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Meteorological Phenomena and Simulations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Scale (ratio); Circulation (fluid dynamics); Climatology; Environmental science; Meteorology; Atmospheric sciences; Geology; Remote sensing; Geography; Physics; Cartography; Mechanics","score_opus":0.01996286066416997,"score_gpt":0.21871936043906798,"score_spread":0.198756499774898,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3023558137","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98519325,0.00010463788,0.0018475287,0.0011371716,0.00024216581,0.000020421938,0.0012208165,0.00034054846,0.00989347],"genre_scores_gemma":[0.99773115,0.000038713482,0.00029636256,0.00006700365,0.000023075952,0.00000548763,0.00048868154,0.000040682346,0.0013089117],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999843,0.000018441197,0.000007302574,0.00003148084,0.000029977324,0.00006980434],"domain_scores_gemma":[0.999683,0.000059849404,0.000026084253,0.000024546807,0.000087164284,0.00011943056],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000396982,0.0004957545,0.00043074574,0.00026683178,0.0011284847,0.001233422,0.0010121973,0.0013448335,0.0052089677],"category_scores_gemma":[0.0013868132,0.00045971677,0.00065413467,0.000345039,0.00064786733,0.00090024975,0.0006484863,0.0016609059,0.00026084165],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00079830945,0.000360042,0.121415965,0.00010270624,0.000307898,0.00082425907,0.00024243136,0.8386839,0.008277571,0.00932125,0.011749814,0.007915793],"study_design_scores_gemma":[0.00016525203,0.00003086933,0.04955492,0.0000146589655,0.000049328202,0.000034750243,0.000110977446,0.94654316,0.00093073316,0.0011452745,0.0013738453,0.000046277903],"about_ca_topic_score_codex":0.5378699,"about_ca_topic_score_gemma":0.4855956,"teacher_disagreement_score":0.46213013,"about_ca_system_score_codex":0.0034489657,"about_ca_system_score_gemma":0.00426507,"threshold_uncertainty_score":0.9297034},"labels":[],"label_agreement":null},{"id":"W3024020705","doi":"","title":"Development of the GIC forecasting for Canadian Power grid","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Energy Load and Power Forecasting","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Power grid; Power (physics); Computer science","score_opus":0.030897660095361677,"score_gpt":0.21425721947224177,"score_spread":0.1833595593768801,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024020705","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.1551852,0.0021851806,0.3711539,0.014393496,0.002121619,0.0022825457,0.09746237,0.030061869,0.3251539],"genre_scores_gemma":[0.4853149,0.0017268057,0.4237292,0.0006577732,0.00022175141,0.00042731763,0.045558035,0.0014162683,0.040947836],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.998776,0.00011177462,0.000056572604,0.000156037,0.0007263987,0.00017325355],"domain_scores_gemma":[0.9937091,0.00016180206,0.000111346904,0.0003160525,0.0054126605,0.00028910293],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0027813907,0.0009949773,0.0005030293,0.0033619518,0.0027368744,0.0030832612,0.001955088,0.0005841848,0.0067156088],"category_scores_gemma":[0.007262681,0.00041616627,0.0006839992,0.0040674442,0.00036759482,0.0019024188,0.0009983815,0.0013853888,0.0021634127],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015751018,0.00020246032,0.08013157,0.00021644498,0.00012400039,0.00023121055,0.00074880646,0.19195725,0.005087877,0.037587445,0.20936896,0.47418648],"study_design_scores_gemma":[0.00005358675,0.00005708078,0.05008815,0.00025321427,0.000103148224,0.00007421154,0.0010397191,0.66040194,0.0069552525,0.0054390123,0.27537525,0.0001594363],"about_ca_topic_score_codex":0.9740372,"about_ca_topic_score_gemma":0.9703991,"teacher_disagreement_score":0.02596283,"about_ca_system_score_codex":0.020237245,"about_ca_system_score_gemma":0.056338422,"threshold_uncertainty_score":0.14683217},"labels":[],"label_agreement":null},{"id":"W3024199799","doi":"","title":"Modeling Complex Water Table Effects on Net CO2 Exchange of Western Canadian Peatlands","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Water table; Table (database); Net (polyhedron); Environmental science; Hydrology (agriculture); Geology; Geography; Groundwater; Computer science; Mathematics; Database; Archaeology","score_opus":0.013209725338137798,"score_gpt":0.2059508665655822,"score_spread":0.1927411412274444,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024199799","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.996911,0.000059154696,0.00072083186,0.00009819757,0.000007693174,0.000008366589,0.00025783878,0.00004407678,0.0018928872],"genre_scores_gemma":[0.99862516,0.000037158745,0.0004313628,0.000015344582,0.0000023088005,0.000006447856,0.00010300025,0.000013818116,0.00076551794],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99981385,0.000021493313,0.000007815642,0.00005106972,0.000018538434,0.00008712392],"domain_scores_gemma":[0.9993604,0.00029542594,0.000056247794,0.000032866516,0.00012497032,0.00013011944],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040008995,0.0006336298,0.0005634656,0.000369633,0.0013359986,0.0014952288,0.001622315,0.001150991,0.0020021],"category_scores_gemma":[0.001557728,0.00055671204,0.0006336678,0.00057386054,0.0012081704,0.0007884293,0.00052294706,0.0006926034,0.000101900674],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000073613635,0.00004656069,0.009094693,0.000018000545,0.00003009836,0.00006580999,0.00006849091,0.98738354,0.0010525166,0.00078508444,0.00023073242,0.0011508468],"study_design_scores_gemma":[0.000031581607,0.000012025452,0.007094121,0.0000036423476,0.000018419385,0.0000063996504,0.000090899135,0.99202347,0.0002666639,0.00021109865,0.00022375617,0.000017929633],"about_ca_topic_score_codex":0.95887667,"about_ca_topic_score_gemma":0.9461429,"teacher_disagreement_score":0.04112333,"about_ca_system_score_codex":0.010763806,"about_ca_system_score_gemma":0.008054038,"threshold_uncertainty_score":0.08273095},"labels":[],"label_agreement":null},{"id":"W3024274697","doi":"","title":"Numerical modeling of the groundwater regional flow system to assess the exploitation sustainability of the transboundary Milk River Aquifer (Alberta, Canada - Montana, USA)","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Groundwater flow and contamination studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Aquifer; Groundwater; Sustainability; Groundwater flow; Hydrology (agriculture); Water resource management; Environmental science; Streamflow; Geology; Geography; Drainage basin; Ecology; Geotechnical engineering","score_opus":0.014251932929365259,"score_gpt":0.21090695505209636,"score_spread":0.19665502212273112,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024274697","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95850545,0.0003151173,0.018386079,0.000851858,0.00005906171,0.00007263924,0.0011498801,0.00029167082,0.02036828],"genre_scores_gemma":[0.9905489,0.000136721,0.0051724147,0.000027655235,0.000007255214,0.000031899872,0.00032931904,0.000021441823,0.0037243941],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99985325,0.000044847908,0.0000064995784,0.000022861503,0.00003346368,0.00003901793],"domain_scores_gemma":[0.99971384,0.000121246354,0.00002802586,0.000012728734,0.00008436226,0.000039768973],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00036718487,0.00039650712,0.00035283953,0.00059224776,0.0010851817,0.0011833502,0.0008929733,0.00085029425,0.0015267186],"category_scores_gemma":[0.0010111829,0.00025571222,0.0004297247,0.00084153545,0.0008002513,0.00033583306,0.00053141493,0.00045913935,0.00009473703],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000022391561,0.000028503251,0.0047621406,0.000007032653,0.000012712987,0.000025566747,0.000031594842,0.99105084,0.00029355823,0.0014577522,0.00041602965,0.001891861],"study_design_scores_gemma":[0.0000074717796,0.0000066677185,0.0013511522,0.0000021864557,0.000004261605,0.0000027188703,0.000045701934,0.9980519,0.00009046974,0.00018304726,0.00025073386,0.000003784676],"about_ca_topic_score_codex":0.86643696,"about_ca_topic_score_gemma":0.8061488,"teacher_disagreement_score":0.13356304,"about_ca_system_score_codex":0.006195623,"about_ca_system_score_gemma":0.0079704095,"threshold_uncertainty_score":0.26869923},"labels":[],"label_agreement":null},{"id":"W3024400668","doi":"","title":"First results of TROPOMI validation using Environment and Climate Change Canada ground-based remote sensing network","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Remote sensing; Climate change; Environmental science; Meteorology; Computer science; Geography; Geology","score_opus":0.01526597427994455,"score_gpt":0.20015837026914593,"score_spread":0.18489239598920137,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024400668","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9441286,0.00076787005,0.009597703,0.00043441294,0.00020673564,0.00022318115,0.0321879,0.002576701,0.009876902],"genre_scores_gemma":[0.9176101,0.00032616314,0.024994832,0.00028607692,0.000029543102,0.0001605804,0.05025602,0.0006341358,0.005702603],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99883944,0.0001825118,0.000049549504,0.00023070685,0.00047760052,0.00022027937],"domain_scores_gemma":[0.9972817,0.00040508367,0.000092647446,0.0003639349,0.0017228677,0.0001337901],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0029205354,0.0011973914,0.0006048662,0.0007811148,0.001641576,0.0012344527,0.0014031563,0.0008443,0.0015919989],"category_scores_gemma":[0.0043451805,0.00034134285,0.0008502614,0.0011266603,0.0007053091,0.0009494957,0.0007787284,0.00066759594,0.00072958187],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0026791268,0.0016615051,0.24741793,0.00058560434,0.0012916162,0.0006361663,0.0008873656,0.4775277,0.07071795,0.002268189,0.07137947,0.12294736],"study_design_scores_gemma":[0.000540299,0.0002269438,0.37135628,0.00012810457,0.0003115876,0.0001077854,0.00071287033,0.5691431,0.03905043,0.000596113,0.017665396,0.00016114733],"about_ca_topic_score_codex":0.7747565,"about_ca_topic_score_gemma":0.8603818,"teacher_disagreement_score":0.22524351,"about_ca_system_score_codex":0.0036394452,"about_ca_system_score_gemma":0.0066909683,"threshold_uncertainty_score":0.45314002},"labels":[],"label_agreement":null},{"id":"W3024527591","doi":"","title":"A smoothing effect of the topographical correction on gravity disturbances in rugged mountains and flat regions - Case study for the Canadian Rocky Mountains","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geodesy; Geology; Smoothing; Geography; Physical geography; Mathematics; Statistics","score_opus":0.014318819599298552,"score_gpt":0.24323282333109322,"score_spread":0.22891400373179466,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024527591","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99704856,0.0001127695,0.0013310629,0.000030113666,0.000005112563,0.000015802578,0.00013482552,0.00005168048,0.0012701454],"genre_scores_gemma":[0.9985453,0.000034578436,0.0010337322,0.000004455218,0.000001504549,0.0000022591016,0.000059419675,0.000009233715,0.00030962893],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99964833,0.00008233954,0.000017301476,0.00005214936,0.00007158423,0.00012828321],"domain_scores_gemma":[0.9983028,0.0009012086,0.00016247672,0.00018763106,0.00035074563,0.00009517443],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00084742485,0.00029054092,0.00039788653,0.0005651332,0.0007212077,0.00084427185,0.00059536786,0.0004567108,0.0010787618],"category_scores_gemma":[0.004565397,0.00014555774,0.00046021308,0.0014445571,0.00071573193,0.0002649884,0.0003238132,0.0002880336,0.00008023424],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014474087,0.000302727,0.28230622,0.00016125829,0.0003254262,0.0027042022,0.0008817861,0.6049575,0.0127801895,0.0026206789,0.0012239108,0.09028864],"study_design_scores_gemma":[0.0000809109,0.00018190619,0.72064894,0.000030280133,0.00023748082,0.00023041635,0.0009419397,0.27241048,0.0032402566,0.00044694796,0.001491108,0.00005931503],"about_ca_topic_score_codex":0.66499597,"about_ca_topic_score_gemma":0.6989507,"teacher_disagreement_score":0.33500403,"about_ca_system_score_codex":0.0016055928,"about_ca_system_score_gemma":0.002436321,"threshold_uncertainty_score":0.6739539},"labels":[],"label_agreement":null},{"id":"W3024930820","doi":"","title":"The phase shift of the Labrador Current on interannual-to-decadal scales","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Current (fluid); Climatology; Oceanography; Phase (matter); Geology; Environmental science; Physics","score_opus":0.01848322459287952,"score_gpt":0.2485835840157248,"score_spread":0.2301003594228453,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3024930820","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.977792,0.0006835426,0.0023254491,0.00065737404,0.00013052468,0.00001250657,0.001764951,0.00011424079,0.016519401],"genre_scores_gemma":[0.9974437,0.00017369514,0.00033733778,0.00007852256,0.000034457313,0.0000054606185,0.0006038932,0.000025203884,0.0012976745],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993515,0.000009869963,0.000005588343,0.000023440278,0.000011447316,0.000014528135],"domain_scores_gemma":[0.9995741,0.00007403929,0.000103051825,0.00003460611,0.00017049261,0.000043583193],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025713976,0.000098599645,0.00013939888,0.00074078765,0.00022255171,0.0007720469,0.00018156087,0.00025640434,0.0032816664],"category_scores_gemma":[0.0017032323,0.000105024184,0.00014347081,0.00078115467,0.00023512685,0.00053684384,0.00037676736,0.00028910273,0.00043870186],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00069605914,0.000106573294,0.78735715,0.00023796628,0.00030591633,0.00012907649,0.0013206482,0.01291811,0.04560464,0.009641271,0.0085270265,0.1331556],"study_design_scores_gemma":[0.000016281365,0.00005421757,0.9796194,0.000026380554,0.0000412713,0.00006510975,0.00034568316,0.005073522,0.0015528189,0.0010942067,0.012091279,0.000019849589],"about_ca_topic_score_codex":0.010334959,"about_ca_topic_score_gemma":0.015163641,"teacher_disagreement_score":0.98966503,"about_ca_system_score_codex":0.0004733496,"about_ca_system_score_gemma":0.00030285007,"threshold_uncertainty_score":0.020549595},"labels":[],"label_agreement":null},{"id":"W3025801512","doi":"","title":"Influence of terrain and highway construction on thermokarst distribution, North Slave region, NWT, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Thermokarst; Terrain; Physical geography; Geology; Distribution (mathematics); Sinkhole; Hydrology (agriculture); Geography; Geomorphology; Environmental science; Permafrost; Cartography; Oceanography; Paleontology; Geotechnical engineering; Karst","score_opus":0.017516105958833125,"score_gpt":0.20575738268198607,"score_spread":0.18824127672315294,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3025801512","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9943575,0.00027079953,0.000070691814,0.00018160642,0.0000065498593,0.000011293379,0.0013682791,0.000008582803,0.0037247902],"genre_scores_gemma":[0.9963413,0.00022634368,0.00011090264,0.000021429778,0.0000024333365,0.000004841848,0.00057748024,0.000006136362,0.0027091098],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995989,0.000040977076,0.000020951687,0.000053931097,0.00008604121,0.00019913909],"domain_scores_gemma":[0.99886084,0.00012545282,0.00014422617,0.000037171165,0.00053133315,0.00030100823],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030400694,0.0001609006,0.000260417,0.0012283992,0.0016272981,0.001218633,0.0007545099,0.00023121087,0.0030523646],"category_scores_gemma":[0.0013250831,0.0001684766,0.0004785736,0.0022989637,0.0011490138,0.00032038472,0.00083245063,0.00034126575,0.00023572844],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000092216964,0.000022610704,0.9881859,0.00003152503,0.00006614502,0.00018212927,0.0014940053,0.0005964091,0.00073021074,0.0006918615,0.0009223302,0.0069846613],"study_design_scores_gemma":[0.0000032857456,0.0000066440884,0.99567455,0.000018885798,0.00001670029,0.000038373306,0.0023720765,0.00035314012,0.0000785333,0.00003933207,0.0013926137,0.000005859246],"about_ca_topic_score_codex":0.99456656,"about_ca_topic_score_gemma":0.99860007,"teacher_disagreement_score":0.015018613,"about_ca_system_score_codex":0.015018613,"about_ca_system_score_gemma":0.022063453,"threshold_uncertainty_score":0.10896814},"labels":[],"label_agreement":null},{"id":"W3025813236","doi":"","title":"Reclamation of peat-based wetlands affected by Alberta, Canada's oil sands development","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Peat; Oil sands; Land reclamation; Wetland; Environmental science; Hydrology (agriculture); Geology; Environmental protection; Geography; Archaeology; Asphalt; Ecology; Geotechnical engineering","score_opus":0.0034420461158255343,"score_gpt":0.17178999877793233,"score_spread":0.16834795266210678,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3025813236","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99615896,0.000069790374,0.00008007742,0.000054455475,0.000004318261,0.00002107767,0.00012475639,0.000016730306,0.003469776],"genre_scores_gemma":[0.99596334,0.000105849795,0.00029736746,0.00002693375,0.0000015441776,0.0000072240964,0.00015902307,0.000002956056,0.0034357945],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972945,0.000016030577,0.0000075746557,0.000024346557,0.000078315265,0.00014418195],"domain_scores_gemma":[0.99977916,0.000013604509,0.000029335002,0.000009332478,0.000112149464,0.00005648832],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017009348,0.00021318921,0.00017559515,0.00060104026,0.002229291,0.0010243884,0.00057904574,0.0002946106,0.0009590504],"category_scores_gemma":[0.00035176307,0.000105650375,0.00017920267,0.0007227709,0.0006433869,0.00017226052,0.00057498616,0.0002450695,0.00009835352],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023799448,0.00069174985,0.75890416,0.0003451775,0.00015133426,0.0051321574,0.009595981,0.012563089,0.058877774,0.0020580445,0.00629375,0.1430068],"study_design_scores_gemma":[0.00002084013,0.00013211436,0.97444874,0.000025942889,0.00004229154,0.00016674514,0.009942826,0.0028507137,0.0042311084,0.000124087,0.007997183,0.000017511551],"about_ca_topic_score_codex":0.95606345,"about_ca_topic_score_gemma":0.9898,"teacher_disagreement_score":0.04393655,"about_ca_system_score_codex":0.011528645,"about_ca_system_score_gemma":0.01555315,"threshold_uncertainty_score":0.08839053},"labels":[],"label_agreement":null},{"id":"W3026112153","doi":"","title":"The kinematic relationship between thrusting, reverse faulting and transpression: An example from the Sudbury Basin, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydraulic Fracturing and Reservoir Analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Transpression; Geology; Seismology; Kinematics; Structural basin; Fault (geology); Paleontology; Sinistral and dextral","score_opus":0.03388768477547512,"score_gpt":0.23236279983526512,"score_spread":0.19847511505978999,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3026112153","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.981837,0.00035683205,0.0008162995,0.00030559767,0.000006353931,0.000029003255,0.00076075766,0.00002983968,0.01585844],"genre_scores_gemma":[0.99592483,0.00034305328,0.00092822325,0.000019331346,0.0000018021383,0.0000041128988,0.00022229554,0.000009719457,0.0025466378],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997862,0.000020666763,0.000009502917,0.000027079865,0.000080517,0.00007598583],"domain_scores_gemma":[0.9995858,0.000100278994,0.000035147063,0.000011944474,0.00022715374,0.000039707793],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00016477217,0.0003227696,0.00040311823,0.0015347572,0.0030246568,0.0018702558,0.00066412694,0.0005086472,0.0023567697],"category_scores_gemma":[0.0011746247,0.00024236036,0.0002757007,0.005582376,0.0015431283,0.00036180075,0.0006008911,0.00054134143,0.0001229036],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003539812,0.00018294156,0.76311016,0.0002834473,0.00023554721,0.0074669626,0.008729568,0.084544115,0.006910739,0.025626784,0.0049340995,0.097621694],"study_design_scores_gemma":[0.000043363463,0.000046784528,0.9247195,0.00011822164,0.00011317932,0.0005188736,0.012611897,0.045279678,0.0013157993,0.0025479936,0.012576843,0.000107839616],"about_ca_topic_score_codex":0.99535674,"about_ca_topic_score_gemma":0.9983917,"teacher_disagreement_score":0.01564752,"about_ca_system_score_codex":0.01564752,"about_ca_system_score_gemma":0.017421389,"threshold_uncertainty_score":0.11353123},"labels":[],"label_agreement":null},{"id":"W3026198555","doi":"","title":"Millenial Scale Oscillations in Paleoceanographic Records From Atlantic Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Scale (ratio); Geology; Climatology; Geography; Cartography","score_opus":0.012728251279076851,"score_gpt":0.209683294071966,"score_spread":0.19695504279288917,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3026198555","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9942948,0.00025056922,0.00012692697,0.00015249914,0.000009268264,0.0000079170495,0.0019332286,0.000014365706,0.0032103693],"genre_scores_gemma":[0.99609816,0.00018429238,0.00021076457,0.00005522948,0.0000036708598,0.00000560641,0.0011529368,0.000008869619,0.0022804325],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99987626,0.0000059326712,0.000009977019,0.000029354953,0.000033857497,0.000044616903],"domain_scores_gemma":[0.99943966,0.00006710123,0.00005675967,0.000025265499,0.00031831593,0.00009289292],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020953218,0.00010244784,0.00015248323,0.001303878,0.0015745304,0.0013712993,0.0003925964,0.00023589842,0.0024712826],"category_scores_gemma":[0.0011728157,0.00013513715,0.00012534493,0.002465092,0.00040881638,0.00031060193,0.000675791,0.00035459807,0.00026108924],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018435005,0.00004425477,0.9358629,0.00009156999,0.00013799638,0.00026766764,0.0062309983,0.00094141945,0.008009853,0.0008606436,0.0031394085,0.044228893],"study_design_scores_gemma":[0.000002811005,0.0000025905852,0.9960175,0.000010841003,0.000010602524,0.000021347007,0.0008664399,0.0003019357,0.0001579528,0.00002615939,0.0025758068,0.0000060266234],"about_ca_topic_score_codex":0.9788922,"about_ca_topic_score_gemma":0.9943808,"teacher_disagreement_score":0.021107793,"about_ca_system_score_codex":0.006381568,"about_ca_system_score_gemma":0.0067005935,"threshold_uncertainty_score":0.046301782},"labels":[],"label_agreement":null},{"id":"W3026467153","doi":"","title":"An improved implementation of the VIC (Variable Infiltration Capacity) model for Canadian basins","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Infiltration (HVAC); Variable (mathematics); Environmental science; Hydrology (agriculture); Geology; Geography; Meteorology; Mathematics; Geotechnical engineering","score_opus":0.01588269323527224,"score_gpt":0.24318314813989245,"score_spread":0.2273004549046202,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3026467153","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.72519326,0.00039174137,0.18388323,0.00197158,0.0005116722,0.00035448864,0.01675404,0.024490843,0.046449058],"genre_scores_gemma":[0.9182808,0.00013922268,0.069918595,0.00014648717,0.000018683171,0.000079768055,0.0040975353,0.0010441183,0.0062747677],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99965346,0.00005968451,0.000018723444,0.00006319735,0.000115172465,0.00008988085],"domain_scores_gemma":[0.9991585,0.00011097149,0.000030139166,0.00009578464,0.0005210254,0.00008362775],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00080891873,0.0006192736,0.0005645709,0.00036548582,0.00083521917,0.0010732915,0.0025167095,0.0005976244,0.0050959564],"category_scores_gemma":[0.0022382608,0.00039002398,0.00047996358,0.00071938557,0.0002884686,0.0008981716,0.00046698473,0.00083743304,0.0005140405],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000104712104,0.00010519404,0.008966791,0.00003768173,0.000035610872,0.000062611245,0.00007351933,0.9518921,0.0020503737,0.0037208572,0.009146411,0.023804246],"study_design_scores_gemma":[0.000034119745,0.000012727675,0.001426441,0.0000055787937,0.0000137732695,0.0000069669177,0.000023639892,0.99390054,0.0008403383,0.0003116506,0.0034045957,0.000019568071],"about_ca_topic_score_codex":0.8675238,"about_ca_topic_score_gemma":0.8702534,"teacher_disagreement_score":0.13247621,"about_ca_system_score_codex":0.0055384124,"about_ca_system_score_gemma":0.012157227,"threshold_uncertainty_score":0.26651275},"labels":[],"label_agreement":null},{"id":"W3026603499","doi":"","title":"Reconstructing Sea Ice Cover in Lancaster Sound, Canadian Arctic Archipelago, using the long-lived coralline alga Clathromorphum compactum","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and coastal plant biology","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Archipelago; Sound (geography); Oceanography; Arctic; Sea ice; Cover (algebra); Geology; Arctic ice pack; The arctic; Geography; Engineering","score_opus":0.04415906718725186,"score_gpt":0.24167060635859391,"score_spread":0.19751153917134207,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3026603499","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9977569,0.00019290052,0.00011600203,0.00003960121,0.0000042549373,0.0000025228476,0.0011867963,0.000021973268,0.000678982],"genre_scores_gemma":[0.9979851,0.00014180412,0.00035036527,0.000011678662,0.0000018383868,0.0000022142297,0.0012194099,0.000008070879,0.0002795077],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999113,0.0000048139946,0.0000053761996,0.000025147821,0.0000196726,0.00003370051],"domain_scores_gemma":[0.99975735,0.000023793713,0.00003462034,0.000015547865,0.00010467887,0.00006412507],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022994938,0.00033869906,0.00020394767,0.0022611076,0.0013100947,0.0010647785,0.000536155,0.00041705588,0.00072156795],"category_scores_gemma":[0.0006046503,0.00026211783,0.0002824,0.0019801124,0.00034327415,0.0003179056,0.00046397635,0.00024464485,0.00018559788],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00019910933,0.00005395899,0.96100634,0.00005820143,0.00027227635,0.00021389201,0.0007069272,0.010623946,0.007919555,0.00019746755,0.0011780541,0.017570343],"study_design_scores_gemma":[0.0000052805217,0.0000044537665,0.9912436,0.000016518186,0.000040223786,0.000031989628,0.00088912767,0.0066154683,0.00025616863,0.00003544662,0.00085152866,0.000010305074],"about_ca_topic_score_codex":0.94683856,"about_ca_topic_score_gemma":0.97846806,"teacher_disagreement_score":0.053161442,"about_ca_system_score_codex":0.0033784918,"about_ca_system_score_gemma":0.0039754673,"threshold_uncertainty_score":0.10694897},"labels":[],"label_agreement":null},{"id":"W3026836497","doi":"","title":"The Canadian Spatial Reference System Precise Point Positioning Service: Today and Tomorrow","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysics and Gravity Measurements","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Computer science; Precise Point Positioning; Service (business); Global Positioning System; Telecommunications; Business; GNSS applications","score_opus":0.011951223767254831,"score_gpt":0.18379670604813864,"score_spread":0.1718454822808838,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3026836497","genre_codex":"other","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.055188246,0.010150984,0.014582914,0.03321044,0.004548891,0.000616955,0.42299956,0.0040041273,0.4546979],"genre_scores_gemma":[0.2731672,0.012382923,0.04285738,0.005557625,0.00045543694,0.00036070743,0.21587127,0.001363944,0.44798353],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9971976,0.00010861143,0.00008446301,0.00022704108,0.001789946,0.00059229153],"domain_scores_gemma":[0.98873854,0.000106785425,0.00022434807,0.0002590397,0.009898857,0.0007725277],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0019630895,0.00091663457,0.0005621291,0.0036951238,0.004873172,0.0035487453,0.0018306656,0.00071357057,0.02784343],"category_scores_gemma":[0.0048431205,0.00045511674,0.0003969012,0.011083407,0.00093210523,0.0017687558,0.0015742772,0.0015992381,0.007847078],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":true,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016427021,0.000042286283,0.041176092,0.00020456163,0.000037245165,0.00008840391,0.00058719894,0.0006368604,0.0009800658,0.011180888,0.79654837,0.14835371],"study_design_scores_gemma":[0.00001933234,0.000018222136,0.107869744,0.00014587495,0.000030087263,0.000049524024,0.0010302908,0.0009963533,0.0007170417,0.00088295003,0.8881766,0.00006391538],"about_ca_topic_score_codex":0.997088,"about_ca_topic_score_gemma":0.99856997,"teacher_disagreement_score":0.9501004,"about_ca_system_score_codex":0.049899552,"about_ca_system_score_gemma":0.14711052,"threshold_uncertainty_score":0.36204827},"labels":[],"label_agreement":null},{"id":"W302700635","doi":"","title":"Trend analysis of stratospheric BrO using ground-based UV-visible and SCIAMACHY limb observations at 60°N, 44°N, 28°N, and 45°S","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric Ozone and Climate","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Stratosphere; SCIAMACHY; Zenith; Environmental science; Atmospheric sciences; Bromine; Troposphere; Seasonality; Limiting; Ozone layer; Climatology; Meteorology; Geography; Mathematics; Chemistry; Remote sensing; Statistics; Geology","score_opus":0.032066337170101204,"score_gpt":0.24184355974063015,"score_spread":0.20977722257052894,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W302700635","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99463993,0.00020476838,0.0027167287,0.000022839587,0.0000071255513,0.000008527753,0.0019177851,0.00006635163,0.0004159075],"genre_scores_gemma":[0.98897225,0.00022169748,0.0036985667,0.0000094721145,0.000011284655,0.000014336824,0.006507023,0.000018702132,0.00054663856],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998909,0.00001590295,0.000009513162,0.000036267073,0.000028074644,0.00001924224],"domain_scores_gemma":[0.9996716,0.00006484484,0.00008825418,0.0000316769,0.00012836413,0.000015304471],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040554383,0.00020950183,0.00014841105,0.001103632,0.0001510902,0.00022576629,0.00014296838,0.00014217092,0.00031310917],"category_scores_gemma":[0.0005915973,0.0001015535,0.00028144472,0.0011286013,0.000064757245,0.0002602847,0.00017829,0.00012909375,0.00008737159],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023766134,0.000045753724,0.91277415,0.00011643268,0.00027098946,0.000091181515,0.0002785672,0.0070451926,0.03498429,0.0002062039,0.00055654463,0.04339302],"study_design_scores_gemma":[0.0000041605717,0.000057645862,0.98629737,0.0000053357526,0.000058831563,0.000037275982,0.000070275244,0.008945208,0.0030813324,0.000045852597,0.001389331,0.000007353297],"about_ca_topic_score_codex":0.019480705,"about_ca_topic_score_gemma":0.0345599,"teacher_disagreement_score":0.019480705,"about_ca_system_score_codex":0.00025588783,"about_ca_system_score_gemma":0.00023800941,"threshold_uncertainty_score":0.038734615},"labels":[],"label_agreement":null},{"id":"W3027011027","doi":"","title":"Spatial and temporal trends in atmospheric carbon monoxide across Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Carbon monoxide; Environmental science; Geography; Atmospheric sciences; Climatology; Meteorology; Geology","score_opus":0.004345386192035262,"score_gpt":0.20089211105840385,"score_spread":0.1965467248663686,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3027011027","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98325515,0.0014056647,0.00024872992,0.0009273517,0.000036415564,0.000017765902,0.009204242,0.00006180334,0.004842816],"genre_scores_gemma":[0.9919785,0.0007698415,0.00025617334,0.00009087257,0.000008534828,0.0000083417,0.002373326,0.0000101827745,0.0045042215],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99952924,0.000018619556,0.000030302812,0.00009350744,0.0001319045,0.0001964481],"domain_scores_gemma":[0.99840707,0.000097706994,0.00018093025,0.000038142964,0.0010016108,0.00027450704],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003032118,0.0003153825,0.00032440678,0.0022120692,0.0019127998,0.0018993746,0.00071345293,0.00061140093,0.0028099287],"category_scores_gemma":[0.00106094,0.00032948016,0.000618464,0.004644224,0.0007494575,0.00056687515,0.00095194957,0.00056685385,0.0002674749],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001789352,0.000045250963,0.97846097,0.000082987295,0.0002395962,0.00022987221,0.0017114653,0.0012715219,0.0016029694,0.00083578646,0.0039899102,0.011350706],"study_design_scores_gemma":[0.0000047974822,0.000007891274,0.9929167,0.000024324436,0.00004344794,0.000032101154,0.0016508626,0.00090895477,0.0001550651,0.000036211524,0.00420361,0.000016050632],"about_ca_topic_score_codex":0.99809974,"about_ca_topic_score_gemma":0.99879104,"teacher_disagreement_score":0.024938015,"about_ca_system_score_codex":0.024938015,"about_ca_system_score_gemma":0.030959684,"threshold_uncertainty_score":0.18093884},"labels":[],"label_agreement":null},{"id":"W3027182345","doi":"","title":"Pollution in the Summertime Canadian High Arctic observed during NETCARE 2014: Investigation of origin and composition","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Pollution; Arctic; Environmental science; Composition (language); The arctic; Oceanography; Geology; Ecology","score_opus":0.018482268009656286,"score_gpt":0.19124874290191946,"score_spread":0.17276647489226316,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3027182345","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99491584,0.00026218485,0.00011556334,0.00008819215,0.000021034451,0.000011353383,0.0022967483,0.000012643071,0.0022764367],"genre_scores_gemma":[0.9950694,0.00029002258,0.00025516807,0.00007213941,0.000016405596,0.000013266058,0.0021600996,0.00001299299,0.0021106035],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996911,0.000012541462,0.000011696106,0.000058878075,0.00010670281,0.000119120654],"domain_scores_gemma":[0.9995191,0.000016564325,0.000052030307,0.000010103402,0.00029306975,0.0001090248],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029873042,0.00047740492,0.00044419445,0.0018440745,0.0034011626,0.0014217299,0.0006812542,0.00064451643,0.0010219285],"category_scores_gemma":[0.0004199382,0.00031441997,0.0004282323,0.002785964,0.00066534366,0.00035553233,0.00094327587,0.00038987657,0.00018016864],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00039972615,0.000056972513,0.98364246,0.00004231117,0.00012264516,0.00020652633,0.001978221,0.00025429373,0.0060846535,0.00015381405,0.0014987,0.005559859],"study_design_scores_gemma":[0.000001996725,0.000007878282,0.9976199,0.000006561611,0.0000130852495,0.000026740943,0.00087998755,0.00012560467,0.00022015334,0.000006450273,0.0010862236,0.000005356181],"about_ca_topic_score_codex":0.9852144,"about_ca_topic_score_gemma":0.9928631,"teacher_disagreement_score":0.014785588,"about_ca_system_score_codex":0.010675602,"about_ca_system_score_gemma":0.011228122,"threshold_uncertainty_score":0.07745725},"labels":[],"label_agreement":null},{"id":"W3027712676","doi":"","title":"The Canadian Arctic Atmospheric Chemistry Experiment (ACE) Validation Project: Overview and results from ten years of ACE operations","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Arctic; Environmental science; Climatology; Meteorology; Oceanography; Geography; Geology","score_opus":0.016228944762080155,"score_gpt":0.22904639664816956,"score_spread":0.21281745188608941,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3027712676","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.7139525,0.016200457,0.028756756,0.0026859348,0.000876305,0.0024741513,0.18266718,0.0028124177,0.049574412],"genre_scores_gemma":[0.70453054,0.009553146,0.06098434,0.0014023792,0.00017451402,0.0011032855,0.20594245,0.0011760693,0.015133308],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9916568,0.00083393126,0.00019738192,0.0006349342,0.0058507575,0.0008261232],"domain_scores_gemma":[0.9857406,0.00065033743,0.00050987623,0.0008618201,0.01135522,0.0008822029],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.014554409,0.0019742486,0.0012418649,0.0020095042,0.0044977795,0.002679088,0.0020180745,0.00077615323,0.0006495976],"category_scores_gemma":[0.007422258,0.00055287377,0.0011107234,0.00539068,0.0012369968,0.0012465982,0.0023464665,0.0010080371,0.00042499762],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.004892878,0.0023338406,0.4871161,0.0019680797,0.0030985842,0.00023256829,0.0024203847,0.04717869,0.01730369,0.0043506185,0.12508523,0.3040194],"study_design_scores_gemma":[0.0004259111,0.000410827,0.8051067,0.00041411765,0.0008299479,0.00008425173,0.0011457159,0.0179935,0.028938457,0.0006146107,0.143799,0.00023688686],"about_ca_topic_score_codex":0.96501356,"about_ca_topic_score_gemma":0.97130597,"teacher_disagreement_score":0.034986436,"about_ca_system_score_codex":0.016907508,"about_ca_system_score_gemma":0.073458105,"threshold_uncertainty_score":0.122673094},"labels":[],"label_agreement":null},{"id":"W3028168192","doi":"","title":"Preliminary results of marine heat flow measurements in the Canadian Beaufort Sea and its implications for intermittent methane fluid expulsion","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Beaufort sea; Environmental science; Methane; Oceanography; Flow (mathematics); Heat flow; Geology; Climatology; Meteorology; Sea ice; Geography; Mechanics; Ecology; Thermal","score_opus":0.03137263857514064,"score_gpt":0.253192474831773,"score_spread":0.22181983625663235,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3028168192","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99448085,0.00015551763,0.00056819647,0.00017390128,0.000026989703,0.000023735245,0.00095046574,0.00005459406,0.003565763],"genre_scores_gemma":[0.9977076,0.0000893444,0.0008382511,0.000043398424,0.000011572906,0.000014159868,0.00036588553,0.000011157728,0.0009186347],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996805,0.000015546464,0.000009515098,0.00005349429,0.00013898114,0.00010192057],"domain_scores_gemma":[0.9994717,0.00009343646,0.00005428894,0.000025030362,0.00025963015,0.000095890995],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040001978,0.00051824324,0.00033304692,0.0007802407,0.0027910967,0.0008346002,0.00088201073,0.00065524847,0.0011095818],"category_scores_gemma":[0.0009456339,0.00022549223,0.0003858224,0.0013532592,0.0009420252,0.0005267037,0.00059445243,0.0007685148,0.0001522107],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0023862442,0.00034871962,0.7416716,0.00023878785,0.00010770559,0.0013007352,0.0039727218,0.0076641357,0.20226206,0.00067302707,0.0019027337,0.037471484],"study_design_scores_gemma":[0.000032763008,0.00012505107,0.981807,0.00001157239,0.00003662507,0.00004134895,0.0010230963,0.0029247713,0.012196361,0.00005485662,0.0017149645,0.000031635598],"about_ca_topic_score_codex":0.8512406,"about_ca_topic_score_gemma":0.90349895,"teacher_disagreement_score":0.14875942,"about_ca_system_score_codex":0.00378334,"about_ca_system_score_gemma":0.0047388556,"threshold_uncertainty_score":0.29927093},"labels":[],"label_agreement":null},{"id":"W3028228572","doi":"","title":"The New 4D-En-Var Regional Deterministic Prediction System at the Canadian Meteorological Center","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Meteorological Phenomena and Simulations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Center (category theory); Meteorology; Climatology; Environmental science; Geography; Remote sensing; Geology","score_opus":0.02180218624914144,"score_gpt":0.20800397861122896,"score_spread":0.18620179236208753,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3028228572","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.33164188,0.0019696443,0.38375908,0.007057052,0.0029402927,0.000721362,0.10846012,0.035739347,0.12771119],"genre_scores_gemma":[0.77319616,0.0006434044,0.15881993,0.00055070303,0.00019136858,0.00034912233,0.040372945,0.0018033212,0.024072992],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9995227,0.000094353076,0.000018924593,0.00010319374,0.00016958322,0.000091292066],"domain_scores_gemma":[0.9989213,0.00011672101,0.00003170705,0.00010285623,0.00069035875,0.00013724729],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009306614,0.00081256364,0.0008968393,0.0005056457,0.0013460732,0.0014061173,0.0026972035,0.0008933945,0.00751073],"category_scores_gemma":[0.0030009884,0.0006818755,0.0006334058,0.0010425086,0.00050087314,0.0012959149,0.0008152673,0.0017067466,0.0016603662],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00024558252,0.00007545932,0.0067164153,0.00005583769,0.00009766316,0.00006416473,0.00008055317,0.9147366,0.001052783,0.005722604,0.04573491,0.025417358],"study_design_scores_gemma":[0.00006224977,0.000007699149,0.00093994796,0.0000071544137,0.00001648063,0.0000040313257,0.000014178646,0.9900497,0.00034829509,0.00083019683,0.007693062,0.000026934944],"about_ca_topic_score_codex":0.9029766,"about_ca_topic_score_gemma":0.87767994,"teacher_disagreement_score":0.09702343,"about_ca_system_score_codex":0.0057823434,"about_ca_system_score_gemma":0.013105579,"threshold_uncertainty_score":0.1951896},"labels":[],"label_agreement":null},{"id":"W3028392139","doi":"","title":"Channel morphology and patterns of bedload transport in fluvial, formerly-glaciated, forested headwater streams of the Columbia Mountains, Canada","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Sediment Transport Processes","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"STREAMS; Fluvial; Bed load; Channel (broadcasting); Geology; Hydrology (agriculture); Physical geography; Geography; Geomorphology; Sediment transport; Sediment; Structural basin","score_opus":0.004217181172210222,"score_gpt":0.17158869088824197,"score_spread":0.16737150971603174,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3028392139","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99932075,0.000057942343,0.000027317636,0.000015472635,0.000001048616,0.0000039770116,0.00026696446,0.0000032240407,0.00030329466],"genre_scores_gemma":[0.99919933,0.000052414114,0.000044506618,0.000008659622,6.0716945e-7,0.00000275979,0.00021749508,0.000002497787,0.00047165484],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997949,0.000016180926,0.000011986345,0.000043309923,0.000039699888,0.00009394396],"domain_scores_gemma":[0.999302,0.000075818694,0.000106021056,0.000025752946,0.00029943924,0.00019083408],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018247028,0.00015826891,0.00022335631,0.0012850411,0.0016684771,0.0012104927,0.00063261454,0.00027996718,0.0012448729],"category_scores_gemma":[0.0009069182,0.00020738579,0.00019632973,0.0020019182,0.0011107584,0.00023627274,0.0004290242,0.00022363843,0.00016323138],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000104888015,0.000033567063,0.99107414,0.000012928574,0.000036783957,0.00011653041,0.0015135128,0.00031817728,0.0010833596,0.00008771155,0.00041994097,0.0051985127],"study_design_scores_gemma":[0.0000020280827,0.00000373045,0.99870944,0.0000041024778,0.000004988106,0.000020639485,0.0009162307,0.00018033173,0.000034582867,0.0000118303515,0.00010840814,0.000003648534],"about_ca_topic_score_codex":0.977244,"about_ca_topic_score_gemma":0.99433595,"teacher_disagreement_score":0.02275598,"about_ca_system_score_codex":0.0068453657,"about_ca_system_score_gemma":0.0070599373,"threshold_uncertainty_score":0.04966688},"labels":[],"label_agreement":null},{"id":"W3029143554","doi":"","title":"Continuous pCO2 Time Series from Ocean Networks Canada cabled observatories on the northeast Pacific shelf-edge/upper slope and in the sub-tidal Arctic","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Oceanography; Petroleum seep; Series (stratigraphy); Arctic; The arctic; Pacific ocean; Paleontology","score_opus":0.003305463811769894,"score_gpt":0.14233725761755892,"score_spread":0.13903179380578903,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3029143554","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.89567184,0.00044280163,0.00032209774,0.00041786325,0.00004999227,0.000027786864,0.096996605,0.00012434577,0.0059467135],"genre_scores_gemma":[0.9345845,0.00039919105,0.0006089631,0.00009184011,0.000023684906,0.000022670063,0.060545042,0.000033207612,0.003690856],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996896,0.000015165713,0.000016916429,0.00006977546,0.0001219251,0.00008668265],"domain_scores_gemma":[0.9986363,0.000092366405,0.00016416873,0.000047870777,0.00084524753,0.00021405268],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028356878,0.00036761322,0.00029085882,0.001644993,0.0009447882,0.0010301714,0.0005984406,0.00044062836,0.0019870328],"category_scores_gemma":[0.0012730173,0.00024214323,0.00034525138,0.0049719596,0.00039297948,0.0005376585,0.00088949455,0.00042640985,0.00041876873],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00034141974,0.00004584494,0.9631189,0.000109127526,0.00019041746,0.00019640727,0.0010057357,0.0035476212,0.0015917958,0.0006200824,0.018486053,0.010746656],"study_design_scores_gemma":[0.000008163474,0.0000054265715,0.99209374,0.000019351573,0.00001852555,0.000020451113,0.00059892033,0.0013919395,0.00022650567,0.000036219135,0.0055670068,0.00001371264],"about_ca_topic_score_codex":0.9825189,"about_ca_topic_score_gemma":0.988441,"teacher_disagreement_score":0.017481089,"about_ca_system_score_codex":0.006701095,"about_ca_system_score_gemma":0.009699325,"threshold_uncertainty_score":0.048620105},"labels":[],"label_agreement":null},{"id":"W3029513795","doi":"","title":"METIS takes off, a disruptive onshore seismic acquisition system","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Reservoir Engineering and Simulation Methods","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Metis; Geology; Computer science; Seismology; World Wide Web","score_opus":0.007947451564035044,"score_gpt":0.23304577472250176,"score_spread":0.22509832315846673,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3029513795","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8342698,0.00010940738,0.09940061,0.0006456901,0.0002497531,0.00023427946,0.00097198895,0.010520913,0.05359761],"genre_scores_gemma":[0.9662159,0.00004660894,0.01963776,0.00006256953,0.000013105571,0.000049539594,0.000497629,0.00014174158,0.013335024],"study_design_codex":"simulation_or_modeling","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99983644,0.000027318754,0.000006145375,0.000023412162,0.0000745073,0.000032157604],"domain_scores_gemma":[0.9997962,0.00004365845,0.000014775428,0.000033993838,0.0000577941,0.000053617292],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021848212,0.00036937618,0.000301948,0.00020426155,0.00066009664,0.00072897755,0.0005006729,0.00038360158,0.0036300733],"category_scores_gemma":[0.00053714326,0.00017376934,0.00015130125,0.00017834152,0.00034906899,0.00056295324,0.0008023726,0.0005863279,0.00065980636],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0024098079,0.0010134216,0.04041956,0.00023006611,0.00015317494,0.002435474,0.0013040554,0.54396033,0.08326835,0.0138099585,0.04489877,0.26609698],"study_design_scores_gemma":[0.00010809156,0.0005019489,0.004700577,0.000011619773,0.000035837496,0.00013833336,0.0003102366,0.965989,0.010769645,0.0007990946,0.016607067,0.000028579367],"about_ca_topic_score_codex":0.017307976,"about_ca_topic_score_gemma":0.034113172,"teacher_disagreement_score":0.017307976,"about_ca_system_score_codex":0.0006557038,"about_ca_system_score_gemma":0.0016508516,"threshold_uncertainty_score":0.03441447},"labels":[],"label_agreement":null},{"id":"W3029948301","doi":"","title":"Continuous Analysis of Stable Carbon Isotopes in CO_{2} and CH_{4} Fluxes with an Automated Chamber Flux System at Mer Bleue Bog, Ottawa, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Flux (metallurgy); Carbon flux; Environmental science; Carbon fibers; Bog; Atmospheric sciences; Carbon cycle; Stable isotope ratio; Astrobiology; Chemistry; Physics; Peat; Nuclear physics; Materials science; Geography; Ecosystem","score_opus":0.0028109921719440207,"score_gpt":0.18517644904916697,"score_spread":0.18236545687722294,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3029948301","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97887826,0.00015979052,0.007994503,0.00010430144,0.000039159768,0.00021396858,0.0045554345,0.0003811744,0.0076734493],"genre_scores_gemma":[0.96115863,0.00017885979,0.020200742,0.00018147365,0.0000214426,0.00036222025,0.0022773577,0.00021673532,0.015402489],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.9994863,0.000028197312,0.000011466658,0.00017176589,0.00021907785,0.00008307315],"domain_scores_gemma":[0.9995347,0.000041304083,0.000028225932,0.000020446478,0.00030365714,0.00007168718],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003033344,0.00041237316,0.00044967706,0.0008485549,0.003283679,0.00094555103,0.00086568936,0.00042794604,0.0030857746],"category_scores_gemma":[0.00033582267,0.0004393336,0.00027280822,0.00093559036,0.0007015463,0.000414517,0.0004319845,0.0007661547,0.0005975216],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010424491,0.00019932828,0.116658136,0.00009011184,0.00011273599,0.00011499108,0.0012638193,0.0015560274,0.84733355,0.0004791552,0.003078905,0.028070915],"study_design_scores_gemma":[0.00015901373,0.00023546806,0.81642306,0.000032703058,0.0001272963,0.00013845279,0.0006992125,0.012246853,0.15333737,0.00019525755,0.016299512,0.00010585004],"about_ca_topic_score_codex":0.88172126,"about_ca_topic_score_gemma":0.94859785,"teacher_disagreement_score":0.11827874,"about_ca_system_score_codex":0.007188906,"about_ca_system_score_gemma":0.011018933,"threshold_uncertainty_score":0.23795056},"labels":[],"label_agreement":null},{"id":"W3031930205","doi":"","title":"Coralline Algal Skeletal δ13C as a Multicentury Recorder of Carbon Dynamics in the Labrador Sea","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Isotope Analysis in Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oceanography; Geology; Dynamics (music); Carbon cycle; Physical geography; Geography; Ecology; Biology; Ecosystem","score_opus":0.007673283993762764,"score_gpt":0.2541912743853816,"score_spread":0.2465179903916188,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3031930205","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9994863,0.000069137765,0.0000665927,0.000014862851,0.0000011606664,7.432205e-7,0.00008698439,0.0000070095143,0.00026713987],"genre_scores_gemma":[0.9991499,0.000056827692,0.0002461367,0.000014568998,0.0000023472082,0.0000011619103,0.000124552,0.000008526183,0.00039585674],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998387,0.000027449081,0.000016440017,0.00004462693,0.00003641837,0.000036307607],"domain_scores_gemma":[0.9996779,0.000030325013,0.00010153235,0.000033414573,0.000107407395,0.000049439233],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004950459,0.00027024123,0.00025375228,0.00094529387,0.0005048409,0.0007262148,0.0005053072,0.00032566924,0.00046550357],"category_scores_gemma":[0.00072939764,0.00032362773,0.0001416282,0.00091602956,0.0004990679,0.00044087705,0.00050032896,0.00022372609,0.00022152261],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003766046,0.000032834476,0.9581373,0.000019357107,0.00011546499,0.000112008594,0.00060050644,0.00047672528,0.028288003,0.000056884855,0.00017511194,0.011609104],"study_design_scores_gemma":[0.0000041804547,0.00003044725,0.99694,0.000004118297,0.00003829543,0.000041882664,0.0003269569,0.0009881034,0.001358194,0.000011253372,0.00024995845,0.0000066109687],"about_ca_topic_score_codex":0.25691742,"about_ca_topic_score_gemma":0.47635928,"teacher_disagreement_score":0.7430826,"about_ca_system_score_codex":0.0010927104,"about_ca_system_score_gemma":0.00060425943,"threshold_uncertainty_score":0.510844},"labels":[],"label_agreement":null},{"id":"W3032044732","doi":"","title":"Downscaling ocean conditions with application to the Gulf of Maine, Scotian Shelf and adjacent deep ocean","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Dalhousie University","funders":"","keywords":"Argo; Eddy; Climatology; Downscaling; Ocean observations; Oceanography; Sea-surface height; Geology; Ocean current; Gulf Stream; Deep sea; Decoupling (probability); Ocean dynamics; Sea surface temperature; Current (fluid); Environmental science; Meteorology; Geography; Climate change","score_opus":0.005897731356495029,"score_gpt":0.20673832192370994,"score_spread":0.20084059056721493,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3032044732","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9937504,0.000049717062,0.0042295167,0.000064141765,0.000025087533,0.000029062747,0.00033462362,0.00029736647,0.0012199201],"genre_scores_gemma":[0.9960312,0.00002417117,0.0032575733,0.000012917797,0.0000049781556,0.000009936548,0.0003049201,0.000023048173,0.00033132176],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999404,0.000010070205,0.0000038868848,0.000021422053,0.000013318061,0.000010800486],"domain_scores_gemma":[0.99976975,0.000044336673,0.000028354207,0.00003564618,0.00009885149,0.000023164199],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029080085,0.00046833677,0.00020723479,0.00028007315,0.00028591292,0.00044890467,0.000321261,0.00021312883,0.00083821215],"category_scores_gemma":[0.0007899736,0.00017900902,0.00030295723,0.00032234675,0.00016921558,0.00024194708,0.00027949564,0.0003101554,0.0001428241],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001934931,0.00013275968,0.10288662,0.000035830264,0.00012159174,0.00020899,0.00012048671,0.8414122,0.013603437,0.00025207465,0.00093777495,0.040094744],"study_design_scores_gemma":[0.00004442546,0.000058798123,0.098737106,0.0000072776697,0.0000243999,0.000013122375,0.000083134095,0.8974807,0.0029581885,0.000100429505,0.0004790506,0.000013294771],"about_ca_topic_score_codex":0.27668688,"about_ca_topic_score_gemma":0.25861427,"teacher_disagreement_score":0.7233131,"about_ca_system_score_codex":0.0007809191,"about_ca_system_score_gemma":0.0010008377,"threshold_uncertainty_score":0.5501528},"labels":[],"label_agreement":null},{"id":"W3032238192","doi":"","title":"Syn- to post-Taconian basin formation in the Southern Québec Appalachians, Canada: constraints from detrital zircon U-Pb geochronology","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geochronology; Zircon; Geology; Geochemistry","score_opus":0.011061143912134017,"score_gpt":0.17166325992552775,"score_spread":0.16060211601339375,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3032238192","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.991861,0.00062807964,0.00019096822,0.00020158227,0.000007988968,0.00002092857,0.0015174391,0.000016970678,0.005554952],"genre_scores_gemma":[0.99613416,0.00023891454,0.00023294627,0.00004635599,0.0000018698952,0.000009936438,0.00048319838,0.000009827101,0.0028427625],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997445,0.000024628582,0.000013844875,0.000057343506,0.00004493455,0.00011483394],"domain_scores_gemma":[0.9992895,0.00005196828,0.00008630974,0.00002035371,0.00042412258,0.0001277467],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003468577,0.00022543676,0.00024042912,0.0016801066,0.0026069493,0.0017673983,0.0008258483,0.00033034384,0.0036157179],"category_scores_gemma":[0.0009170199,0.00021535622,0.00020860923,0.0024511968,0.0010470643,0.00046430907,0.000771983,0.00028588375,0.0002679088],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000290445,0.00005256443,0.94321126,0.000098462486,0.00013572969,0.00046136032,0.0071622506,0.0009869419,0.0049887015,0.0024196836,0.0025038018,0.037688773],"study_design_scores_gemma":[0.0000036860654,0.0000065226095,0.993956,0.000029926246,0.000012504692,0.00004871185,0.0018580611,0.00043212093,0.00015621723,0.00004595126,0.0034437247,0.000006552799],"about_ca_topic_score_codex":0.99485356,"about_ca_topic_score_gemma":0.99868387,"teacher_disagreement_score":0.01906584,"about_ca_system_score_codex":0.01906584,"about_ca_system_score_gemma":0.018623104,"threshold_uncertainty_score":0.13833302},"labels":[],"label_agreement":null},{"id":"W3032686086","doi":"","title":"A modified ensemble Kalman particle filter for non-Gaussian systems with nonlinear measurement functions","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Target Tracking and Data Fusion in Sensor Networks","field":"Computer Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Northern British Columbia","funders":"","keywords":"Ensemble Kalman filter; Particle filter; Kalman filter; Data assimilation; Algorithm; Nonlinear system; Extended Kalman filter; Resampling; Gaussian; Invariant extended Kalman filter; Covariance; Computer science; Computation; Fast Kalman filter; Mathematics; Artificial intelligence; Statistics; Physics","score_opus":0.040170834308580664,"score_gpt":0.23472557530446772,"score_spread":0.19455474099588704,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3032686086","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0021559708,0.00013982486,0.9969342,0.00004332923,0.000060237508,0.0000122360325,0.000026862275,0.0001553582,0.00047204935],"genre_scores_gemma":[0.24590243,0.0008688712,0.7462522,0.00013454101,0.00019417891,0.00019162167,0.00038534828,0.00012145624,0.005949345],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99939334,0.00013870464,0.000034319986,0.00014949053,0.00024398806,0.000040113686],"domain_scores_gemma":[0.9992964,0.0002873663,0.00006936031,0.00009677432,0.00022643057,0.000023675637],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.001031682,0.0007115256,0.0010393522,0.000466796,0.00042562504,0.00063797453,0.0011553515,0.0010419392,0.0014329889],"category_scores_gemma":[0.0036256863,0.00035085646,0.0007677535,0.0006403411,0.00040554904,0.0014272818,0.00085450767,0.0012779599,0.0004558292],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000103350816,0.00004001627,0.0014006741,0.00012678612,0.000107930646,0.00014587634,0.000104476574,0.7270169,0.0063501857,0.027208002,0.0028148936,0.23458081],"study_design_scores_gemma":[0.0000057240727,0.0000129241735,0.00020312218,0.000004292484,0.000008541313,0.000021385229,0.000002897667,0.9953849,0.0006134493,0.0019831595,0.0017503857,0.00000924465],"about_ca_topic_score_codex":0.010060316,"about_ca_topic_score_gemma":0.009047596,"teacher_disagreement_score":0.010060316,"about_ca_system_score_codex":0.000589204,"about_ca_system_score_gemma":0.0013897516,"threshold_uncertainty_score":0.020003498},"labels":[],"label_agreement":null},{"id":"W3032942698","doi":"","title":"A case study of the microphysical and dynamical processes of fog and in-flight icing environments at Cold Lake Alberta, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Icing and De-icing Technologies","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Icing; Meteorology; Environmental science; Climatology; Atmospheric sciences; Geography; Geology","score_opus":0.0054435245676744,"score_gpt":0.18405363511635933,"score_spread":0.17861011054868492,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3032942698","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99178594,0.0001898226,0.00052530796,0.00021759927,0.000012737653,0.000059941758,0.0005333024,0.000030746596,0.0066445475],"genre_scores_gemma":[0.99602157,0.00015206773,0.0006109388,0.00003768937,0.000004624829,0.000011157692,0.00018773777,0.0000071061804,0.0029670554],"study_design_codex":"observational","study_design_gemma":"case_report","domain_scores_codex":[0.9997334,0.000015325351,0.000005491222,0.000021881824,0.00007809563,0.0001458953],"domain_scores_gemma":[0.9997551,0.00004284853,0.000018324521,0.0000088369825,0.00009786598,0.000077012024],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014445354,0.00034250712,0.0002497337,0.00084883673,0.0046395245,0.0013910996,0.000843411,0.000719605,0.0015739115],"category_scores_gemma":[0.00043542756,0.00018832747,0.00026729697,0.002022394,0.0010029165,0.00030181042,0.00057511666,0.0005405101,0.0000924006],"study_design_candidate":"case_report","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0010737956,0.0009945786,0.7252132,0.00047957138,0.000316354,0.032136437,0.024791414,0.10308439,0.02246019,0.00749479,0.014685444,0.06726976],"study_design_scores_gemma":[0.00007949557,0.00018776007,0.8540547,0.0000874437,0.00013293541,0.00089356775,0.053621173,0.061828155,0.0033974082,0.000817025,0.024762869,0.0001375899],"about_ca_topic_score_codex":0.98853815,"about_ca_topic_score_gemma":0.9958495,"teacher_disagreement_score":0.018512467,"about_ca_system_score_codex":0.018512467,"about_ca_system_score_gemma":0.014636107,"threshold_uncertainty_score":0.13431793},"labels":[],"label_agreement":null},{"id":"W3033097812","doi":"","title":"Early Eocene hyperthermals recorded in terrestrial sediments of the Canadian Arctic (Stenkul Fiord, Ellesmere Island): evidence from new carbon isotope data","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Fjord; Arctic; Oceanography; Geology; The arctic; Isotopes of carbon; Physical geography; Radiocarbon dating; Paleontology; Isotope; Geography","score_opus":0.049004688832965104,"score_gpt":0.2562939683072663,"score_spread":0.2072892794743012,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3033097812","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99709165,0.00040996427,0.00007002627,0.000034541208,0.0000048093184,0.00000434712,0.00073689804,0.0000054483676,0.0016422712],"genre_scores_gemma":[0.9985133,0.00022026182,0.00010400077,0.000021243457,0.000003194946,0.000002534028,0.0005880015,0.0000031045488,0.00054433505],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998325,0.000008143487,0.000008147115,0.000029631921,0.000049893428,0.000071666625],"domain_scores_gemma":[0.999337,0.000028064418,0.00008618988,0.0000162584,0.00042761408,0.000104925544],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002382628,0.00023784833,0.00021824124,0.0017431098,0.002092414,0.00073243736,0.0004100816,0.0002809292,0.00096359226],"category_scores_gemma":[0.0005652272,0.00022390128,0.0001238124,0.0021477798,0.0007870192,0.00029119622,0.00047878444,0.00025121096,0.00015236391],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021961561,0.000025954587,0.9649759,0.000077289325,0.000076652315,0.0001940496,0.0035332388,0.00017806297,0.020296182,0.00018036905,0.00033183937,0.00991074],"study_design_scores_gemma":[9.453559e-7,0.0000046694345,0.9985494,0.000004505897,0.000006735211,0.000026794281,0.00043755214,0.000027891127,0.0002607067,0.0000037205798,0.0006751073,0.0000019784175],"about_ca_topic_score_codex":0.92902017,"about_ca_topic_score_gemma":0.97786045,"teacher_disagreement_score":0.07097983,"about_ca_system_score_codex":0.004456058,"about_ca_system_score_gemma":0.003663009,"threshold_uncertainty_score":0.14279562},"labels":[],"label_agreement":null},{"id":"W3033143365","doi":"","title":"Multimodel hydrological ensemble forecasts for the Baskatong catchment in Canada using the TIGGE database.","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Database; Environmental science; Drainage basin; Hydrology (agriculture); Catchment hydrology; Computer science; Geography; Geology; Cartography","score_opus":0.027569747405331607,"score_gpt":0.23443011761656002,"score_spread":0.2068603702112284,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3033143365","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.74795353,0.00091382273,0.0055714846,0.0013031961,0.00016803981,0.000089650035,0.23151521,0.0018722978,0.010612754],"genre_scores_gemma":[0.87691027,0.0006627909,0.009209417,0.00009967245,0.000022408949,0.00006449271,0.107826106,0.00021994927,0.0049849316],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998154,0.000017506141,0.000013395776,0.000037653816,0.00006643546,0.00004967252],"domain_scores_gemma":[0.999273,0.000046474488,0.000045780507,0.000064896296,0.00048081193,0.00008909798],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039690538,0.00036394587,0.00033375985,0.0008810863,0.0007254926,0.00084193685,0.001105919,0.00048181412,0.0026236463],"category_scores_gemma":[0.0010824987,0.0002594423,0.00038338025,0.0023907232,0.00020623735,0.0005860251,0.00035737807,0.00063560426,0.0005632919],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00049365195,0.00036094207,0.25680804,0.0003518335,0.00080097135,0.00029929655,0.0004874403,0.47502968,0.003657082,0.00475009,0.15833735,0.09862349],"study_design_scores_gemma":[0.00031923052,0.000026762205,0.29314944,0.00014725405,0.0002595635,0.00005559979,0.0009210719,0.6454095,0.0024591684,0.0013363868,0.055770606,0.0001453565],"about_ca_topic_score_codex":0.99089164,"about_ca_topic_score_gemma":0.9940439,"teacher_disagreement_score":0.0094620725,"about_ca_system_score_codex":0.0094620725,"about_ca_system_score_gemma":0.016665876,"threshold_uncertainty_score":0.06865245},"labels":[],"label_agreement":null},{"id":"W3033497624","doi":"","title":"Observation and modelling of fog at Cold Lake, Alberta, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Aeolian processes and effects","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Meteorology; Environmental science; Physical geography; Climatology; Geography; Hydrology (agriculture); Geology","score_opus":0.027317563542551156,"score_gpt":0.19083583272993923,"score_spread":0.16351826918738807,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3033497624","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99495596,0.00017548427,0.0005473703,0.0001559492,0.000016915754,0.000020357182,0.0015506081,0.000086377404,0.00249103],"genre_scores_gemma":[0.99725914,0.00011612975,0.0005886216,0.000017187556,0.0000036383192,0.000008118857,0.0008150867,0.000010241169,0.0011816778],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9999025,0.000008851883,0.0000044601843,0.00001932522,0.000023023536,0.00004192428],"domain_scores_gemma":[0.9997851,0.000045696812,0.00001695683,0.000010547257,0.000095394586,0.0000463229],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019947486,0.0004116597,0.0002750729,0.00053632725,0.0012750723,0.0011063442,0.0010912062,0.00065635,0.0016563131],"category_scores_gemma":[0.00060388946,0.00033631272,0.0004687238,0.001054035,0.0006073192,0.00040006536,0.00034174486,0.00045497163,0.0001381372],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00079433067,0.0003022009,0.2868437,0.00014298463,0.00026340064,0.000497924,0.00061332376,0.6796971,0.0055356636,0.0014090184,0.0063337726,0.017566592],"study_design_scores_gemma":[0.0001830959,0.000044027875,0.3128555,0.000033760592,0.000082893945,0.000030391968,0.00067734695,0.68121976,0.0013342621,0.00030753753,0.003165139,0.000066252],"about_ca_topic_score_codex":0.9901765,"about_ca_topic_score_gemma":0.9906273,"teacher_disagreement_score":0.011605925,"about_ca_system_score_codex":0.011605925,"about_ca_system_score_gemma":0.0097503895,"threshold_uncertainty_score":0.08420724},"labels":[],"label_agreement":null},{"id":"W3033951236","doi":"","title":"A road map for improving dry-bias in simulating the South Asian monsoon precipitation by climate models","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Victoria","funders":"","keywords":"Precipitation; Environmental science; Climatology; Climate model; Variance (accounting); Monsoon; Atmospheric sciences; Climate change; Meteorology; Geography; Geology","score_opus":0.03771298785859348,"score_gpt":0.26793598457481904,"score_spread":0.23022299671622556,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3033951236","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.1412317,0.0031246617,0.8284132,0.0065664593,0.0005106633,0.0004121288,0.00087919977,0.006184494,0.012677489],"genre_scores_gemma":[0.51830596,0.0018976568,0.47518584,0.00039536742,0.00016946995,0.00040397572,0.00088800816,0.00037008265,0.0023836445],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9994531,0.0002956188,0.00005087647,0.000056024623,0.00010037207,0.00004404482],"domain_scores_gemma":[0.99793005,0.000892576,0.00011689424,0.00034152102,0.00055396045,0.00016490185],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0025331455,0.00091752503,0.00079424435,0.001054121,0.0007736016,0.0018421225,0.001303734,0.0012341916,0.004100971],"category_scores_gemma":[0.0072832904,0.00047605415,0.0007274758,0.0006361594,0.00050079677,0.0022442983,0.0019566324,0.001810479,0.0005055296],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00051552773,0.0005688786,0.014334907,0.0002501628,0.00024740514,0.0001922889,0.00018840953,0.7669513,0.0058897245,0.034390528,0.012831265,0.16363962],"study_design_scores_gemma":[0.00009014518,0.00010656012,0.0015536103,0.00004860612,0.00003276973,0.000021781643,0.00007989285,0.965692,0.0013358071,0.026265634,0.0047255363,0.00004766277],"about_ca_topic_score_codex":0.017807815,"about_ca_topic_score_gemma":0.01620801,"teacher_disagreement_score":0.017807815,"about_ca_system_score_codex":0.0005389762,"about_ca_system_score_gemma":0.0020632148,"threshold_uncertainty_score":0.035408318},"labels":[],"label_agreement":null},{"id":"W3033997310","doi":"","title":"Future climate-driven glacier energy balance change in the Canadian Rockies using the CMIP5","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Climate change; Energy balance; Glacier mass balance; Climatology; Balance (ability); Geology; Physical geography; Environmental science; Geography; Oceanography; Ecology","score_opus":0.03533055384752775,"score_gpt":0.22577134462166032,"score_spread":0.19044079077413256,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3033997310","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9334764,0.0012887778,0.00089549425,0.002059304,0.00009496659,0.000043413325,0.053548843,0.00022360365,0.008369166],"genre_scores_gemma":[0.9817172,0.00058763626,0.0009897712,0.00014774314,0.000016757313,0.000016184471,0.014290698,0.000039249306,0.002194733],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9997532,0.0000124493135,0.000014083423,0.00006050349,0.00006852682,0.00009128343],"domain_scores_gemma":[0.999418,0.000021101525,0.000055219207,0.000023231498,0.0004020136,0.00008057727],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006858615,0.000502348,0.00026979434,0.0012218853,0.001138969,0.0012238229,0.00096308434,0.0007525937,0.0030546626],"category_scores_gemma":[0.0013192414,0.00024850338,0.0007853418,0.0034783133,0.0003306652,0.0009253103,0.0005725441,0.0006917633,0.00030965047],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033452202,0.000112061425,0.8725166,0.00031720576,0.000577012,0.00023196138,0.0010348437,0.058201794,0.0033292596,0.0039011193,0.028858649,0.030585032],"study_design_scores_gemma":[0.000047011665,0.00000897348,0.9527281,0.0000942045,0.00015398546,0.000039782095,0.0007077916,0.027528243,0.00090290466,0.0003658461,0.01736562,0.000057497706],"about_ca_topic_score_codex":0.99528015,"about_ca_topic_score_gemma":0.9975362,"teacher_disagreement_score":0.023299767,"about_ca_system_score_codex":0.023299767,"about_ca_system_score_gemma":0.027686216,"threshold_uncertainty_score":0.16905242},"labels":[],"label_agreement":null},{"id":"W3034288435","doi":"","title":"Something new under the sun? Microbial mats and \"streamers\" in subaerial and terrestrial deposits of the late Ediacaran Signal Hill Group, Newfoundland, Canada.","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Paleontology and Stratigraphy of Fossils","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Subaerial; Group (periodic table); Geology; Paleontology; Microbial mat; Chemistry","score_opus":0.010704624061627968,"score_gpt":0.1980148773888652,"score_spread":0.18731025332723722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034288435","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9951237,0.0016516069,0.00007891347,0.00020476796,0.000008805142,0.000004823412,0.000608974,0.00000903745,0.0023093557],"genre_scores_gemma":[0.9963153,0.00096373656,0.00014936306,0.00007167618,0.0000082238175,0.000001890688,0.00024414618,0.0000048642237,0.0022407772],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998721,0.000005954367,0.0000072273433,0.000032695345,0.0000224038,0.000059579714],"domain_scores_gemma":[0.99979264,0.000017191564,0.000054790267,0.000007864868,0.00008118424,0.00004632466],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001410534,0.00018978943,0.00014445161,0.0011911568,0.002063801,0.0010552839,0.0003820775,0.00024559017,0.0015412302],"category_scores_gemma":[0.0004295822,0.0001700249,0.000080268444,0.0016819958,0.0016937944,0.00047522833,0.0006394553,0.0002618401,0.00018357091],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012838861,0.000019388994,0.92056733,0.00015602699,0.00006904981,0.0007824261,0.01673437,0.00017241928,0.01106347,0.0007013288,0.001748302,0.047857516],"study_design_scores_gemma":[8.7954334e-7,0.0000048210286,0.9929913,0.000016058697,0.000010117647,0.000076751945,0.0046591004,0.000024914643,0.00018952138,0.000032938213,0.0019910117,0.0000025356649],"about_ca_topic_score_codex":0.90312463,"about_ca_topic_score_gemma":0.9802995,"teacher_disagreement_score":0.09687537,"about_ca_system_score_codex":0.004834294,"about_ca_system_score_gemma":0.0033377477,"threshold_uncertainty_score":0.19489175},"labels":[],"label_agreement":null},{"id":"W3034339513","doi":"","title":"A multi-season investigation of turbulent heat flux and its parameterisation on glacier surfaces, Purcell Mountains, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Glacier; Turbulence; Geology; Flux (metallurgy); Meteorology; Heat flux; Atmospheric sciences; Climatology; Geography; Geomorphology; Physics; Heat transfer; Mechanics","score_opus":0.02867258296893511,"score_gpt":0.21590568007276514,"score_spread":0.18723309710383004,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034339513","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9992525,0.000021871943,0.00006397105,0.000010067097,0.0000013480754,0.0000058183878,0.00029057043,0.000008359179,0.0003455167],"genre_scores_gemma":[0.9992015,0.000020457483,0.00009244116,0.0000057234115,0.000001216214,0.000005210917,0.00041318435,0.000004900795,0.00025540136],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998698,0.000009210066,0.000004665797,0.00003027431,0.000030723917,0.000055253866],"domain_scores_gemma":[0.99970466,0.000051858646,0.000025287289,0.000018240242,0.00012879216,0.0000711359],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027532165,0.00033363354,0.0003570035,0.00087101496,0.0020152377,0.00095961656,0.00064083346,0.000503161,0.0007680905],"category_scores_gemma":[0.00046408628,0.0002841647,0.00037375715,0.0011212769,0.0005414008,0.00032738262,0.00027758678,0.00036784913,0.00011832242],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00089229696,0.00038710152,0.93013245,0.0000762704,0.0002232821,0.00056761707,0.001982092,0.026919957,0.02573836,0.00035667582,0.0012083928,0.0115155205],"study_design_scores_gemma":[0.000012690447,0.000021622,0.99167037,0.000004150398,0.000015931995,0.000026327765,0.0004283408,0.00675577,0.00067203696,0.000016913522,0.00036284045,0.000013126254],"about_ca_topic_score_codex":0.9394101,"about_ca_topic_score_gemma":0.95227194,"teacher_disagreement_score":0.06058991,"about_ca_system_score_codex":0.0047655646,"about_ca_system_score_gemma":0.003676568,"threshold_uncertainty_score":0.121893406},"labels":[],"label_agreement":null},{"id":"W3034339727","doi":"","title":"Spatial Localization and Ducting of EMIC Waves: Van Allen Probes and Ground-based Observations","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Ionosphere and magnetosphere dynamics","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Alberta","funders":"","keywords":"Plasmasphere; Van Allen Probes; Physics; Geophysics; Magnetometer; Computational physics; Earth's magnetic field; Van Allen radiation belt; Polarization (electrochemistry); Elliptical polarization; Geodesy; Magnetosphere; Ionosphere; Emic and etic; Astrophysics; Geology; Magnetic field; Optics; Linear polarization; Chemistry","score_opus":0.008733111421528597,"score_gpt":0.2055227200947711,"score_spread":0.1967896086732425,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034339727","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9908049,0.00015535101,0.0017624834,0.000059710415,0.000008014867,0.000023887345,0.0012484643,0.00006489904,0.005872216],"genre_scores_gemma":[0.9955395,0.00006849684,0.0022661015,0.00001980594,0.0000053496015,0.000014424446,0.0015848359,0.000014297556,0.00048713834],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998196,0.000024592644,0.000005181944,0.00006481054,0.000044798948,0.000041140098],"domain_scores_gemma":[0.99984765,0.000023558345,0.000038838476,0.000016239444,0.000044325963,0.000029325905],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020061452,0.0001735961,0.00015332157,0.0007855094,0.0002616392,0.0004307244,0.00047803496,0.000281412,0.00051291625],"category_scores_gemma":[0.0004184894,0.00018770057,0.00011817067,0.0008614201,0.00017860599,0.00036838677,0.0004051431,0.00028965916,0.00012435253],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0004968724,0.00015552797,0.8012267,0.00008735694,0.00015464281,0.00037517454,0.0024074225,0.005594255,0.12878603,0.0013488784,0.0021932703,0.05717388],"study_design_scores_gemma":[0.000029530616,0.00010066838,0.978412,0.00002097484,0.000032950822,0.00012651294,0.0005495238,0.009573159,0.0065773,0.00014831751,0.004411713,0.000017372939],"about_ca_topic_score_codex":0.04949324,"about_ca_topic_score_gemma":0.11479724,"teacher_disagreement_score":0.04949324,"about_ca_system_score_codex":0.00053646223,"about_ca_system_score_gemma":0.0003361662,"threshold_uncertainty_score":0.09841037},"labels":[],"label_agreement":null},{"id":"W3034667394","doi":"","title":"Evaluation of shale gas potential based on organic matter characteristics and gas concentration in the Devonian Horn River Formation, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Shale gas; Devonian; Petroleum engineering; Organic matter; French horn; Oil shale; Geology; Natural gas; Environmental science; Geochemistry; Chemistry; Paleontology; Physics","score_opus":0.011605943960762678,"score_gpt":0.21526707099102735,"score_spread":0.20366112703026468,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034667394","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99874675,0.00005531542,0.00006945311,0.000008357339,6.3240486e-7,0.000008089712,0.00030035136,0.0000037132254,0.0008074008],"genre_scores_gemma":[0.9988387,0.000056293386,0.00013145909,0.000004579093,2.861548e-7,0.0000031425516,0.00023367608,0.0000021760802,0.000729715],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99968565,0.000020460351,0.00001846085,0.00004864844,0.0001309894,0.00009578153],"domain_scores_gemma":[0.99953806,0.000040713912,0.000030162813,0.0000088433835,0.00030388933,0.00007840002],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003107666,0.0003009464,0.00027738968,0.0014045627,0.0014058809,0.0012864365,0.00058986933,0.00026136969,0.0006089003],"category_scores_gemma":[0.0006321146,0.00022114464,0.00027802566,0.0013277681,0.00071722793,0.00023924666,0.00052369904,0.00020827554,0.00013126065],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00026635118,0.00005691055,0.9729812,0.000043652228,0.000077805744,0.00042766848,0.00095362164,0.004108436,0.010846115,0.00026564163,0.00022002669,0.009752478],"study_design_scores_gemma":[0.000006369507,0.000036212063,0.9900608,0.000013436647,0.000026349486,0.000046122208,0.0016860132,0.0043856795,0.0028790173,0.000027605123,0.0008199598,0.000012508897],"about_ca_topic_score_codex":0.98507524,"about_ca_topic_score_gemma":0.99169266,"teacher_disagreement_score":0.014924765,"about_ca_system_score_codex":0.012593153,"about_ca_system_score_gemma":0.010269262,"threshold_uncertainty_score":0.091370106},"labels":[],"label_agreement":null},{"id":"W3034799598","doi":"","title":"Anatomy of amphibolite facies strain gradients in granitoids of the Grenville Front Tectonic Zone, Ontario, Canada","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Metamorphic facies; Tectonics; Front (military); Strain (injury); Shear zone; Geochemistry; Seismology; Geomorphology; Facies; Anatomy; Medicine","score_opus":0.008095467602379336,"score_gpt":0.18659100001296744,"score_spread":0.1784955324105881,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034799598","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9725184,0.0015629715,0.0007323384,0.00009143014,0.00000764836,0.00004521353,0.0017628673,0.000047483663,0.02323161],"genre_scores_gemma":[0.9907761,0.000516814,0.00061442715,0.000018735887,0.0000012858143,0.00001080647,0.00035142255,0.000019690417,0.007690645],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998154,0.0000064207584,0.0000074098252,0.00004279761,0.00006568858,0.00006239963],"domain_scores_gemma":[0.9995664,0.000028129869,0.000061220075,0.000011490478,0.00027944188,0.000053293825],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015296337,0.0001929328,0.00025081323,0.0028567323,0.0024736149,0.0015308813,0.0004196419,0.0002470526,0.0045463727],"category_scores_gemma":[0.0004207334,0.00036285078,0.0001565029,0.002674897,0.0012608927,0.00021793183,0.0006492006,0.00024423373,0.0006674058],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006797149,0.00003326156,0.8113015,0.00036087545,0.00014317337,0.00072424376,0.013545787,0.0019454916,0.060374405,0.005706482,0.0025107742,0.102674246],"study_design_scores_gemma":[0.0000025768725,0.000009503649,0.9947843,0.00003482509,0.000008876525,0.00012241994,0.0014875479,0.00014993556,0.00035375246,0.00009074991,0.002948307,0.000007150031],"about_ca_topic_score_codex":0.9645982,"about_ca_topic_score_gemma":0.99478686,"teacher_disagreement_score":0.03540182,"about_ca_system_score_codex":0.008796345,"about_ca_system_score_gemma":0.00785751,"threshold_uncertainty_score":0.07122058},"labels":[],"label_agreement":null},{"id":"W3034877604","doi":"","title":"Time-dependent snow-cover mapping algorithm adapted to regional conditions over Eastern Canada using NOAA-AVHRR data","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Snow cover; Remote sensing; Snow; Cover (algebra); Meteorology; Advanced very-high-resolution radiometer; Algorithm; Climatology; Environmental science; Computer science; Geography; Geology; Satellite","score_opus":0.07734069869323523,"score_gpt":0.25520786300516707,"score_spread":0.17786716431193184,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3034877604","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.6669887,0.00040899284,0.30495664,0.0002861549,0.0002118212,0.00042021714,0.00775067,0.0109013505,0.008075447],"genre_scores_gemma":[0.6343841,0.00025554193,0.34234384,0.00008307648,0.000034138608,0.00020252158,0.010381873,0.0003017758,0.012013155],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9999045,0.0000036344413,0.00000476234,0.00003277258,0.00002884394,0.000025411708],"domain_scores_gemma":[0.99974686,0.000012985812,0.000009599814,0.000011001299,0.00020228881,0.000017219638],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024024074,0.0005351617,0.00035486574,0.0010681521,0.00080773945,0.0005377403,0.0010505579,0.00037197326,0.0019110198],"category_scores_gemma":[0.0005111268,0.0002534225,0.00036756782,0.0011373152,0.00017536125,0.00021301162,0.00031821668,0.00038231976,0.00069333974],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035350194,0.00027043014,0.045182448,0.00012572188,0.0002711319,0.000332875,0.00028445612,0.3496442,0.056496836,0.0013200097,0.018402807,0.52731556],"study_design_scores_gemma":[0.000053460484,0.000014873939,0.026375096,0.000007484188,0.000060703696,0.00003916385,0.000090198366,0.96635014,0.0043239486,0.00019043709,0.002472055,0.000022515702],"about_ca_topic_score_codex":0.8151199,"about_ca_topic_score_gemma":0.8754652,"teacher_disagreement_score":0.18488008,"about_ca_system_score_codex":0.002093697,"about_ca_system_score_gemma":0.006828827,"threshold_uncertainty_score":0.3719377},"labels":[],"label_agreement":null},{"id":"W3035020778","doi":"","title":"Accounting for pothole associated non-contributing area in the Canadian Land Surface Scheme","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geotechnical Engineering and Analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Pothole (geology); Environmental science; Geography; Geology","score_opus":0.010835453569995504,"score_gpt":0.21624988327744712,"score_spread":0.2054144297074516,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3035020778","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96514624,0.00044588465,0.005903076,0.0006971215,0.00009015612,0.00013194964,0.008625608,0.00019710226,0.018762898],"genre_scores_gemma":[0.9869609,0.00028407082,0.0026911835,0.00004460692,0.000010262332,0.000021912127,0.0025078692,0.000037857943,0.0074413503],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9988418,0.00009529214,0.000043270287,0.00012337882,0.00049686356,0.00039942464],"domain_scores_gemma":[0.99757415,0.0001703299,0.00015857804,0.00015506556,0.001724255,0.00021775224],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00081355375,0.0004212405,0.00034798635,0.0017564963,0.0010808221,0.0017174972,0.0014671044,0.0004627615,0.002409329],"category_scores_gemma":[0.0040926207,0.00022164831,0.00066826376,0.0035353855,0.000471737,0.000928269,0.0007318106,0.0006737226,0.0002635658],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029683273,0.00015594308,0.65789104,0.00022245903,0.0003461638,0.00060783105,0.0006061856,0.21086438,0.004104187,0.026973771,0.016528765,0.081402525],"study_design_scores_gemma":[0.000024086707,0.00003329003,0.70050114,0.00007643461,0.00017930876,0.000088008346,0.00143854,0.26696646,0.002098502,0.0020979007,0.026443109,0.000053053784],"about_ca_topic_score_codex":0.985473,"about_ca_topic_score_gemma":0.9933941,"teacher_disagreement_score":0.02182701,"about_ca_system_score_codex":0.02182701,"about_ca_system_score_gemma":0.032344468,"threshold_uncertainty_score":0.1583668},"labels":[],"label_agreement":null},{"id":"W3035166725","doi":"","title":"Mantle exhumation at magma-poor rifted margin: a competition between frictional shear zones and thermally weakened necking domains. Consequences on time of breakup at Galicia/Newfoundland margins.","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geophysical Studies Worldwide","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Breakup; Necking; Shear (geology); Mantle (geology); Overprinting; Margin (machine learning); Shear zone; Petrology; Seismology; Geophysics; Tectonics","score_opus":0.012091350587484612,"score_gpt":0.20188853296371226,"score_spread":0.18979718237622764,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3035166725","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965438,0.00020184406,0.000039929753,0.0002529088,0.0000033674748,0.000002538645,0.00023220814,0.0000052956702,0.0027180924],"genre_scores_gemma":[0.99951506,0.000038859784,0.000017358698,0.000017381723,0.0000011424357,7.859674e-7,0.00005840625,0.0000021463347,0.00034873388],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988365,0.000010311446,0.0000046623472,0.00002620894,0.000010813106,0.000064308646],"domain_scores_gemma":[0.99952877,0.000062264524,0.00015593317,0.000027176,0.000082179235,0.0001436288],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00028044992,0.00018513745,0.0002807185,0.0005322965,0.00075070624,0.0010468598,0.00059017184,0.00061632745,0.0058497833],"category_scores_gemma":[0.0010743529,0.00018909093,0.00015181283,0.000427213,0.0012638158,0.0006511112,0.0011297857,0.00035592334,0.00043929653],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021218534,0.00007628702,0.9201411,0.00011282869,0.00016125491,0.0015377545,0.0010700366,0.0042706276,0.04580681,0.0030714218,0.0013621184,0.020267982],"study_design_scores_gemma":[0.000014329408,0.000022595928,0.99801624,0.000006170706,0.00001693697,0.000050373998,0.0005149494,0.0004006386,0.000461053,0.0000965305,0.0003953033,0.000004883996],"about_ca_topic_score_codex":0.25579053,"about_ca_topic_score_gemma":0.3762791,"teacher_disagreement_score":0.25579053,"about_ca_system_score_codex":0.0038461885,"about_ca_system_score_gemma":0.0014019682,"threshold_uncertainty_score":0.50860333},"labels":[],"label_agreement":null},{"id":"W3035475824","doi":"","title":"Drivers of spatial heterogeneity of biological nitrogen fixation in northeastern Canadian boreal forest.","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Taiga; Boreal; Environmental science; Geography; Nitrogen fixation; Ecology; Forestry; Physical geography; Agroforestry; Nitrogen; Biology","score_opus":0.008650745452337828,"score_gpt":0.19639763020853754,"score_spread":0.18774688475619972,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3035475824","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99759513,0.0002583742,0.00016338329,0.00020550257,0.0000042579654,0.000005555394,0.0007375824,0.0000095257055,0.0010206918],"genre_scores_gemma":[0.9995388,0.000055968863,0.00007780644,0.000017052096,0.0000015428052,0.0000020620732,0.0001818918,0.0000022980144,0.00012258545],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9995728,0.000042564767,0.000021290209,0.00013560882,0.000052426454,0.00017527076],"domain_scores_gemma":[0.9988475,0.00019559258,0.00032086865,0.00006682042,0.00036205412,0.00020706486],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00053979544,0.0001556083,0.0002485875,0.0011028092,0.0011527509,0.0009110616,0.0005950366,0.00029440224,0.00094604125],"category_scores_gemma":[0.001723979,0.00017633743,0.00028730952,0.0014545012,0.000997619,0.0005089093,0.0006959842,0.00031933328,0.00005840901],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00004572634,0.000014894434,0.99218106,0.000020772066,0.00009695113,0.00008477238,0.0006845353,0.0009659259,0.0017507973,0.00054521754,0.00055982353,0.0030495278],"study_design_scores_gemma":[0.000001209881,0.0000021447363,0.9978643,0.0000038289154,0.000012586299,0.000023355044,0.00071393716,0.0008998867,0.000032540596,0.0000880538,0.00035183068,0.0000061987307],"about_ca_topic_score_codex":0.96463645,"about_ca_topic_score_gemma":0.98776233,"teacher_disagreement_score":0.035363555,"about_ca_system_score_codex":0.006651483,"about_ca_system_score_gemma":0.004928077,"threshold_uncertainty_score":0.07114357},"labels":[],"label_agreement":null},{"id":"W3035789468","doi":"","title":"Using in-field and remote sensing techniques for the monitoring of small-scale permafrost decline in Northern Quebec","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Scale (ratio); Remote sensing; Field (mathematics); Physical geography; Geography; Environmental science; Geology; Cartography; Oceanography","score_opus":0.048676671040318815,"score_gpt":0.28329209049511406,"score_spread":0.23461541945479525,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3035789468","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99395436,0.00026819212,0.0007035361,0.0001000836,0.0000083313125,0.000046854188,0.0017669606,0.00004125005,0.003110494],"genre_scores_gemma":[0.99557847,0.00011811988,0.0011521726,0.000043292515,0.000003907464,0.00002696255,0.0008388972,0.000008502481,0.0022296852],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99978644,0.000039171762,0.0000099827175,0.00005104714,0.000062115854,0.000051205894],"domain_scores_gemma":[0.9991555,0.00014281533,0.000119425495,0.000037673773,0.00044419078,0.00010038583],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00040833597,0.00025332998,0.00022972585,0.00094817637,0.0011177954,0.00074447185,0.00068741076,0.00027450596,0.001274228],"category_scores_gemma":[0.0008694846,0.00012265236,0.00013703361,0.0014685644,0.00037866263,0.0003430896,0.00023418786,0.0002946196,0.00013628964],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00021015394,0.00023445574,0.9122002,0.00008503077,0.00014507101,0.0002081303,0.0018444493,0.0035623813,0.011488436,0.00021813261,0.0025712564,0.06723225],"study_design_scores_gemma":[0.000009784408,0.0000194809,0.99356633,0.000010026598,0.00001561924,0.000022213604,0.00052012276,0.0032546276,0.000529491,0.000016456162,0.0020256536,0.0000103012435],"about_ca_topic_score_codex":0.9873596,"about_ca_topic_score_gemma":0.99506205,"teacher_disagreement_score":0.012640417,"about_ca_system_score_codex":0.009344482,"about_ca_system_score_gemma":0.004623958,"threshold_uncertainty_score":0.06779933},"labels":[],"label_agreement":null},{"id":"W3036045001","doi":"","title":"Why the growth rate of sea-ice in the Barents-Kara Sea is slower than the Labrador Sea?","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Arctic and Antarctic ice dynamics","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sea ice; Oceanography; Geology; Arctic ice pack; Antarctic sea ice; Seawater; Climatology","score_opus":0.010951707578855597,"score_gpt":0.2117939357671991,"score_spread":0.2008422281883435,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036045001","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9765623,0.0037988566,0.0005745182,0.011603179,0.00048555247,0.0000071404743,0.0006443703,0.000056954814,0.0062670824],"genre_scores_gemma":[0.9967535,0.0013953432,0.00019997398,0.0005576861,0.00015129431,0.0000033420326,0.0002104909,0.00003091876,0.00069745345],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99969995,0.000026457594,0.00002404112,0.00011187173,0.00004622091,0.00009140227],"domain_scores_gemma":[0.9985587,0.00028298632,0.0004432053,0.00008133567,0.00040463608,0.00022916863],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0008180907,0.00023116126,0.0004103379,0.00050854246,0.00044293885,0.002021297,0.0004978815,0.00082248665,0.0018501758],"category_scores_gemma":[0.004042443,0.00017206615,0.00037850457,0.0007910384,0.0009626123,0.001776192,0.0004079356,0.0008050227,0.0005269965],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00062226376,0.000047388407,0.9286531,0.00043612882,0.00036431622,0.00056678616,0.0013014028,0.0012974917,0.014923787,0.00563039,0.004831495,0.041325398],"study_design_scores_gemma":[0.000018881055,0.0000514888,0.98607254,0.000060134713,0.000056891902,0.00017342705,0.0028113744,0.00084738905,0.0012006406,0.003311285,0.005369528,0.000026287878],"about_ca_topic_score_codex":0.03583364,"about_ca_topic_score_gemma":0.029791959,"teacher_disagreement_score":0.03583364,"about_ca_system_score_codex":0.00068127335,"about_ca_system_score_gemma":0.0010326643,"threshold_uncertainty_score":0.07125008},"labels":[],"label_agreement":null},{"id":"W3036274989","doi":"","title":"Variability and pathways of Labrador Sea Water in the southern subpolar gyre of the North Atlantic","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ocean gyre; Oceanography; North Atlantic Deep Water; Gulf Stream; Deep water; Geology; Climatology; Fishery; Biology","score_opus":0.014695317482008972,"score_gpt":0.16760372060676157,"score_spread":0.1529084031247526,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036274989","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9993475,0.00006015199,0.000022203152,0.00004972789,0.0000017667363,0.0000012618472,0.00014496775,0.0000043980845,0.00036802873],"genre_scores_gemma":[0.9995409,0.00004357622,0.000026315196,0.000011168876,0.0000021607957,0.0000013341712,0.00016090981,0.0000023368698,0.00021132265],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999119,0.000019635836,0.000008522616,0.000024978464,0.000009651552,0.000025305702],"domain_scores_gemma":[0.9996056,0.00008296113,0.0001099458,0.000022702601,0.0000840443,0.00009477748],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00019722187,0.0001377627,0.00017669106,0.0006287915,0.00049979816,0.0009967752,0.00022135941,0.00023776967,0.0009528837],"category_scores_gemma":[0.00067296694,0.00017656424,0.00022832178,0.00069622137,0.00038687745,0.00036539734,0.00042754118,0.00020977105,0.00015950897],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00014424669,0.000017910605,0.9942555,0.000009192574,0.000055998,0.00006626883,0.0007074536,0.00040788145,0.0015289051,0.00015812574,0.00018479879,0.002463782],"study_design_scores_gemma":[0.000003875719,0.000008217811,0.9986733,0.0000034607795,0.00001112955,0.000014964426,0.00034954184,0.0005643087,0.000055048815,0.000032577478,0.0002801281,0.0000035216342],"about_ca_topic_score_codex":0.27540046,"about_ca_topic_score_gemma":0.41315287,"teacher_disagreement_score":0.27540046,"about_ca_system_score_codex":0.0011315035,"about_ca_system_score_gemma":0.00072812184,"threshold_uncertainty_score":0.5475949},"labels":[],"label_agreement":null},{"id":"W3036304007","doi":"","title":"Geochemistry and zircon U-Pb geochronology of granitoids in the East Kunlun Orogenic Belt, northern Tibetan Plateau: origin and tectonic implications","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University","funders":"","keywords":"Zircon; Geology; Pluton; Biotite; Geochemistry; Geochronology; Plateau (mathematics); Partial melting; Tectonics; Crust; Quartz; Petrology; Paleontology","score_opus":0.016842816546332746,"score_gpt":0.22140425789015866,"score_spread":0.20456144134382592,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036304007","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99917704,0.0001862087,0.00003604323,0.0000071520776,8.297516e-7,0.0000019406934,0.0000900887,0.0000068640365,0.00049380906],"genre_scores_gemma":[0.999137,0.0001332235,0.00008036969,0.0000047767808,0.0000017867579,0.0000033085614,0.00020638981,0.000003670191,0.00042949783],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999435,0.0000062151607,0.000005507771,0.000018420094,0.000010388859,0.000015980655],"domain_scores_gemma":[0.99993086,0.000004990102,0.00002749951,0.0000045187962,0.00001882268,0.000013300887],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017739668,0.0002465486,0.00016695306,0.0018444458,0.0005689594,0.00075371185,0.00022871156,0.00022482328,0.0008579231],"category_scores_gemma":[0.00015068159,0.00015645126,0.00015026478,0.0017456533,0.00036823982,0.0002004176,0.00032419158,0.000108029984,0.00016127845],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003714674,0.000027530868,0.95086056,0.000083950355,0.00006778392,0.00044469428,0.0014337614,0.0004439108,0.0346407,0.000101730104,0.000062954685,0.011460896],"study_design_scores_gemma":[0.000004354346,0.000019271714,0.99885964,0.0000051253437,0.000008417077,0.000060017104,0.00035029423,0.000109632965,0.0002621112,0.000018248425,0.00030086955,0.0000018962126],"about_ca_topic_score_codex":0.037833896,"about_ca_topic_score_gemma":0.057541747,"teacher_disagreement_score":0.037833896,"about_ca_system_score_codex":0.00075606134,"about_ca_system_score_gemma":0.0003011588,"threshold_uncertainty_score":0.07522738},"labels":[],"label_agreement":null},{"id":"W3036595088","doi":"","title":"Choking Lake Winnipeg: A Documentary Web Based Education Program","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Participatory Visual Research Methods","field":"Social Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Choking; Medicine","score_opus":0.3272880437178417,"score_gpt":0.6340986984616,"score_spread":0.30681065474375835,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3036595088","genre_codex":"other","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":"other","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.4340798,0.000712163,0.01105985,0.013499807,0.0008393399,0.010382213,0.011717303,0.0032315815,0.5144779],"genre_scores_gemma":[0.38869226,0.00045255973,0.032444045,0.001321721,0.000056074095,0.002326978,0.0028582287,0.0008420172,0.5710062],"study_design_codex":"design_other","study_design_gemma":"not_applicable","domain_scores_codex":[0.99942076,0.00016515872,0.000013045391,0.00007987506,0.00018296842,0.00013823315],"domain_scores_gemma":[0.99816763,0.0002142297,0.00005168478,0.00011467272,0.00053454784,0.0009172379],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0011580648,0.00024150964,0.00014796991,0.0008365956,0.0041685514,0.001622746,0.000995929,0.00046844684,0.059080362],"category_scores_gemma":[0.0027290585,0.0002716351,0.000104900275,0.0012065857,0.0005833405,0.00056393567,0.0016924387,0.00060084386,0.0033579615],"study_design_candidate":"not_applicable","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014216588,0.0021660202,0.021534938,0.000907903,0.000036323203,0.0020283845,0.027183136,0.0011220791,0.022202738,0.013325062,0.31603628,0.5920354],"study_design_scores_gemma":[0.00027285807,0.0003880655,0.06341368,0.00012529027,0.00002889351,0.0001573961,0.012634728,0.0009358,0.0026574759,0.0006865207,0.91866857,0.000030842344],"about_ca_topic_score_codex":0.6705158,"about_ca_topic_score_gemma":0.89277685,"teacher_disagreement_score":0.32948422,"about_ca_system_score_codex":0.005554648,"about_ca_system_score_gemma":0.03781752,"threshold_uncertainty_score":0.6628492},"labels":[],"label_agreement":null},{"id":"W3037234416","doi":"","title":"Boundary|Time|Surface: Art and Geology Meet in Gros Morne National Park, NL, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Archaeological Research and Protection","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"National park; Archaeology; Geology; Boundary (topology); Geography; Physical geography; Mathematics","score_opus":0.028501983097155608,"score_gpt":0.23623519615130978,"score_spread":0.20773321305415418,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3037234416","genre_codex":"other","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.14967309,0.03650498,0.001898259,0.09985621,0.0049687857,0.0002486135,0.014436306,0.0007960405,0.6916177],"genre_scores_gemma":[0.100831434,0.0038011742,0.0011371811,0.0013535633,0.00017338716,0.000045101868,0.0013433603,0.0002484102,0.8910665],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9991417,0.000050605013,0.000018122686,0.00010270875,0.00036690957,0.0003198601],"domain_scores_gemma":[0.99834514,0.000102536666,0.00004722175,0.000031928565,0.00061205926,0.00086106674],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0007164177,0.00033623847,0.00043595937,0.0012391248,0.022370616,0.00515113,0.0010979756,0.0016733388,0.07663547],"category_scores_gemma":[0.0011346678,0.00045614652,0.0002314078,0.0021482327,0.0024526007,0.001849005,0.0037714164,0.0019172572,0.008551027],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00010308497,0.000047848614,0.015350069,0.00015703852,0.000007647809,0.0005123613,0.01355325,0.0001874761,0.0009323447,0.0069070403,0.8653383,0.09690351],"study_design_scores_gemma":[0.0000033919105,0.000009624809,0.034504034,0.0001185177,0.000003284907,0.00007711983,0.028123818,0.000093615476,0.00017776655,0.00044667497,0.9364229,0.000019323474],"about_ca_topic_score_codex":0.97338235,"about_ca_topic_score_gemma":0.9980081,"teacher_disagreement_score":0.07663547,"about_ca_system_score_codex":0.022089314,"about_ca_system_score_gemma":0.06318509,"threshold_uncertainty_score":0.2563712},"labels":[],"label_agreement":null},{"id":"W3037599497","doi":"","title":"Tectonic overprint on magnetic fabric of the Ordovician Thetford Mines Ophiolite (Canada)","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Mineralogy and Gemology Studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ophiolite; Geology; Ordovician; Tectonics; Paleomagnetism; Paleontology; Mining engineering; Geochemistry","score_opus":0.01159649685993673,"score_gpt":0.19968457801051084,"score_spread":0.18808808115057413,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3037599497","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99624807,0.00013161213,0.000037473554,0.000059864182,0.000002032917,0.0000027656904,0.00043905698,0.000004924535,0.0030742278],"genre_scores_gemma":[0.9987914,0.00007977492,0.000030794152,0.000009322777,9.769716e-7,8.773367e-7,0.00018378747,0.0000053601702,0.0008977089],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997882,0.000014269272,0.000011203647,0.000035353587,0.000044431883,0.000106493586],"domain_scores_gemma":[0.99927515,0.00005952427,0.00012212609,0.000025936464,0.00037518708,0.00014206326],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021946966,0.00020461631,0.00019577566,0.0021374584,0.0013731297,0.0012375,0.00046327457,0.00023125538,0.003794764],"category_scores_gemma":[0.0009848638,0.00017850994,0.00015142914,0.0026100965,0.001052153,0.00030446146,0.0007729082,0.0002582353,0.0003443957],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002095807,0.000018463928,0.96786815,0.00004644581,0.000055052762,0.00027002883,0.0042726537,0.0006332055,0.009011371,0.001064964,0.0006492455,0.01590082],"study_design_scores_gemma":[0.0000016750463,0.0000032233,0.99754494,0.000012381024,0.0000068893237,0.000026902428,0.0013514664,0.00013246966,0.00012537146,0.000027233333,0.00076463004,0.0000027505266],"about_ca_topic_score_codex":0.97044384,"about_ca_topic_score_gemma":0.9909717,"teacher_disagreement_score":0.029556155,"about_ca_system_score_codex":0.008476538,"about_ca_system_score_gemma":0.008541968,"threshold_uncertainty_score":0.06150192},"labels":[],"label_agreement":null},{"id":"W3040711021","doi":"","title":"Assessing past and present P Retention in Sediments in Lake Ontario (Bay of Quinte) by Reaction-Transport Diagenetic Modeling","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Diagenesis; Bay; Geology; Oceanography; Environmental science; Hydrology (agriculture); Geochemistry; Geotechnical engineering","score_opus":0.014081996849080255,"score_gpt":0.21940627263108273,"score_spread":0.20532427578200246,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3040711021","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99872893,0.000045126435,0.00059532886,0.00004375381,0.0000013789003,0.000008313929,0.00013492235,0.000022274047,0.00041993588],"genre_scores_gemma":[0.99891305,0.000041205705,0.0006138067,0.0000078892535,7.0169045e-7,0.000006558541,0.00009292201,0.0000037547231,0.00032008957],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99987936,0.000020459944,0.000011123476,0.000042145468,0.000021741458,0.000025210553],"domain_scores_gemma":[0.9997353,0.00009973658,0.00004930567,0.000012795754,0.000067803834,0.00003504143],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00042723314,0.0003523086,0.00019270537,0.00033561463,0.00089414645,0.0009191118,0.0008843636,0.000654062,0.00047078019],"category_scores_gemma":[0.0011228187,0.0002955663,0.0003976291,0.00036967103,0.0004251457,0.0006083916,0.00042580074,0.00023261318,0.00006634455],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00035674003,0.00015919626,0.49795172,0.0001368998,0.00023377115,0.00023336174,0.0012628856,0.4633228,0.015598694,0.00058688293,0.00048748634,0.019669663],"study_design_scores_gemma":[0.000071340284,0.00015112579,0.24295637,0.000013984949,0.00012328094,0.000027424661,0.00073391496,0.7511031,0.0033087556,0.0004459676,0.001023482,0.00004121887],"about_ca_topic_score_codex":0.9028673,"about_ca_topic_score_gemma":0.92833483,"teacher_disagreement_score":0.09713268,"about_ca_system_score_codex":0.00847397,"about_ca_system_score_gemma":0.00498075,"threshold_uncertainty_score":0.19540936},"labels":[],"label_agreement":null},{"id":"W3040770432","doi":"","title":"A hydrologically explicit, spatially exact, classification of landforms for Canada at 1:500,000 scale.","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Image Processing and 3D Reconstruction","field":"Computer Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Landform; Scale (ratio); Geology; Geography; Physical geography; Geomorphology; Cartography","score_opus":0.013308417180445559,"score_gpt":0.21411045611545493,"score_spread":0.20080203893500936,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3040770432","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.77333546,0.0009694841,0.05475938,0.0014058067,0.00010936167,0.00045175428,0.14007929,0.007332944,0.021556515],"genre_scores_gemma":[0.8551316,0.00042674673,0.08120008,0.000112633476,0.000013770646,0.00010180866,0.053742792,0.00040215682,0.0088683665],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.9998252,0.000008301271,0.0000063865973,0.000034068304,0.00007448557,0.000051527524],"domain_scores_gemma":[0.99953806,0.000019311656,0.000022340575,0.000044414202,0.0003178337,0.00005811656],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002057954,0.00036356496,0.00024074246,0.0015328396,0.0011294612,0.0008854264,0.0008607587,0.0003792766,0.0038614005],"category_scores_gemma":[0.0010457669,0.00029195345,0.00039325567,0.002404049,0.00032786425,0.0005295688,0.0007250189,0.00050542643,0.0010878977],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000509097,0.00056479604,0.25066623,0.0003013721,0.00023230503,0.000359272,0.00076333975,0.11126059,0.020801008,0.006505926,0.105904385,0.50213176],"study_design_scores_gemma":[0.00013195905,0.000040717736,0.59224135,0.00010537059,0.000112511276,0.00014323431,0.001517728,0.3397329,0.008061731,0.0024508801,0.055334967,0.00012669446],"about_ca_topic_score_codex":0.9835871,"about_ca_topic_score_gemma":0.9914585,"teacher_disagreement_score":0.016412914,"about_ca_system_score_codex":0.0056183445,"about_ca_system_score_gemma":0.015323519,"threshold_uncertainty_score":0.040764153},"labels":[],"label_agreement":null},{"id":"W3040798148","doi":"","title":"The Canadian Arctic ACE/OSIRIS Validation Project at PEARL: Validating Satellite Observations Over the High Arctic","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Pearl; Arctic; Osiris; Satellite; Environmental science; The arctic; Remote sensing; Geography; Climatology; Meteorology; Oceanography; Geology; Engineering; Archaeology","score_opus":0.01909871109361689,"score_gpt":0.21822880887345644,"score_spread":0.19913009777983956,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3040798148","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.8315511,0.0013071824,0.027352354,0.0019380188,0.000706736,0.0005019906,0.102368854,0.0044421596,0.029831784],"genre_scores_gemma":[0.85168236,0.00065242784,0.05200298,0.00090581115,0.00009851865,0.00025791329,0.08355264,0.0014558134,0.009391602],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9976579,0.00032704326,0.00007218746,0.00030460826,0.0012897438,0.00034844034],"domain_scores_gemma":[0.9939109,0.00035534095,0.00022173476,0.00058417994,0.0044627604,0.00046515936],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0061698044,0.00117,0.00079783687,0.0012097999,0.0047810297,0.0021239896,0.0021197705,0.0010288385,0.0012069346],"category_scores_gemma":[0.0053580333,0.0005503356,0.0007522208,0.00258052,0.0008512776,0.0012327366,0.0012652568,0.0012051729,0.00077984895],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0021763532,0.0013203563,0.4404119,0.00056787056,0.0014655677,0.0007196097,0.0018962554,0.18031108,0.03481743,0.0040768045,0.16217233,0.17006443],"study_design_scores_gemma":[0.0008295765,0.00015286422,0.6820154,0.00024555277,0.0004610996,0.00012281064,0.0015126504,0.21321826,0.02624933,0.00095698814,0.073896825,0.00033872033],"about_ca_topic_score_codex":0.97405946,"about_ca_topic_score_gemma":0.98165524,"teacher_disagreement_score":0.025940537,"about_ca_system_score_codex":0.0074419035,"about_ca_system_score_gemma":0.02888978,"threshold_uncertainty_score":0.053995073},"labels":[],"label_agreement":null},{"id":"W3040910218","doi":"","title":"Mechanism of microearthquakes within the Cigar Lake mine, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Mechanism (biology)","score_opus":0.007912606645418012,"score_gpt":0.18299627201194624,"score_spread":0.17508366536652822,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3040910218","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98634887,0.00016157932,0.00056454894,0.00033629933,0.000013391058,0.000050811046,0.0001628831,0.00002803474,0.012333474],"genre_scores_gemma":[0.9948645,0.00009724311,0.00017052103,0.000023364244,0.000001510639,0.000006761548,0.00003918533,0.0000037095517,0.0047932025],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982125,0.0000045492848,0.0000036787867,0.00002063511,0.000046116173,0.00010374922],"domain_scores_gemma":[0.99975127,0.000014457054,0.000027076956,0.000014797212,0.0001519841,0.00004048021],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013732858,0.00022141259,0.00023527844,0.0009511776,0.0034351235,0.0012479436,0.0011795167,0.0007939394,0.0043203044],"category_scores_gemma":[0.00040792002,0.00025306057,0.00019669716,0.0006662961,0.0011677936,0.00037155647,0.0009774067,0.00041011366,0.00031164454],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00097209314,0.00030335065,0.72101945,0.0003026098,0.00018761751,0.0058806646,0.007169095,0.025506444,0.15092078,0.026493514,0.008162517,0.053081788],"study_design_scores_gemma":[0.000059382328,0.00014436396,0.93706,0.00006226135,0.00006992879,0.0005221528,0.018569421,0.016408527,0.01119231,0.002450125,0.013408497,0.00005302296],"about_ca_topic_score_codex":0.8702975,"about_ca_topic_score_gemma":0.9208375,"teacher_disagreement_score":0.12970251,"about_ca_system_score_codex":0.0068846866,"about_ca_system_score_gemma":0.0050434326,"threshold_uncertainty_score":0.26093268},"labels":[],"label_agreement":null},{"id":"W3041104221","doi":"","title":"Validation of the fifth-generation of the Canadian Regional Climate Model (CRCM5) over West-Asia CORDEX domain","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate variability and models","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climatology; Climate model; Geography; Domain (mathematical analysis); Climate change; Environmental science; Physical geography; Geology; Mathematics; Oceanography","score_opus":0.03145702522630544,"score_gpt":0.22604990105838352,"score_spread":0.19459287583207807,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041104221","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9653456,0.0003133717,0.0054072584,0.0005961787,0.00023899549,0.000104922154,0.011889267,0.002632134,0.013472342],"genre_scores_gemma":[0.9849798,0.00007066249,0.0050390693,0.000109627224,0.00001542577,0.000036939342,0.008261272,0.00016693296,0.0013202311],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99942917,0.00010007222,0.000035345336,0.00015438002,0.00013921385,0.00014182739],"domain_scores_gemma":[0.998387,0.00020127061,0.00006677617,0.00022874711,0.00088488916,0.00023133142],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0017052817,0.0010611947,0.00066924014,0.0007173284,0.0017319741,0.0014056326,0.002686351,0.0011965699,0.002837431],"category_scores_gemma":[0.0038424565,0.0003976166,0.0007931424,0.000844865,0.000711022,0.0009491674,0.00083591265,0.001181803,0.0006548411],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00050552527,0.0003007067,0.045597956,0.00011641905,0.0002846502,0.00018794286,0.00015774932,0.91969025,0.0047412524,0.0018172695,0.009179739,0.017420467],"study_design_scores_gemma":[0.00020004985,0.000060443388,0.031907268,0.000026708794,0.000068464884,0.000022038275,0.00009989036,0.95998806,0.003640938,0.00022565774,0.0037067295,0.000053703658],"about_ca_topic_score_codex":0.9040582,"about_ca_topic_score_gemma":0.86141115,"teacher_disagreement_score":0.9040582,"about_ca_system_score_codex":0.0069356686,"about_ca_system_score_gemma":0.010750081,"threshold_uncertainty_score":0.19301355},"labels":[],"label_agreement":null},{"id":"W3041193800","doi":"","title":"Sensitivity of the subpolar Atlantic climate to local winds","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Environment and Climate Change Canada","funders":"","keywords":"North Atlantic Deep Water; Oceanography; Thermohaline circulation; Shutdown of thermohaline circulation; Climatology; Atlantic Equatorial mode; Geology; Wind stress; Gulf Stream; North Atlantic oscillation; Arctic; Atlantic multidecadal oscillation","score_opus":0.00501742421465321,"score_gpt":0.18480118001999055,"score_spread":0.17978375580533734,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041193800","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9967548,0.00018329085,0.0001792896,0.00008477016,0.00001214364,0.0000078951925,0.00072573626,0.00001905437,0.0020328881],"genre_scores_gemma":[0.99923253,0.000086223285,0.0000321273,0.000027740403,0.0000066381253,0.000001925514,0.00044042643,0.0000043514915,0.0001680157],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999905,0.00002108802,0.0000054301827,0.00003172263,0.000013383337,0.000023364517],"domain_scores_gemma":[0.9993974,0.00017470418,0.00015408975,0.000072032635,0.00009700874,0.00010485476],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022947717,0.00013247556,0.00021873787,0.00023612141,0.00021309551,0.00062595995,0.00013902904,0.00024536037,0.001782373],"category_scores_gemma":[0.0010630914,0.00012428958,0.00014065692,0.00032255426,0.00015109654,0.00020124656,0.0002840014,0.00022783922,0.00027355182],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003768417,0.000059935606,0.94311035,0.00004400441,0.00023868392,0.00027110605,0.00017726861,0.01948677,0.026187276,0.00031619606,0.0014675742,0.008263877],"study_design_scores_gemma":[0.000008278012,0.000029467794,0.9934662,0.0000052257924,0.000021061793,0.00003771775,0.00010346167,0.0050684162,0.00066604523,0.00013678995,0.00045015052,0.000007085874],"about_ca_topic_score_codex":0.025006045,"about_ca_topic_score_gemma":0.02402142,"teacher_disagreement_score":0.025006045,"about_ca_system_score_codex":0.00031652924,"about_ca_system_score_gemma":0.0001508157,"threshold_uncertainty_score":0.049721003},"labels":[],"label_agreement":null},{"id":"W3041246324","doi":"","title":"U-Pb geochronology and paleomagnetism of the Neoproterozoic St Simeon dolerite dykes, Quebec: an eastern Laurentian perspective of Ediacaran Rodinia breakup","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Rodinia; Geochronology; Geology; Laurentia; Paleomagnetism; Breakup; Supercontinent; Mesozoic; Paleontology; Archean; Laurasia; Perspective (graphical); Rift; Pangaea; Geochemistry; Paleozoic; Tectonics; Structural basin; Craton","score_opus":0.005502688044187327,"score_gpt":0.1792445843494999,"score_spread":0.1737418963053126,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041246324","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97478616,0.0017434425,0.00044359482,0.0004913968,0.000008968821,0.00001692256,0.0020713906,0.00003627291,0.020401811],"genre_scores_gemma":[0.9934043,0.0004853112,0.0002353787,0.000042007734,0.000002837022,0.0000039447696,0.0003884443,0.000013232548,0.0054244827],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99990666,0.0000071130294,0.0000050971425,0.000024294666,0.000020362551,0.00003645073],"domain_scores_gemma":[0.99972206,0.000017517936,0.000036549533,0.0000114450395,0.00018258442,0.000029786992],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022299713,0.00022493649,0.00016870325,0.0017914191,0.0017959304,0.0012262511,0.00055173115,0.00022454264,0.0041224607],"category_scores_gemma":[0.00064680655,0.00016991016,0.00014313684,0.002902371,0.00080100045,0.00047015055,0.00042833397,0.00030734667,0.00027238304],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00040708957,0.00004731195,0.87928724,0.00013129781,0.000117242686,0.00059647084,0.007343216,0.00513418,0.009669779,0.010443198,0.0037112494,0.0831118],"study_design_scores_gemma":[0.0000065884583,0.000007785232,0.98746115,0.00002968579,0.000018121018,0.000058828566,0.0011340071,0.0010515183,0.00055923493,0.00016426705,0.009500441,0.000008345503],"about_ca_topic_score_codex":0.99370295,"about_ca_topic_score_gemma":0.9979007,"teacher_disagreement_score":0.025126284,"about_ca_system_score_codex":0.025126284,"about_ca_system_score_gemma":0.010006553,"threshold_uncertainty_score":0.1823048},"labels":[],"label_agreement":null},{"id":"W3041317423","doi":"","title":"Solid precipitation estimation during summer snowfall events at a coastal site of the Terra Nova bay area, Antarctica","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Bay; Snow; Nova (rocket); Precipitation; Climatology; Environmental science; Oceanography; Nova scotia; Meteorology; Geography; Physical geography; Geology","score_opus":0.03682888674791489,"score_gpt":0.2743025287561092,"score_spread":0.23747364200819432,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041317423","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985411,0.000039832557,0.00014940464,0.000021693711,0.0000056143426,0.0000036027245,0.00093178824,0.000015588837,0.00029143805],"genre_scores_gemma":[0.9973226,0.000048018865,0.00058547675,0.0000072468883,0.0000068314826,0.0000049872347,0.0017255341,0.000005561132,0.00029371868],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999082,0.000018869956,0.000010294327,0.000022340113,0.000021745383,0.000018666486],"domain_scores_gemma":[0.99972695,0.000037048674,0.000058521735,0.000029153867,0.00008509789,0.00006318657],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023378269,0.00039728885,0.0002717667,0.0010546885,0.0006030116,0.0006045212,0.0004304059,0.00031726915,0.0005637739],"category_scores_gemma":[0.00043788945,0.00016223427,0.00028110415,0.0010240029,0.00022214107,0.00025061314,0.00039244207,0.00016628484,0.00017890256],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00033031724,0.0000728136,0.9707089,0.00004416006,0.00013572272,0.00042401807,0.00045491362,0.008239799,0.006739111,0.000053605992,0.0009882621,0.0118084615],"study_design_scores_gemma":[0.000013359118,0.000024767694,0.9902244,0.0000054516636,0.00002431073,0.00004743718,0.00040883952,0.008294798,0.00052700064,0.000019955016,0.00040377188,0.000005798386],"about_ca_topic_score_codex":0.10898687,"about_ca_topic_score_gemma":0.20210569,"teacher_disagreement_score":0.10898687,"about_ca_system_score_codex":0.0004575664,"about_ca_system_score_gemma":0.0007128168,"threshold_uncertainty_score":0.21670496},"labels":[],"label_agreement":null},{"id":"W3041321023","doi":"","title":"Possible Impacts of Climate Change on Wind Gust under Downscaled Future Climate Conditions over Ontario, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Wind and Air Flow Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Climate change; Environmental science; Climatology; Meteorology; Geography; Geology; Oceanography","score_opus":0.007774510753036939,"score_gpt":0.22059365859560098,"score_spread":0.21281914784256403,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041321023","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9938454,0.00012183117,0.00012783236,0.0007336294,0.000019077332,0.0000098460705,0.0012191004,0.000008940062,0.003914361],"genre_scores_gemma":[0.99862695,0.00012883024,0.00007697796,0.00004429567,0.000005051697,0.0000026450666,0.00030465645,0.0000024375397,0.0008082157],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.999796,0.000018923123,0.000009393613,0.000026626802,0.00005660554,0.00009242235],"domain_scores_gemma":[0.9994129,0.00006664384,0.00006940432,0.00002047042,0.00034815297,0.000082427214],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00026787072,0.00014361013,0.00019740323,0.00030984447,0.0015154133,0.00114854,0.00039275587,0.00048722347,0.002078187],"category_scores_gemma":[0.0010997746,0.00017037803,0.00040766518,0.0007397425,0.00052735297,0.00053937396,0.0004166462,0.00043142276,0.00010087577],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00041874129,0.00005914963,0.96361035,0.00007017202,0.00012442577,0.0007281523,0.0016843172,0.016418628,0.0023449024,0.0011575486,0.003252318,0.0101311775],"study_design_scores_gemma":[0.000018533976,0.000014888123,0.98846996,0.000016022037,0.000030588555,0.000030368119,0.0016759766,0.0071115308,0.00016480098,0.0001432362,0.002303668,0.0000204724],"about_ca_topic_score_codex":0.988699,"about_ca_topic_score_gemma":0.9950228,"teacher_disagreement_score":0.015067843,"about_ca_system_score_codex":0.015067843,"about_ca_system_score_gemma":0.011061093,"threshold_uncertainty_score":0.10932541},"labels":[],"label_agreement":null},{"id":"W3041386861","doi":"","title":"Albedo of a hybrid poplar plantation in central Alberta, Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Bioenergy crop production and management","field":"Agricultural and Biological Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geography; Albedo (alchemy); Environmental science; Forestry; Agroforestry; Physical geography; History","score_opus":0.008018560002915991,"score_gpt":0.17266181516204185,"score_spread":0.16464325515912587,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041386861","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9970196,0.000074005045,0.000075750635,0.00006167287,0.0000042992706,0.000009324504,0.00028207517,0.000011647441,0.0024616201],"genre_scores_gemma":[0.9957568,0.00004730166,0.000118100594,0.000024473262,9.738148e-7,0.0000026412654,0.00024115278,0.0000058499304,0.0038027766],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999806,0.0000140096045,0.0000030086376,0.00003295878,0.00006483507,0.000079269805],"domain_scores_gemma":[0.9997211,0.000018658897,0.000015903039,0.0000064631927,0.00014293338,0.00009501415],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014991614,0.00021459699,0.00031249603,0.0007310775,0.0028629208,0.0007761158,0.0005936991,0.00025379896,0.001453577],"category_scores_gemma":[0.00017325563,0.00014539655,0.00013716446,0.0008065619,0.0006236073,0.00014070372,0.00035049053,0.0003059402,0.00022900527],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0029214085,0.0007621487,0.7639266,0.00008972765,0.00015356323,0.0056018657,0.007703492,0.0035043582,0.15927532,0.00133179,0.007697929,0.047031797],"study_design_scores_gemma":[0.000011310147,0.00004748703,0.99019825,0.000006352282,0.000015470421,0.00019996389,0.0044138893,0.001280808,0.0015544248,0.00004214205,0.002214604,0.000015341218],"about_ca_topic_score_codex":0.98590267,"about_ca_topic_score_gemma":0.996671,"teacher_disagreement_score":0.016033525,"about_ca_system_score_codex":0.016033525,"about_ca_system_score_gemma":0.0065141465,"threshold_uncertainty_score":0.116331875},"labels":[],"label_agreement":null},{"id":"W3041434269","doi":"","title":"Long range correlations in daily atmospheric temperature time series in the Canadian Arctic: regional vs. local effects","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Series (stratigraphy); Environmental science; Range (aeronautics); Climatology; Arctic; Atmospheric temperature; Climate change; Atmospheric sciences; Physical geography; Geography; Geology; Oceanography","score_opus":0.0035804745274877806,"score_gpt":0.1769702044522932,"score_spread":0.17338972992480542,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041434269","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99396604,0.0011868569,0.00053413527,0.0008199953,0.00004096123,0.000006111228,0.0010073492,0.000050619066,0.002387933],"genre_scores_gemma":[0.99877626,0.00023265442,0.00008282474,0.000034559955,0.000012983254,0.0000015138995,0.00036547962,0.000010807643,0.00048296366],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993325,0.00008469099,0.000035006873,0.00018239373,0.00012751423,0.00023792166],"domain_scores_gemma":[0.99704945,0.0006657434,0.00034429424,0.00023453095,0.0012786742,0.00042720218],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0015051148,0.00034367546,0.0004127259,0.0010503328,0.0019450967,0.0015959743,0.0006958343,0.00056348945,0.0016180181],"category_scores_gemma":[0.0053196107,0.0002858325,0.0007293059,0.002367616,0.0010383129,0.0005905114,0.000867401,0.0007955017,0.00017047797],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018326059,0.00003305507,0.97136205,0.000041251194,0.0005095196,0.00025633548,0.0008639228,0.009205984,0.0015698514,0.0011177412,0.0027349624,0.012122025],"study_design_scores_gemma":[0.0000038728995,0.000005302837,0.99473417,0.000012766614,0.000085,0.00002135825,0.00048828154,0.0035397743,0.000119743185,0.00014445411,0.00082593295,0.000019366567],"about_ca_topic_score_codex":0.97765654,"about_ca_topic_score_gemma":0.9853968,"teacher_disagreement_score":0.022343457,"about_ca_system_score_codex":0.0063400567,"about_ca_system_score_gemma":0.011603534,"threshold_uncertainty_score":0.04600054},"labels":[],"label_agreement":null},{"id":"W3041529900","doi":"","title":"Remote Dynamic Earthquake Triggering in Shale Gas Basins in Canada and Implications for Triggering Mechanisms","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Shale gas; Oil shale; Seismology; Earth science; Paleontology","score_opus":0.019907185484786063,"score_gpt":0.23586267952930012,"score_spread":0.21595549404451406,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041529900","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9973653,0.00013419938,0.00003479518,0.000117215444,0.0000015854122,0.0000043412856,0.00024139954,0.0000034010113,0.0020977727],"genre_scores_gemma":[0.99915826,0.00011668136,0.00003769368,0.000013392385,0.0000013348832,0.0000013863907,0.00014373915,0.0000017350092,0.0005258953],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981874,0.000013471355,0.000009153398,0.000027367372,0.000035234938,0.00009593398],"domain_scores_gemma":[0.9993255,0.0000988644,0.00011241225,0.000024772926,0.0002838122,0.00015464485],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022580699,0.00016786598,0.00018867869,0.0013908234,0.002298229,0.0012160399,0.00061436155,0.00037569762,0.0024090735],"category_scores_gemma":[0.0014054967,0.00019413243,0.00014333913,0.001978577,0.0013211985,0.0005707121,0.0010107014,0.00035992375,0.00013564037],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001524964,0.0000555992,0.9715678,0.00005130251,0.00004652767,0.000593547,0.005951971,0.0020253197,0.002208519,0.00170536,0.0006736868,0.014967813],"study_design_scores_gemma":[0.0000056468502,0.000008663908,0.99137515,0.000022112212,0.000011348076,0.00005113552,0.006459748,0.0008184774,0.00013388113,0.00017768043,0.0009276448,0.000008488981],"about_ca_topic_score_codex":0.98673093,"about_ca_topic_score_gemma":0.9956892,"teacher_disagreement_score":0.016096635,"about_ca_system_score_codex":0.016096635,"about_ca_system_score_gemma":0.015393545,"threshold_uncertainty_score":0.11678982},"labels":[],"label_agreement":null},{"id":"W3041550553","doi":"","title":"Air quality over the Canadian oil sands as seen from space","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Oil Spill Detection and Mitigation","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Oil sands; Quality (philosophy); Space (punctuation); Air quality index; Environmental science; Geography; Meteorology; Archaeology; Computer science; Asphalt","score_opus":0.011854848762480628,"score_gpt":0.24663303497196765,"score_spread":0.234778186209487,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041550553","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98124987,0.00034916252,0.00013238478,0.0009791711,0.00003678444,0.000018884837,0.0017777788,0.000026262318,0.015429712],"genre_scores_gemma":[0.99676716,0.00018775093,0.00007941926,0.00007840527,0.000008312244,0.0000041827248,0.00039915915,0.0000045919933,0.0024708954],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99959713,0.000020244635,0.000008901929,0.00003826243,0.00016040925,0.000175052],"domain_scores_gemma":[0.9994505,0.000026896274,0.00005063142,0.0000107002625,0.0003343743,0.00012690641],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013423698,0.00020935624,0.000193309,0.0007477279,0.0025300619,0.0014265404,0.00041990363,0.0005280808,0.002631828],"category_scores_gemma":[0.00056686165,0.00015634598,0.00027368043,0.0015196733,0.0007848166,0.0003705987,0.00073789817,0.00060740084,0.0002323368],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00070632796,0.00014718759,0.9196503,0.0001554172,0.00013159293,0.0010322924,0.015562596,0.0026461133,0.011726433,0.0015426003,0.0127263935,0.03397265],"study_design_scores_gemma":[0.0000026729683,0.00001972771,0.98940617,0.000014013289,0.000012837017,0.000036859765,0.0058072335,0.0003246579,0.00025615018,0.00004021249,0.0040635164,0.000016075679],"about_ca_topic_score_codex":0.99213785,"about_ca_topic_score_gemma":0.99721056,"teacher_disagreement_score":0.014905768,"about_ca_system_score_codex":0.014905768,"about_ca_system_score_gemma":0.011941295,"threshold_uncertainty_score":0.10814941},"labels":[],"label_agreement":null},{"id":"W3041551854","doi":"","title":"Microthermometric behavior of crystal-rich inclusions in spodumene under confining pressure","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"High-Velocity Impact and Material Behavior","field":"Materials Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"St. Francis Xavier University","funders":"","keywords":"Spodumene; Geology; Mineralogy; Crystal (programming language); Inclusion (mineral); Overburden pressure; Geochemistry; Geotechnical engineering; Composite material; Materials science; Computer science","score_opus":0.01672834579485288,"score_gpt":0.27492289491741423,"score_spread":0.25819454912256135,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041551854","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9990433,0.00006426109,0.0002214737,0.000012598863,0.0000018196797,0.000001321475,0.00007078333,0.000011796367,0.00057260215],"genre_scores_gemma":[0.9994479,0.000019347886,0.00012208757,0.0000022430706,7.039595e-7,0.0000018492392,0.000050253515,0.0000036143283,0.00035200358],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.9998883,0.000007941295,0.000003928258,0.000028426071,0.000041078005,0.000030243991],"domain_scores_gemma":[0.9998591,0.00005297272,0.000029351117,0.000010870483,0.00003224124,0.00001559061],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000104433384,0.0001403695,0.00013143448,0.00025147793,0.00038009716,0.00027245082,0.00029164547,0.00022383533,0.0022188027],"category_scores_gemma":[0.00032190114,0.00013372455,0.000073773255,0.00023408247,0.00042679047,0.0003033289,0.00020626861,0.0002593555,0.00016647362],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00028679182,0.000016526817,0.00213473,0.000038159345,0.000005685864,0.00013436317,0.00034135868,0.00056717376,0.99448836,0.000357828,0.00010061456,0.0015283425],"study_design_scores_gemma":[0.000006222045,0.00013515328,0.026660027,0.0000075942667,0.000006144719,0.00008247364,0.00037221477,0.008734777,0.9629163,0.00008035596,0.0009844209,0.000014228297],"about_ca_topic_score_codex":0.004860705,"about_ca_topic_score_gemma":0.0054421625,"teacher_disagreement_score":0.004860705,"about_ca_system_score_codex":0.00034573654,"about_ca_system_score_gemma":0.00020311221,"threshold_uncertainty_score":0.009664834},"labels":[],"label_agreement":null},{"id":"W3041637283","doi":"","title":"Changes in the Style of Neritic Carbonate Production in the Tropics during the End-Ordovician Hirnantian Glaciation : atypical limestone facies from the Anticosti succession, eastern Canada","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Paleontology and Stratigraphy of Fossils","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ordovician; Geology; Facies; Carbonate; Glacial period; Ecological succession; Paleontology; Earth science","score_opus":0.01401606838545711,"score_gpt":0.21080236966687008,"score_spread":0.19678630128141297,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041637283","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9982224,0.00021784409,0.000019606006,0.00003252776,0.0000020059838,0.0000029050072,0.00039996288,0.0000027740375,0.001099857],"genre_scores_gemma":[0.99887866,0.00015900546,0.000030038142,0.000012448534,0.0000014304301,0.0000014435781,0.00033897554,0.0000038466496,0.00057419407],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99982566,0.000012103329,0.000010534053,0.00003556871,0.000033663222,0.00008262831],"domain_scores_gemma":[0.99951386,0.000037568294,0.000081983795,0.000016652652,0.00023011483,0.00011990961],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0002546624,0.0002265741,0.00021490926,0.0020425364,0.0015485575,0.0012457774,0.0006071343,0.00031992228,0.00177398],"category_scores_gemma":[0.000779346,0.00026079715,0.00020635537,0.0027596517,0.0009890307,0.00039841433,0.0006524915,0.00027639547,0.00022904766],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00016369292,0.00001822173,0.98441154,0.000033484157,0.00007350168,0.0002540854,0.0041174944,0.00021376596,0.0031592245,0.00016061011,0.00028097504,0.007113501],"study_design_scores_gemma":[7.6674064e-7,0.0000021495205,0.99888915,0.0000035847913,0.0000044474027,0.000025549969,0.00078211504,0.00003313179,0.00004558251,0.0000057610337,0.0002061496,0.0000016146768],"about_ca_topic_score_codex":0.9562109,"about_ca_topic_score_gemma":0.9910909,"teacher_disagreement_score":0.04378909,"about_ca_system_score_codex":0.006931387,"about_ca_system_score_gemma":0.0050512603,"threshold_uncertainty_score":0.08809388},"labels":[],"label_agreement":null},{"id":"W3041649347","doi":"","title":"Assessment of an enhanced geothermal system targeting the Prairie Evaporite Formation of the Williston Basin in SW Manitoba","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrocarbon exploration and reservoir analysis","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Evaporite; Geothermal gradient; Geology; Structural basin; Geochemistry; Archaeology; Paleontology; Geography","score_opus":0.010965457939838455,"score_gpt":0.2473070677107718,"score_spread":0.23634160977093333,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041649347","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9984047,0.000012788732,0.000511312,0.000024760793,0.0000015400277,0.00003667377,0.00010365342,0.000014344079,0.0008902621],"genre_scores_gemma":[0.9986885,0.000021133028,0.00079387595,0.000010053166,6.975432e-7,0.0000108937265,0.00007329283,0.0000027554083,0.00039875292],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998388,0.000032103537,0.0000066537996,0.000024274308,0.00006198863,0.00003615799],"domain_scores_gemma":[0.99983776,0.000021207972,0.0000194681,0.0000105389745,0.000076439,0.000034662247],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030899284,0.00029840763,0.00022637674,0.00043141883,0.00073844654,0.0008520075,0.000580016,0.000387223,0.0005537062],"category_scores_gemma":[0.00050022476,0.00027644477,0.00024257488,0.00048038948,0.00049396296,0.00032171555,0.00065753335,0.0002287567,0.00009185443],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00059728633,0.00056350423,0.77627885,0.0001439622,0.00029167905,0.001511084,0.0017951491,0.11886769,0.070805356,0.0007128077,0.0005778678,0.027854677],"study_design_scores_gemma":[0.00009099654,0.0005234083,0.8663812,0.000020115041,0.00011650051,0.00011177299,0.003024352,0.12020265,0.007967587,0.00014701673,0.0013868014,0.00002758106],"about_ca_topic_score_codex":0.51894236,"about_ca_topic_score_gemma":0.7783347,"teacher_disagreement_score":0.48105764,"about_ca_system_score_codex":0.002501228,"about_ca_system_score_gemma":0.0034454963,"threshold_uncertainty_score":0.96778136},"labels":[],"label_agreement":null},{"id":"W3041676555","doi":"","title":"Morphotectonic features on Titan and their possible origin","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Astro and Planetary Science","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Concordia University","funders":"","keywords":"Geology; Titan (rocket family); Geography; Astrobiology","score_opus":0.009985721869775333,"score_gpt":0.2192588393715078,"score_spread":0.20927311750173247,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041676555","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.96424085,0.00028766517,0.0009064654,0.00019554283,0.000025891766,0.000012698556,0.00017754154,0.00004191573,0.034111377],"genre_scores_gemma":[0.9969311,0.000047448215,0.00048229948,0.000024099285,0.000012799863,0.0000040613354,0.00010626736,0.000012636197,0.0023792242],"study_design_codex":"bench_or_experimental","study_design_gemma":"observational","domain_scores_codex":[0.99995494,0.000005791675,0.0000015565056,0.0000113712795,0.000008630195,0.000017788529],"domain_scores_gemma":[0.99989057,0.000020459862,0.000025524585,0.000022103235,0.000020390089,0.000020970916],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000051555908,0.00013788164,0.00014989857,0.0005990198,0.0009561873,0.0005128583,0.0003858018,0.00035096033,0.0045348527],"category_scores_gemma":[0.0004328561,0.0001354673,0.00012297898,0.00053897593,0.0009910096,0.00040701925,0.00064262794,0.0003102607,0.00047751874],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0011205875,0.00014460775,0.35024396,0.00032925082,0.000071002585,0.0077541773,0.007352144,0.0034884515,0.41300243,0.090001695,0.0031692937,0.12332238],"study_design_scores_gemma":[0.000015819789,0.00012219649,0.969653,0.000028510378,0.000023305958,0.0016176123,0.0018163947,0.002425552,0.003188357,0.0046458524,0.016440492,0.000022885039],"about_ca_topic_score_codex":0.006080697,"about_ca_topic_score_gemma":0.011372903,"teacher_disagreement_score":0.006080697,"about_ca_system_score_codex":0.00044524303,"about_ca_system_score_gemma":0.00021596384,"threshold_uncertainty_score":0.015170574},"labels":[],"label_agreement":null},{"id":"W3041940302","doi":"","title":"Influence of topography on mountain permafrost distribution through variable air and ground surface lapse rates, Yukon Territory, Canada","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Geology; Physical geography; Lapse rate; Distribution (mathematics); Geography; Climatology; Oceanography","score_opus":0.011256848431252983,"score_gpt":0.2172772604505431,"score_spread":0.2060204120192901,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3041940302","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99776495,0.00015278567,0.000047417398,0.00007804123,0.0000024600256,0.000006372921,0.0007995653,0.0000058133064,0.001142518],"genre_scores_gemma":[0.9987651,0.00010166646,0.000062946034,0.000011609793,7.6566636e-7,0.0000030328329,0.0003505346,0.000003678842,0.0007006989],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99962986,0.00005742849,0.000024599423,0.000057403355,0.00006500931,0.00016567875],"domain_scores_gemma":[0.9985825,0.00021668113,0.0001653758,0.000054819746,0.0006827743,0.00029787773],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004043953,0.00017558946,0.00027888158,0.00096058584,0.0016096582,0.0012644117,0.000732577,0.0002868155,0.0018164442],"category_scores_gemma":[0.0014665185,0.00019046963,0.00044430242,0.0021309785,0.0010040193,0.00040015936,0.00072615844,0.00032663814,0.00013261737],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00013790924,0.000020667092,0.9923717,0.00001890621,0.000111567984,0.000134975,0.0007272749,0.00086498295,0.0007145238,0.0002447685,0.00043574887,0.0042170277],"study_design_scores_gemma":[0.0000027451028,0.000006430652,0.9983694,0.0000068807362,0.000020892954,0.000022189208,0.00084418757,0.00037998406,0.000049902246,0.000021495589,0.00027023253,0.000005611332],"about_ca_topic_score_codex":0.994065,"about_ca_topic_score_gemma":0.9975605,"teacher_disagreement_score":0.014007651,"about_ca_system_score_codex":0.014007651,"about_ca_system_score_gemma":0.01827955,"threshold_uncertainty_score":0.10163307},"labels":[],"label_agreement":null},{"id":"W3042168342","doi":"","title":"New insights into the North American Cordillera forearc: Cretaceous to Eocene tectonic evolution of the Leech River Schist, Southern Vancouver Island, Canada","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Forearc; Geology; Schist; Cretaceous; Paleontology; Tectonics; Leech; Seismology; Metamorphic rock; Subduction","score_opus":0.009553992846377127,"score_gpt":0.20170507511217253,"score_spread":0.19215108226579541,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3042168342","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9577053,0.0057899933,0.00047139445,0.0011059266,0.000025495303,0.000028385513,0.00082523684,0.000024508985,0.03402382],"genre_scores_gemma":[0.992365,0.002000592,0.00033912103,0.000097337674,0.000008477609,0.0000052642886,0.00030347746,0.000014915719,0.004865787],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998512,0.000011733217,0.000007341704,0.000025426814,0.000037034097,0.00006710416],"domain_scores_gemma":[0.9995536,0.00003661523,0.000050751707,0.0000136902845,0.00025719946,0.000088039],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00027051268,0.00021885657,0.00018781658,0.0032914462,0.0022645635,0.0021081686,0.00043506533,0.00036378126,0.0054038083],"category_scores_gemma":[0.00086386956,0.00018187256,0.00013112917,0.0042679464,0.0011771949,0.00058659597,0.000757525,0.000471782,0.00029879363],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018869713,0.00006212912,0.80236,0.000264914,0.00011099133,0.0012464313,0.023960952,0.001978992,0.0125345895,0.006956881,0.0033486309,0.14698678],"study_design_scores_gemma":[0.0000036550778,0.0000059708746,0.97942346,0.00008568628,0.000015577954,0.00010053219,0.006174218,0.00037124637,0.00019127337,0.000277721,0.013344302,0.000006433854],"about_ca_topic_score_codex":0.9752261,"about_ca_topic_score_gemma":0.9953917,"teacher_disagreement_score":0.024773896,"about_ca_system_score_codex":0.011577909,"about_ca_system_score_gemma":0.013797526,"threshold_uncertainty_score":0.084003985},"labels":[],"label_agreement":null},{"id":"W3042349412","doi":"","title":"High-resolution global topographic index values for use in large-scale hydrological modelling","year":2015,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"McGill University","funders":"","keywords":"Surface runoff; Scale (ratio); Hydrology (agriculture); Shuttle Radar Topography Mission; Index (typography); Environmental science; Land cover; Streamflow; Hydrological modelling; Drainage basin; Digital elevation model; Water table; Amazon rainforest; Geology; Elevation (ballistics); Catchment hydrology; Physical geography; Land use; Remote sensing; Climatology; Cartography; Geography; Groundwater; Mathematics; Computer science","score_opus":0.033175592792570416,"score_gpt":0.24505470534664658,"score_spread":0.21187911255407615,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3042349412","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.42130378,0.0008240796,0.3172193,0.00065197836,0.00038173673,0.00054610433,0.19055435,0.030253928,0.038264733],"genre_scores_gemma":[0.66938585,0.0004651676,0.24937318,0.00007006631,0.0000621074,0.00027831874,0.07553614,0.0017795545,0.003049668],"study_design_codex":"design_other","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9998753,0.000016364158,0.000010906579,0.000017866456,0.000064113985,0.000015409489],"domain_scores_gemma":[0.9996183,0.00006363504,0.000053537042,0.00011039256,0.00012276474,0.000031393243],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003331625,0.00048171743,0.00031962292,0.0013925352,0.0001600657,0.0009082344,0.0004912386,0.0003101894,0.006235743],"category_scores_gemma":[0.001546248,0.00024109184,0.00038008144,0.0028301105,0.000119137134,0.0008053772,0.00047191943,0.0005483977,0.0015030168],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044674246,0.00035138527,0.099199794,0.0005798521,0.0005557173,0.0006441864,0.00055064703,0.28810242,0.054149274,0.010601712,0.07931337,0.46550485],"study_design_scores_gemma":[0.00026535982,0.00011014818,0.3449694,0.00009677791,0.00014463537,0.00031653777,0.00025196347,0.49104947,0.025871316,0.008483696,0.12820596,0.00023470126],"about_ca_topic_score_codex":0.007109961,"about_ca_topic_score_gemma":0.015504353,"teacher_disagreement_score":0.007109961,"about_ca_system_score_codex":0.00035047802,"about_ca_system_score_gemma":0.00036281982,"threshold_uncertainty_score":0.020860672},"labels":[],"label_agreement":null},{"id":"W3042512171","doi":"","title":"Site-Effects Model for Central and Eastern North America Based on Peak Frequency and Average Shear Wave Velocity","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Seismic Waves and Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Western University","funders":"","keywords":"Geology; Shear (geology); Wave velocity; Geodesy; Seismology","score_opus":0.017209354014313498,"score_gpt":0.20964270377373073,"score_spread":0.19243334975941723,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3042512171","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9572957,0.00045385235,0.025597792,0.0006827359,0.00019137321,0.00011341959,0.0064312303,0.0009841814,0.00824959],"genre_scores_gemma":[0.97982603,0.0002100839,0.00493863,0.00011669858,0.000038156806,0.00011827097,0.0020646267,0.0001359902,0.012551408],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99943775,0.00021866999,0.000020996871,0.00018658371,0.000035497284,0.0001005493],"domain_scores_gemma":[0.9990281,0.00043055785,0.00010653274,0.000088213856,0.00023191152,0.00011468689],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010660595,0.0007253292,0.0012076872,0.0009086308,0.0010103427,0.0012215722,0.003297877,0.0014850929,0.008378671],"category_scores_gemma":[0.0016774063,0.001079737,0.0014724355,0.0011535618,0.0010467457,0.0012145704,0.00081308803,0.0012429843,0.0008580503],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020930098,0.000266405,0.03663233,0.000051679843,0.0005637293,0.00029003658,0.000213616,0.9471356,0.0010702115,0.0049315626,0.0034631314,0.0051724613],"study_design_scores_gemma":[0.000102817015,0.000049397302,0.016911566,0.000013253251,0.00025822964,0.00004855732,0.0002088254,0.979113,0.00013219415,0.0015632889,0.0015613682,0.000037503694],"about_ca_topic_score_codex":0.46240917,"about_ca_topic_score_gemma":0.46496084,"teacher_disagreement_score":0.46240917,"about_ca_system_score_codex":0.0021623878,"about_ca_system_score_gemma":0.003298446,"threshold_uncertainty_score":0.91943526},"labels":[],"label_agreement":null},{"id":"W3042930585","doi":"","title":"Homogenization of Canada's hourly surface wind speeds data","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Wind and Air Flow Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Homogenization (climate); Meteorology; Wind speed; Environmental science; Climatology; Geography; Geology","score_opus":0.014519292735717481,"score_gpt":0.2031222919764143,"score_spread":0.18860299924069682,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3042930585","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.92406493,0.00038272864,0.0051651224,0.0004083607,0.0000901494,0.00029292455,0.04548566,0.00045843198,0.023651714],"genre_scores_gemma":[0.92982924,0.0003132665,0.005758912,0.00015622919,0.000026976522,0.00012893058,0.055279884,0.00017329928,0.008333269],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9987489,0.00007967459,0.000060243023,0.0002561426,0.0005631197,0.00029188592],"domain_scores_gemma":[0.997996,0.00013867526,0.0000772887,0.00018716347,0.0014912087,0.00010969152],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006996615,0.0002982202,0.00043561292,0.0031092314,0.0019145428,0.0015855045,0.0006464553,0.0003152631,0.0027347007],"category_scores_gemma":[0.002630523,0.00024993118,0.00059788104,0.0068355994,0.00036563288,0.00041264112,0.0007021807,0.000497369,0.00046486637],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00072958355,0.00035778465,0.6815547,0.000330999,0.0006950911,0.0005280665,0.0027272364,0.064588025,0.0125552425,0.005710386,0.049341686,0.18088122],"study_design_scores_gemma":[0.000027144393,0.000024920857,0.9475293,0.000035172205,0.00008478737,0.00004132632,0.0014835914,0.016867887,0.0020290776,0.00017250152,0.031664606,0.000039639566],"about_ca_topic_score_codex":0.98536354,"about_ca_topic_score_gemma":0.9891283,"teacher_disagreement_score":0.014636457,"about_ca_system_score_codex":0.010183471,"about_ca_system_score_gemma":0.018702483,"threshold_uncertainty_score":0.07388657},"labels":[],"label_agreement":null},{"id":"W3043170560","doi":"","title":"Coastal Submesoscale Baroclinic Eddies in Cyclostrophic Balance in the Saguenay Fjord","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Baroclinity; Eddy; Fjord; Oceanography; Geology; Climatology; Anticyclone; Environmental science; Geography; Meteorology; Turbulence","score_opus":0.008947267686802847,"score_gpt":0.20107371177034578,"score_spread":0.19212644408354293,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043170560","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999485,0.000056907014,0.000021830701,0.00002098071,0.000005402674,8.5362063e-7,0.000077537814,0.0000036462588,0.00032788256],"genre_scores_gemma":[0.9996743,0.000023898825,0.000021958062,0.000008356561,0.0000030139734,0.0000010490501,0.000071245086,0.0000020955058,0.00019417796],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9999206,0.000007663143,0.000007970764,0.00002222926,0.0000076787555,0.000033881835],"domain_scores_gemma":[0.9998258,0.000028136472,0.000032908425,0.000012239136,0.00004170076,0.000059308248],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017749042,0.00021325587,0.000364012,0.00062173494,0.00073507987,0.0009875308,0.0002988546,0.00058956945,0.0016455302],"category_scores_gemma":[0.0005773206,0.00028906355,0.00023201335,0.0005908216,0.0004612386,0.00043815712,0.00094401045,0.00029653864,0.00022633186],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005048398,0.00010132169,0.97053033,0.000041214105,0.000115074174,0.0007154071,0.0019532624,0.0023806263,0.011487835,0.00033670373,0.00056548306,0.011267832],"study_design_scores_gemma":[0.000005946343,0.000010652056,0.9978022,0.0000069919197,0.0000136965,0.000023103117,0.0006536732,0.0011664598,0.00007925766,0.000022766117,0.00021068403,0.000004723819],"about_ca_topic_score_codex":0.26201192,"about_ca_topic_score_gemma":0.39906886,"teacher_disagreement_score":0.7379881,"about_ca_system_score_codex":0.0011046145,"about_ca_system_score_gemma":0.0006603902,"threshold_uncertainty_score":0.5209737},"labels":[],"label_agreement":null},{"id":"W3043301932","doi":"","title":"Mountain permafrost, glacier thinning, and slope stability - a perspective from British Columbia (and Alaska)","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Glacier; Geology; Thinning; Physical geography; Geomorphology; Perspective (graphical); Hydrology (agriculture); Geotechnical engineering; Geography; Forestry; Oceanography","score_opus":0.020619119608529777,"score_gpt":0.2202545623482617,"score_spread":0.19963544273973194,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043301932","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9543254,0.016159879,0.00012745049,0.004137534,0.00003660782,0.000008134655,0.0009572854,0.000009520484,0.02423821],"genre_scores_gemma":[0.98685944,0.010130155,0.00016140708,0.00031662427,0.000022149057,0.000003379843,0.00027572404,0.0000034294223,0.0022277404],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998615,0.000025501336,0.0000060227335,0.000024936506,0.000028624549,0.000053406646],"domain_scores_gemma":[0.9995152,0.00007545368,0.00005970164,0.000015260875,0.00019203383,0.00014237872],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00037197894,0.0002708526,0.00027314815,0.0012818744,0.0024645012,0.002144662,0.00051395845,0.0006055635,0.0029454834],"category_scores_gemma":[0.0006506875,0.00016745686,0.0002264087,0.0036277922,0.0015130629,0.0007419438,0.0006501962,0.00085723476,0.00011856096],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0001423279,0.00010879034,0.93074536,0.00014413298,0.00022433451,0.0010836754,0.0046031135,0.0013141787,0.00064772344,0.0059295944,0.004411824,0.05064497],"study_design_scores_gemma":[0.0000059175863,0.000026126829,0.97881913,0.00022672306,0.00016004912,0.00016583223,0.011817411,0.0003837999,0.00010686694,0.0014316711,0.0068336097,0.000022919321],"about_ca_topic_score_codex":0.96543837,"about_ca_topic_score_gemma":0.99140584,"teacher_disagreement_score":0.034561634,"about_ca_system_score_codex":0.008004289,"about_ca_system_score_gemma":0.008960424,"threshold_uncertainty_score":0.06953031},"labels":[],"label_agreement":null},{"id":"W3043305921","doi":"","title":"Early to Middle Ordovician organized and disorganized supra-subduction zone spreading along the Laurentian margin of Iapetus, Newfoundland Appalachians","year":2013,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological Studies and Exploration","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Ordovician; Geology; Margin (machine learning); Paleontology; Subduction; Laurentia; Tectonics","score_opus":0.01278561144219704,"score_gpt":0.17848385823019242,"score_spread":0.16569824678799538,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043305921","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9953876,0.0001178487,0.000040073064,0.000051449828,0.000001905592,0.000004699893,0.00017413504,0.0000072433686,0.00421518],"genre_scores_gemma":[0.99804306,0.00008785919,0.000061337996,0.00001573922,0.000001518489,0.000003027119,0.00013398894,0.0000033095537,0.0016500267],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986386,0.000006830104,0.000007127704,0.000031758314,0.000013426916,0.00007685488],"domain_scores_gemma":[0.9996842,0.000032002503,0.0000831037,0.00001920477,0.00010031134,0.00008124204],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00015314491,0.0001337605,0.00013703296,0.0013704371,0.0012402353,0.0013220627,0.0003562708,0.00018637178,0.0024650334],"category_scores_gemma":[0.0005151628,0.00014992557,0.00009308457,0.0012437132,0.0012397044,0.00042188907,0.00082179176,0.00023680837,0.00020320037],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020863308,0.000030133624,0.9513456,0.00009207698,0.00004218201,0.00084182597,0.010520422,0.0011972303,0.008436644,0.0020216408,0.0009427733,0.024320753],"study_design_scores_gemma":[0.0000010529692,0.0000047901417,0.9968431,0.000010633558,0.0000030575238,0.000034762306,0.001627393,0.000092894705,0.00008037412,0.00002473749,0.0012748453,0.0000023325524],"about_ca_topic_score_codex":0.7783432,"about_ca_topic_score_gemma":0.9437356,"teacher_disagreement_score":0.2216568,"about_ca_system_score_codex":0.005379376,"about_ca_system_score_gemma":0.004020547,"threshold_uncertainty_score":0.44592434},"labels":[],"label_agreement":null},{"id":"W3043330108","doi":"","title":"Rock magnetism and Paleomagnetism of Mistastin Lake impact structure, Labrador, Canada","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Planetary Science and Exploration","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Paleomagnetism; Rock magnetism; Geology; Magnetism; Physical geography; Geochemistry; Paleontology; Geography; Magnetization; Condensed matter physics; Physics","score_opus":0.0035369637381166188,"score_gpt":0.1831703033081944,"score_spread":0.17963333957007777,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043330108","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9930396,0.00029149858,0.00007153216,0.00023458873,0.0000041991325,0.0000135732835,0.0011686127,0.00001260482,0.005163798],"genre_scores_gemma":[0.9942987,0.00018501737,0.000111166,0.000031511423,0.0000025626268,0.000005311157,0.0004186674,0.000009869066,0.004937158],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981374,0.000010213602,0.000006980765,0.000022616947,0.000063297484,0.00008316744],"domain_scores_gemma":[0.9996464,0.000015505882,0.000033542186,0.0000080127165,0.00024014663,0.000056468107],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00017181614,0.00015892358,0.00025403357,0.0014714404,0.0032902872,0.0009268068,0.0006881324,0.00024738684,0.0028764491],"category_scores_gemma":[0.00061159616,0.00021176237,0.0001523382,0.0027424828,0.00061471417,0.00033675722,0.0006213167,0.00032102526,0.00035959334],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00063082605,0.000086240594,0.94960076,0.000093787974,0.00009663389,0.0006715537,0.0064196717,0.0007709232,0.0076811104,0.0008912768,0.004026641,0.029030522],"study_design_scores_gemma":[0.000006166886,0.000010681154,0.99510866,0.00001343071,0.000012826372,0.00006034464,0.002059474,0.00020567907,0.0003079231,0.00003548344,0.002171121,0.000008136843],"about_ca_topic_score_codex":0.9910136,"about_ca_topic_score_gemma":0.99793625,"teacher_disagreement_score":0.01610332,"about_ca_system_score_codex":0.01610332,"about_ca_system_score_gemma":0.010054471,"threshold_uncertainty_score":0.116838336},"labels":[],"label_agreement":null},{"id":"W3043629218","doi":"","title":"Rift-related magmatism on magma-poor margins: Structural, petrological and potential field analyses of the Mesozoic Notre Dame Bay intrusions, onshore Newfoundland, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geological and Geochemical Analysis","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Magmatism; Geology; Mesozoic; Rift; Bay; Magma; Geochemistry; Paleontology; Petrology; Oceanography; Tectonics; Volcano; Structural basin","score_opus":0.009597891801723829,"score_gpt":0.2176149335004131,"score_spread":0.2080170416986893,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043629218","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9980558,0.00008032124,0.00004171711,0.000038403243,8.624931e-7,0.0000057874986,0.0006801191,0.00000360118,0.0010933804],"genre_scores_gemma":[0.9989023,0.00006621325,0.00006994321,0.000011270802,0.000001190313,0.0000033415295,0.00036074634,0.0000032318007,0.0005817416],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99972326,0.000018040728,0.00001434557,0.0000517915,0.000065531,0.00012699868],"domain_scores_gemma":[0.998961,0.00009523845,0.00023127731,0.000047398917,0.00047811985,0.00018701795],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00029065285,0.00021360263,0.00026219306,0.0021721388,0.0017905453,0.0011199394,0.0008910622,0.0002709895,0.0017528163],"category_scores_gemma":[0.0010303863,0.000311409,0.00019662199,0.0031178705,0.001317434,0.00057548186,0.0009704031,0.00031680096,0.00021322437],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0000673204,0.00002016846,0.98947424,0.000020625112,0.000031031075,0.00010920043,0.0019655405,0.0003905666,0.001559323,0.0001431455,0.00041448243,0.0058043166],"study_design_scores_gemma":[7.4341034e-7,0.0000024600804,0.99846965,0.000004684311,0.0000041031903,0.000015045235,0.0010125168,0.00011893767,0.000070044385,0.000007541944,0.00029203814,0.0000021746582],"about_ca_topic_score_codex":0.97483534,"about_ca_topic_score_gemma":0.994163,"teacher_disagreement_score":0.025164664,"about_ca_system_score_codex":0.010692224,"about_ca_system_score_gemma":0.0073687513,"threshold_uncertainty_score":0.07757789},"labels":[],"label_agreement":null},{"id":"W3043790529","doi":"","title":"Comparing field-based and numerically modelled reconstructions of the last Cordilleran Ice Sheet deglaciation over the Thompson Plateau, southern interior British Columbia, Canada.","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Deglaciation; Geology; Ice sheet; Plateau (mathematics); Wisconsin glaciation; Field (mathematics); Ice field; Physical geography; Geomorphology; Oceanography; Geography; Cryosphere; Ice stream; Glacial period; Glacier; Sea ice","score_opus":0.004746391417064946,"score_gpt":0.16884457021834895,"score_spread":0.164098178801284,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043790529","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98516315,0.00041650762,0.0011657374,0.00031384255,0.00002981275,0.000021850032,0.006938905,0.0004132277,0.0055368487],"genre_scores_gemma":[0.99582064,0.00012423053,0.0009046453,0.00002916785,0.0000052328996,0.000009102947,0.0023261756,0.000052518553,0.0007282845],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99986744,0.000015845957,0.00000980262,0.00004846519,0.00002338388,0.000035088164],"domain_scores_gemma":[0.9995111,0.000091441405,0.00006117567,0.000043060685,0.00023732871,0.000055920045],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00030694692,0.00037237754,0.0002117985,0.0012790357,0.0006807071,0.0013752163,0.0008214524,0.0007399367,0.0029090175],"category_scores_gemma":[0.0015713262,0.00032234675,0.00031038967,0.0019103214,0.0005441855,0.00047563956,0.00034373853,0.00042592417,0.00041336397],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00071314815,0.00023540118,0.2813063,0.00025197375,0.0005166203,0.0004175099,0.0005891777,0.6706302,0.0048992834,0.0019488783,0.00630754,0.032184046],"study_design_scores_gemma":[0.00026414325,0.000034733643,0.54826087,0.0001310799,0.00015566687,0.00012212491,0.0011348197,0.44087443,0.0011598436,0.000858973,0.0068949866,0.000108469736],"about_ca_topic_score_codex":0.94239897,"about_ca_topic_score_gemma":0.9563495,"teacher_disagreement_score":0.057601035,"about_ca_system_score_codex":0.008191159,"about_ca_system_score_gemma":0.0064909505,"threshold_uncertainty_score":0.11588049},"labels":[],"label_agreement":null},{"id":"W3043805904","doi":"","title":"Assessing the sources of suspended sediments in the streams of an agricultural watershed in the Canadian prairies using caesium-137 as a tracer","year":2012,"lang":"en","type":"article","venue":"EGUGA","topic":"Soil and Water Nutrient Dynamics","field":"Environmental Science","cited_by":2,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Watershed; STREAMS; TRACER; Environmental science; Hydrology (agriculture); Caesium; Water resource management; Geography; Archaeology; Geology; Chemistry","score_opus":0.02362238784787113,"score_gpt":0.27502529288600164,"score_spread":0.2514029050381305,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043805904","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99896693,0.000046411984,0.000282779,0.00002527547,8.403034e-7,0.000015055096,0.00007538109,0.0000069585085,0.0005802541],"genre_scores_gemma":[0.998128,0.00009883929,0.0010806517,0.000007848449,7.392689e-7,0.0000046775663,0.00007718717,0.0000033551576,0.00059869624],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997913,0.000014421995,0.00001022539,0.0000464626,0.00009466319,0.00004288949],"domain_scores_gemma":[0.9997538,0.00004085059,0.000032921747,0.0000051192815,0.00013020418,0.000037102916],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033783494,0.00029496782,0.00023726128,0.00084097666,0.0018231639,0.001157047,0.00072484405,0.00040413576,0.00026688544],"category_scores_gemma":[0.00055252603,0.0002791018,0.00014145774,0.0013103267,0.00067274505,0.000363941,0.00042558872,0.0003929186,0.00005081636],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00029224408,0.00012496018,0.90757245,0.00008251034,0.00011719527,0.0005224227,0.0022607727,0.0076743653,0.057968084,0.0008237916,0.00026434072,0.022296883],"study_design_scores_gemma":[0.000031067604,0.00008555875,0.9623659,0.000014501779,0.000076495686,0.000086385444,0.0029114664,0.022991538,0.009713054,0.00024589195,0.001452074,0.00002608245],"about_ca_topic_score_codex":0.919394,"about_ca_topic_score_gemma":0.9688411,"teacher_disagreement_score":0.080605984,"about_ca_system_score_codex":0.0075709755,"about_ca_system_score_gemma":0.008919806,"threshold_uncertainty_score":0.16216135},"labels":[],"label_agreement":null},{"id":"W3043886102","doi":"","title":"The Canadian Arctic Atmospheric Chemistry Experiment Validation Project: Recent results and overview","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric chemistry and aerosols","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Atmospheric chemistry; Environmental science; Arctic; Climatology; Meteorology; Oceanography; Geography; Geology; Ozone","score_opus":0.018987486672878143,"score_gpt":0.2390079883693915,"score_spread":0.22002050169651335,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3043886102","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.3032697,0.16700304,0.07653799,0.0209514,0.004603647,0.00648675,0.32174185,0.0038636955,0.09554194],"genre_scores_gemma":[0.44487876,0.062872976,0.11952589,0.0061723925,0.0010339513,0.0024040502,0.32962254,0.0017291227,0.031760305],"study_design_codex":"design_other","study_design_gemma":"observational","domain_scores_codex":[0.98260653,0.0031677794,0.00057520234,0.0014270385,0.010800304,0.0014231516],"domain_scores_gemma":[0.96192706,0.0022931108,0.0012167754,0.0019460435,0.031027772,0.001589209],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.042512372,0.0021350463,0.0012372289,0.003217151,0.0036729241,0.0038048266,0.003414565,0.0010663245,0.0008955653],"category_scores_gemma":[0.015942926,0.00058956555,0.0012041217,0.008422837,0.0011171821,0.0013925842,0.002705789,0.0010066873,0.0005310992],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0037707163,0.00093415036,0.37258226,0.004461081,0.0031146586,0.00019136716,0.001284931,0.015087274,0.009086783,0.0058693513,0.1910097,0.39260775],"study_design_scores_gemma":[0.00042377348,0.00037310523,0.5777344,0.0010961406,0.0021984878,0.00012318452,0.00079865876,0.007745001,0.016460808,0.0009010383,0.39190224,0.000243121],"about_ca_topic_score_codex":0.95801747,"about_ca_topic_score_gemma":0.97242326,"teacher_disagreement_score":0.042512372,"about_ca_system_score_codex":0.014727229,"about_ca_system_score_gemma":0.08653027,"threshold_uncertainty_score":0.22482961},"labels":[],"label_agreement":null},{"id":"W3044692914","doi":"","title":"Paleoecology and geoarchaeology of Cape Smith, Nunavik, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Pleistocene-Era Hominins and Archaeology","field":"Social Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geoarchaeology; Cape; Paleoecology; Geography; Archaeology; Geology; Paleontology","score_opus":0.011880958987397291,"score_gpt":0.26614601720083386,"score_spread":0.2542650582134366,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3044692914","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9638978,0.0059762676,0.00025982384,0.0015285498,0.00004231972,0.00007892653,0.0052134804,0.000045548717,0.02295731],"genre_scores_gemma":[0.97605497,0.003070874,0.0008810107,0.00013207292,0.0000076039832,0.000036016794,0.0013124155,0.00003328621,0.018471815],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.999629,0.000035087192,0.00002485313,0.000059127284,0.00010052549,0.00015124997],"domain_scores_gemma":[0.99895215,0.00010067619,0.00009204243,0.00003291333,0.0006194319,0.00020266382],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00039343882,0.00032637542,0.0003792457,0.003794369,0.00589134,0.0016280364,0.0011755067,0.0003126024,0.0056028054],"category_scores_gemma":[0.001539992,0.00032544328,0.00024100956,0.007703101,0.0011439143,0.0004840322,0.0010118348,0.00060933514,0.00036120298],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005891411,0.00014028899,0.7626057,0.0006813956,0.0002472492,0.0026836193,0.050322853,0.0017272591,0.00342763,0.011957371,0.023353731,0.14226374],"study_design_scores_gemma":[0.000019315472,0.00002030346,0.93771845,0.00030262844,0.000046253335,0.00046594525,0.027101962,0.00057098415,0.00040727906,0.0004844367,0.032811303,0.0000511743],"about_ca_topic_score_codex":0.99838626,"about_ca_topic_score_gemma":0.9997316,"teacher_disagreement_score":0.03838171,"about_ca_system_score_codex":0.03838171,"about_ca_system_score_gemma":0.04895741,"threshold_uncertainty_score":0.2784801},"labels":[],"label_agreement":null},{"id":"W3044737063","doi":"","title":"High Resolution InSAR Investigation of Increased Landslide Motion and Non-steady-state Glacier Flow on Mount Meager, BC, Canada","year":2019,"lang":"en","type":"article","venue":"EGUGA","topic":"Landslides and related hazards","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mount; Geology; Landslide; Glacier; Interferometric synthetic aperture radar; Geodesy; Debris flow; Geomorphology; Flow (mathematics); Seismology; Remote sensing; Debris; Synthetic aperture radar; Oceanography; Geometry; Engineering","score_opus":0.003971583821914219,"score_gpt":0.16902568988421657,"score_spread":0.16505410606230234,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3044737063","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98881334,0.00013600488,0.00031013883,0.00016278846,0.000015626298,0.000016979795,0.0023009197,0.000087735585,0.00815638],"genre_scores_gemma":[0.99635446,0.00007904665,0.00041053002,0.00002535065,0.0000042631423,0.0000045328798,0.0006373822,0.000014057542,0.002470402],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99988985,0.0000030500944,0.0000020082257,0.000011920131,0.000051123163,0.000042043663],"domain_scores_gemma":[0.9997328,0.000015056382,0.000018868428,0.000010536542,0.00017241045,0.0000502969],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00009214191,0.00023255043,0.0002689535,0.00088026194,0.0018513278,0.00071513024,0.00044858898,0.00028036008,0.0019721556],"category_scores_gemma":[0.00030817528,0.00021968721,0.00013106178,0.0010725658,0.0003743316,0.00016864053,0.00030867953,0.00038529883,0.0003544056],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00074359676,0.00037212865,0.83405876,0.00011950118,0.00019893561,0.0017614848,0.0023705177,0.01883046,0.071307726,0.0009587124,0.0146069825,0.054671183],"study_design_scores_gemma":[0.0000150237665,0.000012609964,0.98979455,0.000011254257,0.000014862094,0.00005427889,0.0005473947,0.005890778,0.0010377996,0.00003279102,0.0025767551,0.000011932271],"about_ca_topic_score_codex":0.9636076,"about_ca_topic_score_gemma":0.98766756,"teacher_disagreement_score":0.03639239,"about_ca_system_score_codex":0.0040169973,"about_ca_system_score_gemma":0.0058176015,"threshold_uncertainty_score":0.0732134},"labels":[],"label_agreement":null},{"id":"W3045040874","doi":"","title":"Carbon recycling during Neoarchean anatexis: evidence from multiphase inclusions in migmatites (Athabasca granulite terrane, Canada)","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Anatexis; Granulite; Migmatite; Terrane; Geochemistry; Geology; Partial melting; Metamorphic rock; Geomorphology; Facies","score_opus":0.02555796131519669,"score_gpt":0.2604526965081205,"score_spread":0.23489473519292378,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3045040874","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9987288,0.0001418163,0.00006188297,0.000028696693,0.000001759467,0.0000042862935,0.00020728841,0.000008287851,0.00081711233],"genre_scores_gemma":[0.9988746,0.000090252914,0.00012997547,0.000014224588,0.0000017164488,0.0000035469852,0.00015399595,0.000009378524,0.0007223667],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99980813,0.0000068148047,0.000010103933,0.00005479373,0.000055901302,0.00006423006],"domain_scores_gemma":[0.99961346,0.000031799515,0.00007326192,0.000018833958,0.00021379431,0.000048828566],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001899799,0.0002959441,0.00034753478,0.0021121567,0.0030339123,0.0017176879,0.001143522,0.0008407079,0.0009988],"category_scores_gemma":[0.00041023997,0.0003540311,0.00021262,0.001289319,0.0014592529,0.0005304961,0.0008610598,0.0003238024,0.00023388682],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0008980324,0.00006570756,0.7914411,0.00011562297,0.0001465416,0.00090600626,0.005376332,0.00049402454,0.18988226,0.00050905463,0.0002495842,0.009915757],"study_design_scores_gemma":[0.000009673283,0.000027218593,0.9911075,0.000013845691,0.000032732998,0.0001885099,0.0017036941,0.00045042235,0.0053468295,0.000049858965,0.0010617693,0.000007918585],"about_ca_topic_score_codex":0.8017778,"about_ca_topic_score_gemma":0.87566465,"teacher_disagreement_score":0.19822222,"about_ca_system_score_codex":0.0046874117,"about_ca_system_score_gemma":0.0026658513,"threshold_uncertainty_score":0.39877915},"labels":[],"label_agreement":null},{"id":"W3045265675","doi":"","title":"An overview of barrier winds off southeastern Greenland during the Greenland flow distortion experiment","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Toronto","funders":"","keywords":"Orography; Geology; Orographic lift; Groenlandia; Climatology; Greenland ice sheet; Atmospheric sciences; Meteorology; Oceanography; Geography; Ice sheet; Precipitation","score_opus":0.030835374234729037,"score_gpt":0.2516949709312873,"score_spread":0.22085959669655825,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3045265675","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9965249,0.0000995721,0.00015087624,0.00005555844,0.0000069390885,0.000035882997,0.0011716437,0.000025935627,0.0019287954],"genre_scores_gemma":[0.994358,0.00021070418,0.00084379065,0.00007772248,0.000008186727,0.000034378998,0.0032415872,0.000019693553,0.0012059794],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99981624,0.000026624244,0.000009239836,0.000045776396,0.000048772887,0.0000533634],"domain_scores_gemma":[0.99973994,0.000028213157,0.00005412911,0.000027217435,0.000067657194,0.000082804705],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00033061512,0.0002896832,0.0002691731,0.0008065696,0.0006458751,0.0004942326,0.00025839117,0.0002399164,0.0007079496],"category_scores_gemma":[0.0002483551,0.00011562128,0.000152041,0.0008498565,0.00039043094,0.0002728319,0.00034574975,0.0003105933,0.00012335893],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00083384255,0.00081747054,0.9253298,0.000098314726,0.000113250135,0.001553199,0.0026633423,0.002817202,0.030906973,0.00047234088,0.0031234464,0.031270705],"study_design_scores_gemma":[0.000012637783,0.00011129658,0.9944617,0.000012483296,0.000009258158,0.00005838059,0.0006554255,0.0008374845,0.001243282,0.000050692433,0.0025349567,0.000012341674],"about_ca_topic_score_codex":0.124000736,"about_ca_topic_score_gemma":0.276393,"teacher_disagreement_score":0.124000736,"about_ca_system_score_codex":0.001501268,"about_ca_system_score_gemma":0.0008053899,"threshold_uncertainty_score":0.24655795},"labels":[],"label_agreement":null},{"id":"W3048324797","doi":"","title":"The Integrated Modelling Program for Prediction and Management of Change in Canada's Major River Basins (IMPC)","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Hydrology (agriculture); Geology; Geotechnical engineering","score_opus":0.02454800030835321,"score_gpt":0.23108100802180004,"score_spread":0.20653300771344682,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3048324797","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.2965287,0.002586975,0.22575593,0.0066267177,0.00076532667,0.0022139717,0.30245802,0.039280776,0.12378357],"genre_scores_gemma":[0.5029291,0.002801732,0.31391865,0.0007241818,0.00010976182,0.0019637686,0.11228464,0.0027412104,0.06252692],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99940467,0.00007894368,0.000027102904,0.00009028539,0.0002832279,0.00011585591],"domain_scores_gemma":[0.9985291,0.00017430022,0.000088174675,0.00012421288,0.00090222945,0.00018191492],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0010058704,0.00089470856,0.0006215303,0.0011757273,0.0019155325,0.0017140141,0.0017211583,0.0005137596,0.005820153],"category_scores_gemma":[0.0028213596,0.0005943097,0.00087915757,0.0019257932,0.00036803627,0.0009480746,0.0010128818,0.0011389279,0.00068004086],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0003695219,0.00046452245,0.079767816,0.0003329469,0.0005782989,0.00017612871,0.0007141596,0.3767489,0.0027190263,0.025072789,0.27959523,0.23346066],"study_design_scores_gemma":[0.00023787477,0.00007772523,0.05576411,0.00017532796,0.00029229996,0.000055264285,0.00044459893,0.81224805,0.0030492328,0.0044708136,0.12305117,0.00013354029],"about_ca_topic_score_codex":0.9860686,"about_ca_topic_score_gemma":0.98704916,"teacher_disagreement_score":0.018674323,"about_ca_system_score_codex":0.018674323,"about_ca_system_score_gemma":0.051967736,"threshold_uncertainty_score":0.13549232},"labels":[],"label_agreement":null},{"id":"W305364933","doi":"","title":"A small single-nozzle rainfall simulator to measure erosion response on different burn severities in southern British Columbia, Canada","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":1,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Nozzle; Surface runoff; Hydrology (agriculture); Environmental science; Erosion; Meteorology; Geology; Geotechnical engineering; Engineering; Geography; Geomorphology","score_opus":0.008851364553884859,"score_gpt":0.17299616338415705,"score_spread":0.1641447988302722,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W305364933","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99701536,0.00002727461,0.0011042637,0.000010972443,0.0000019138974,0.0001436214,0.0005378263,0.000082194274,0.001076534],"genre_scores_gemma":[0.990875,0.000074360316,0.0060403184,0.00003216206,0.0000011406127,0.00014875247,0.0008715745,0.000022243106,0.0019344758],"study_design_codex":"observational","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.99984956,0.000013944977,0.000005683487,0.000034635985,0.000064442866,0.00003159229],"domain_scores_gemma":[0.9997061,0.000026542419,0.00002796266,0.000016480106,0.00013607829,0.00008677184],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025212544,0.0003293495,0.00027763046,0.00036378615,0.0009702288,0.00030682408,0.00051831757,0.00019924846,0.001491981],"category_scores_gemma":[0.00037260962,0.00027214657,0.00015722893,0.0006350163,0.00023677631,0.00014779999,0.00023274563,0.00030700283,0.00021637729],"study_design_candidate":"bench_or_experimental","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014988,0.0018189228,0.5804124,0.00020702058,0.00014426958,0.000632394,0.0023946986,0.021049222,0.29954708,0.0001652413,0.0026871723,0.089442864],"study_design_scores_gemma":[0.00009045162,0.0006467015,0.9716399,0.000013448999,0.000036743913,0.00011983888,0.00076176954,0.013701676,0.01111645,0.000032118678,0.0018064742,0.000034472578],"about_ca_topic_score_codex":0.86312425,"about_ca_topic_score_gemma":0.96019465,"teacher_disagreement_score":0.13687575,"about_ca_system_score_codex":0.0041939192,"about_ca_system_score_gemma":0.005342653,"threshold_uncertainty_score":0.27536362},"labels":[],"label_agreement":null},{"id":"W3053781714","doi":"","title":"Delta Ray Road Trip: Measuring δ13C, δ18O and concentration of CO2 across Canada","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"δ13C; δ18O; Delta; Environmental science; Physical geography; Stable isotope ratio; Geology; Geography; Engineering; Physics","score_opus":0.006492104652706571,"score_gpt":0.18432112358130184,"score_spread":0.17782901892859526,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3053781714","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9688993,0.00024827555,0.00093464204,0.00024373177,0.00003007303,0.000118659715,0.014610121,0.0002565862,0.014658522],"genre_scores_gemma":[0.9767851,0.00026842905,0.003221631,0.00014541594,0.000008509174,0.0000557302,0.004778842,0.00006684927,0.014669441],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996123,0.0000149591515,0.000009572588,0.00008352947,0.0001893601,0.000090417554],"domain_scores_gemma":[0.99946505,0.000015573885,0.000019547559,0.000012910935,0.00039290675,0.00009400177],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00022990596,0.0004106463,0.0003184188,0.0008921203,0.0035361096,0.0011362275,0.0008030491,0.00046281173,0.0028422],"category_scores_gemma":[0.00049183436,0.0003243437,0.00025699247,0.0017528707,0.00048067395,0.0004000158,0.00068156037,0.0004495965,0.0005885844],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00076619076,0.00026489882,0.8542184,0.00015696562,0.000257588,0.0006565099,0.003576622,0.005488281,0.04351387,0.00055896473,0.018289637,0.07225203],"study_design_scores_gemma":[0.00004138104,0.00007381444,0.9707022,0.000029701137,0.000060962608,0.00009650125,0.002156697,0.0041315113,0.0067122923,0.00006915021,0.015883623,0.000042180873],"about_ca_topic_score_codex":0.9933543,"about_ca_topic_score_gemma":0.99766254,"teacher_disagreement_score":0.0127674965,"about_ca_system_score_codex":0.0127674965,"about_ca_system_score_gemma":0.021714719,"threshold_uncertainty_score":0.092635095},"labels":[],"label_agreement":null},{"id":"W3071163500","doi":"","title":"Sedimentology of mega-scale glacial lineations on the Dubawnt Lake Palaeo-Ice Stream bed, Canada and implications for lineation genesis","year":2014,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Lineation; Geology; Sedimentology; Glacial period; Biogeosciences; Geomorphology; Scale (ratio); Physical geography; Paleontology; Earth science; Cartography; Geography","score_opus":0.016319587049964987,"score_gpt":0.24131528205778077,"score_spread":0.2249956950078158,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3071163500","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985259,0.00006476219,0.00005564219,0.000021716109,0.000001537881,0.0000056853464,0.0004829416,0.000005793975,0.0008360234],"genre_scores_gemma":[0.99888366,0.000051960105,0.000093592156,0.0000062248296,8.24157e-7,0.0000031922837,0.0002484603,0.000003396004,0.0007086455],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998934,0.000007884137,0.000008772738,0.000022902379,0.000027697904,0.000039347553],"domain_scores_gemma":[0.99946815,0.00002994466,0.00008372646,0.000013415204,0.00029596908,0.000108780885],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00014492207,0.00014604865,0.00016512258,0.0015860179,0.0020930364,0.0010880568,0.00051265967,0.00021382638,0.001522987],"category_scores_gemma":[0.0006911854,0.00022997151,0.00014792617,0.0028989646,0.0009337612,0.00028572572,0.0005418791,0.0001775158,0.00015982901],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00012000674,0.000019528801,0.9825906,0.00003006699,0.000034853678,0.00018003347,0.00259102,0.00095108274,0.0036767742,0.0002507054,0.00046547467,0.00908979],"study_design_scores_gemma":[0.0000013681124,0.0000036596282,0.99851006,0.0000041350195,0.000004510401,0.000019264988,0.00073249236,0.0002524615,0.00010715849,0.000010509413,0.0003518442,0.0000024702092],"about_ca_topic_score_codex":0.9689388,"about_ca_topic_score_gemma":0.99102545,"teacher_disagreement_score":0.031061172,"about_ca_system_score_codex":0.009515931,"about_ca_system_score_gemma":0.0059920964,"threshold_uncertainty_score":0.06904322},"labels":[],"label_agreement":null},{"id":"W3082211349","doi":"","title":"Mesoscale variability of the absolute dynamic topography in the Drake Passage and Scotia Sea in 1993-2014","year":2016,"lang":"en","type":"article","venue":"EGUGA","topic":"Oceanographic and Atmospheric Processes","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Mesoscale meteorology; Geology; Nova scotia; Oceanography; Climatology","score_opus":0.0032877934734150396,"score_gpt":0.1775284028081554,"score_spread":0.17424060933474037,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3082211349","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9977592,0.00012909019,0.000029096484,0.00008313437,0.000011111052,0.0000034281209,0.0014000579,0.0000044701146,0.00058032887],"genre_scores_gemma":[0.9984333,0.000069373134,0.000029971594,0.000013136746,0.00000490278,0.0000024918882,0.0009697595,0.0000014160096,0.0004755868],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998815,0.000010312958,0.00001098963,0.000031547508,0.00001976868,0.0000458419],"domain_scores_gemma":[0.9995509,0.000039243885,0.00012040187,0.00002918506,0.00015379717,0.00010649024],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00025059617,0.00014396758,0.00016147911,0.0006778687,0.00038796864,0.000564865,0.00027030695,0.00031625896,0.0010071597],"category_scores_gemma":[0.0007883474,0.00015658769,0.00032432206,0.0009943055,0.0003946672,0.00025366398,0.00070814457,0.00030908268,0.00016547028],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00023991072,0.0000230486,0.9903713,0.0000375801,0.00012112082,0.00027847363,0.000746753,0.0010407451,0.001982337,0.00021122053,0.0010960669,0.003851437],"study_design_scores_gemma":[0.0000011663192,0.0000033555843,0.9994295,0.0000030508543,0.000004488697,0.000012658953,0.00012017171,0.00015024946,0.000020406866,0.0000038865373,0.0002497262,0.0000012767872],"about_ca_topic_score_codex":0.76816833,"about_ca_topic_score_gemma":0.8740355,"teacher_disagreement_score":0.76816833,"about_ca_system_score_codex":0.0028038106,"about_ca_system_score_gemma":0.0017723503,"threshold_uncertainty_score":0.4663939},"labels":[],"label_agreement":null},{"id":"W3085540195","doi":"","title":"Dynamics of the thermal aureole of the Sudbury impact melt sheet, Canada","year":2018,"lang":"en","type":"article","venue":"EGUGA","topic":"Planetary Science and Exploration","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Geology; Fact sheet; Computer science","score_opus":0.005470165341701804,"score_gpt":0.20100728308391796,"score_spread":0.19553711774221616,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3085540195","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9869603,0.00019745933,0.00014630293,0.0002762563,0.000016867836,0.000017814966,0.0010674647,0.000050955015,0.011266683],"genre_scores_gemma":[0.9975526,0.000081177495,0.00006471541,0.000020262543,0.0000032728512,0.0000033728322,0.00031378376,0.000012192713,0.0019485565],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99986446,0.0000037215239,0.0000030325739,0.000016466034,0.000041919844,0.00007035588],"domain_scores_gemma":[0.9996861,0.000021374755,0.000025710711,0.0000084662115,0.00015611427,0.00010215372],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00013128656,0.00027376605,0.00039411642,0.0011486455,0.0031871232,0.0016265073,0.00075424684,0.00066561165,0.0047599818],"category_scores_gemma":[0.0007441984,0.00026670942,0.00028947394,0.0009861947,0.0010878283,0.0005075178,0.000989782,0.0006707825,0.0002834104],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0020661687,0.0003998156,0.7184174,0.00022029172,0.00039480842,0.0025753337,0.0049874275,0.15091886,0.050282896,0.011589002,0.016518287,0.04162968],"study_design_scores_gemma":[0.000058596,0.000047503236,0.9368117,0.000051210303,0.000051438346,0.000078771656,0.0019905013,0.049984526,0.001700948,0.00044402314,0.00870454,0.00007630735],"about_ca_topic_score_codex":0.97904265,"about_ca_topic_score_gemma":0.98161936,"teacher_disagreement_score":0.02095735,"about_ca_system_score_codex":0.020634117,"about_ca_system_score_gemma":0.013611589,"threshold_uncertainty_score":0.14971167},"labels":[],"label_agreement":null},{"id":"W31061859","doi":"10.1016/j.dib.2019.103913","title":"World strength map: preliminary results","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Anaerobic Digestion and Biogas Production","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"","funders":"Ontario Water Consortium","keywords":"Computer science; Artificial intelligence","score_opus":0.005829954975691148,"score_gpt":0.19607313943868498,"score_spread":0.19024318446299385,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W31061859","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.054358717,0.00056610134,0.0061960984,0.001279541,0.0001797966,0.00016690604,0.89327484,0.0025891243,0.04138887],"genre_scores_gemma":[0.09592749,0.00043002385,0.012323758,0.00016832318,0.000080682745,0.0003072842,0.8794414,0.00037065338,0.010950425],"study_design_codex":"not_applicable","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9992429,0.00019973489,0.000041345214,0.00017049935,0.00021919416,0.00012641023],"domain_scores_gemma":[0.9978671,0.000625104,0.0001471529,0.00040131973,0.0007282099,0.00023105976],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0009960481,0.00070889236,0.00044429992,0.004286993,0.00053014734,0.0014215845,0.0011151376,0.0006644463,0.040904716],"category_scores_gemma":[0.0060256748,0.00016907735,0.0008645423,0.0060118306,0.00023539556,0.0016309267,0.0012355073,0.00064068264,0.022567302],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001004206,0.00046656426,0.0882738,0.0008455319,0.00044908837,0.0004001742,0.0002654032,0.021605648,0.00072211085,0.0072408896,0.6707,0.2080266],"study_design_scores_gemma":[0.00026256795,0.00023974586,0.18891913,0.00034946293,0.00019768332,0.0005196875,0.0019590377,0.036624856,0.0017244285,0.0130702695,0.7560101,0.00012306552],"about_ca_topic_score_codex":0.023705285,"about_ca_topic_score_gemma":0.027802672,"teacher_disagreement_score":0.040904716,"about_ca_system_score_codex":0.00059212133,"about_ca_system_score_gemma":0.00083747815,"threshold_uncertainty_score":0.13683993},"labels":[],"label_agreement":null},{"id":"W316410417","doi":"","title":"Dendrochronology to the Beat of a Different Drummer: Lakes Dammed by a Tidewater Glacier Out of Phase with Climate","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Simon Fraser University","funders":"","keywords":"Tidewater; Glacier; Tidewater glacier cycle; Geology; Glacier mass balance; Surge; Glacier terminus; Cirque glacier; Glacier morphology; Climate change; Shoal; Physical geography; Climatology; Ice calving; Oceanography; Geomorphology; Ice stream; Geography; Cryosphere; Sea ice","score_opus":0.012754515818129513,"score_gpt":0.2572849967894553,"score_spread":0.24453048097132582,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W316410417","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.5277145,0.0062481626,0.018738374,0.006397069,0.004846754,0.00028209205,0.017884888,0.002244286,0.4156438],"genre_scores_gemma":[0.8710802,0.0015525823,0.0052762376,0.00063861697,0.00035358436,0.00007612433,0.006178762,0.0003828586,0.11446097],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.99988437,0.000018875842,0.00000780121,0.00003687655,0.000022264754,0.00002982176],"domain_scores_gemma":[0.99898714,0.00008059209,0.00013275533,0.00009826234,0.00033745822,0.00036369884],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021816322,0.00018092507,0.0001646302,0.0021330551,0.0016380971,0.0015524885,0.00022973724,0.00048915186,0.025603088],"category_scores_gemma":[0.0011693421,0.00010070055,0.0001490619,0.002149932,0.0007558841,0.0010222129,0.00080761866,0.0008632236,0.0055839512],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0015277204,0.00015321704,0.25662866,0.0008238789,0.00015232177,0.0021136522,0.012926704,0.0023710802,0.028835462,0.13387859,0.29182068,0.26876807],"study_design_scores_gemma":[0.0000376582,0.00010584311,0.27928936,0.00017737123,0.000043620996,0.001217792,0.0037843215,0.0019101801,0.0024013182,0.012584511,0.6983992,0.000048801052],"about_ca_topic_score_codex":0.008457535,"about_ca_topic_score_gemma":0.026383547,"teacher_disagreement_score":0.025603088,"about_ca_system_score_codex":0.0010205421,"about_ca_system_score_gemma":0.00075759174,"threshold_uncertainty_score":0.08565086},"labels":[],"label_agreement":null},{"id":"W3176639326","doi":"","title":"Polar Tidal Signatures in the Extended Canadian Middle Atmosphere Model (CMAM)","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Methane Hydrates and Related Phenomena","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Atmosphere (unit); Polar; Atmospheric model; Atmospheric sciences; Meteorology; Geology; Environmental science; Astrobiology; Geography; Physics; Astronomy","score_opus":0.011158691760374744,"score_gpt":0.2053446244933329,"score_spread":0.19418593273295817,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3176639326","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.95447916,0.0006185369,0.004111981,0.001288071,0.00024261093,0.00009124647,0.022199955,0.0023823387,0.014586199],"genre_scores_gemma":[0.9892942,0.00018835622,0.0028437104,0.00012239625,0.000025019472,0.00003324682,0.0055878754,0.00030424804,0.0016009927],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99976176,0.000039413197,0.000010564446,0.000055649885,0.000052321524,0.000080208316],"domain_scores_gemma":[0.99943286,0.000087923654,0.000030999596,0.00005086981,0.00026121596,0.00013623093],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005555673,0.00068319694,0.0005369761,0.00053700246,0.0017125509,0.0015357456,0.0021926318,0.0015143169,0.0030598247],"category_scores_gemma":[0.00197679,0.000603922,0.0006594926,0.0014216711,0.00061092933,0.0011605523,0.0008063233,0.0012086602,0.00052604266],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006122056,0.00016394473,0.048595972,0.00012865226,0.00025779047,0.00019969387,0.00032369987,0.91448855,0.0038103338,0.0041301483,0.014758167,0.012530751],"study_design_scores_gemma":[0.00040384158,0.000033610453,0.041059513,0.000030079955,0.00010327789,0.000023372466,0.0001717834,0.9482404,0.0015539641,0.0007355939,0.0075188023,0.00012567858],"about_ca_topic_score_codex":0.9396155,"about_ca_topic_score_gemma":0.9223993,"teacher_disagreement_score":0.060384512,"about_ca_system_score_codex":0.0071324892,"about_ca_system_score_gemma":0.00913033,"threshold_uncertainty_score":0.12148023},"labels":[],"label_agreement":null},{"id":"W3203514382","doi":"","title":"Peatlands in a eutrophic world - assessing the state of a poor fen-bog transition in southern Ontario, Canada, after long term nutrient input and altered hydrological conditions","year":2017,"lang":"en","type":"article","venue":"EGUGA","topic":"Peatlands and Wetlands Ecology","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of Guelph","funders":"","keywords":"Peat; Ombrotrophic; Bog; Environmental science; Nutrient; Eutrophication; Mire; Wetland; Hydrology (agriculture); Graminoid; Vegetation (pathology); Water table; Ecology; Ecological succession; Geology; Plant community; Groundwater; Biology","score_opus":0.009844634830506684,"score_gpt":0.23342501798608542,"score_spread":0.22358038315557874,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W3203514382","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99921536,0.00008633009,0.000021369031,0.000020882917,7.737545e-7,0.0000066574808,0.00028979778,0.0000018526462,0.00035699623],"genre_scores_gemma":[0.99898225,0.00007316324,0.00008394769,0.000012535868,5.6634224e-7,0.000005194177,0.00022588496,0.0000011879915,0.0006152247],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998882,0.000007689658,0.000006137914,0.000019012296,0.000025644591,0.000053378135],"domain_scores_gemma":[0.99961936,0.000020337024,0.00006427424,0.000012230868,0.00015563323,0.00012822493],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00018952612,0.00016175944,0.0001640587,0.00077534,0.0013878305,0.0006857969,0.00033180267,0.0002047508,0.00069812156],"category_scores_gemma":[0.00037166383,0.00013946136,0.00013914403,0.0009700148,0.00054544373,0.00022332183,0.0003902467,0.00015499967,0.0000971506],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00015364465,0.000026313037,0.9847711,0.000041964948,0.000025179628,0.00045138455,0.0034464838,0.0001578186,0.0050520436,0.00007545764,0.00022018467,0.00557846],"study_design_scores_gemma":[0.0000011307875,0.000008744054,0.99778444,0.0000047216504,0.0000033894762,0.000027504904,0.0015935744,0.000090532994,0.000089171495,0.0000066758184,0.00038799067,0.0000021042206],"about_ca_topic_score_codex":0.9778266,"about_ca_topic_score_gemma":0.996349,"teacher_disagreement_score":0.022173405,"about_ca_system_score_codex":0.009100474,"about_ca_system_score_gemma":0.006454799,"threshold_uncertainty_score":0.06602895},"labels":[],"label_agreement":null},{"id":"W321160435","doi":"","title":"Changepoint Detection in Multinomial Logistic Regression with Application to Sky-Cloudiness Conditions in Canada","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Grey System Theory Applications","field":"Decision Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Multinomial logistic regression; Cloud cover; Multinomial distribution; Logistic regression; Sky; Statistics; Geography; Mathematics; Remote sensing; Computer science; Econometrics; Environmental science; Meteorology; Cloud computing","score_opus":0.05454024695938879,"score_gpt":0.3505045801121125,"score_spread":0.2959643331527237,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W321160435","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.98261124,0.00067409006,0.012801787,0.00072018197,0.000028429362,0.00005606202,0.0010049086,0.00023290265,0.0018703227],"genre_scores_gemma":[0.995631,0.00014924766,0.003143393,0.000015042216,0.000005034554,0.000006975694,0.00029029784,0.000011417396,0.0007477664],"study_design_codex":"observational","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99910384,0.000247277,0.000043576896,0.00017555128,0.000223077,0.00020666815],"domain_scores_gemma":[0.9955947,0.0024031878,0.00026945348,0.00014281878,0.0013810385,0.00020890549],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.002198853,0.00037537058,0.0007545592,0.0015254638,0.0012482462,0.0016746154,0.0015744332,0.00073722866,0.0009966932],"category_scores_gemma":[0.011891439,0.0002588466,0.0004735299,0.0034985512,0.00071188237,0.0006268627,0.0007587391,0.00074456516,0.000117607575],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0006965153,0.00016428085,0.67084914,0.0001914986,0.00019154865,0.00085770455,0.0011530229,0.20949925,0.0014565939,0.004413601,0.0045558712,0.10597081],"study_design_scores_gemma":[0.000041399027,0.00004002927,0.30237588,0.000029445528,0.00006303635,0.0000708809,0.0012369384,0.6922774,0.00080849975,0.0014133868,0.0015838753,0.000059190348],"about_ca_topic_score_codex":0.98599374,"about_ca_topic_score_gemma":0.98045254,"teacher_disagreement_score":0.014006257,"about_ca_system_score_codex":0.0124752335,"about_ca_system_score_gemma":0.013608893,"threshold_uncertainty_score":0.0905146},"labels":[],"label_agreement":null},{"id":"W323921724","doi":"","title":"Conditionally dependent multiplicative cascade information integration processes in prediction of undiscovered mineral deposits","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geochemistry and Geologic Mapping","field":"Computer Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"York University","funders":"","keywords":"Multiplicative function; Cascade; Geology; Computer science; Mathematics; Engineering","score_opus":0.010631575855036553,"score_gpt":0.222954543878036,"score_spread":0.21232296802299946,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W323921724","genre_codex":"methods","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.17139585,0.0012244249,0.8239902,0.000622304,0.00012350766,0.00009129336,0.00020479472,0.000750347,0.0015971948],"genre_scores_gemma":[0.92938596,0.00037431018,0.06682428,0.0001513137,0.00017139156,0.0001105527,0.00029202714,0.000056798344,0.0026332685],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99857986,0.00051583024,0.00010424723,0.00036961035,0.0002626407,0.00016787842],"domain_scores_gemma":[0.98289055,0.014371862,0.0006017165,0.0006955192,0.0011898493,0.00025056244],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.006805491,0.00093721465,0.002123353,0.0015009422,0.00086757174,0.001494727,0.0027090865,0.0022071798,0.002056339],"category_scores_gemma":[0.016937898,0.0010415199,0.00093439047,0.0014271364,0.0013735305,0.004430895,0.0020882932,0.002083402,0.00033722998],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0014257485,0.00047879972,0.006396312,0.00017673032,0.00028176347,0.00019885736,0.00017902651,0.75409263,0.0032668312,0.046531778,0.0023237444,0.1846478],"study_design_scores_gemma":[0.000008664756,0.000018530933,0.00025592538,0.0000029271384,0.000016561116,0.0000069717353,0.0000023622522,0.994749,0.00038527953,0.004512098,0.000036304995,0.00000541277],"about_ca_topic_score_codex":0.009263233,"about_ca_topic_score_gemma":0.0095649995,"teacher_disagreement_score":0.009263233,"about_ca_system_score_codex":0.0012908198,"about_ca_system_score_gemma":0.0014699725,"threshold_uncertainty_score":0.03599131},"labels":[],"label_agreement":null},{"id":"W33138952","doi":"10.1016/j.sste.2020.100371","title":"What causes the barren bottoms of the Baltic","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and coastal ecosystems","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":true,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"Ontario Veterinary College, University of Guelph; Government of Ontario","keywords":"Eutrophication; Hypoxia (environmental); Biogeochemical cycle; Environmental science; Nutrient; Benthic zone; Baltic sea; Oceanography; Ecosystem; Phosphorus; Biogeochemistry; Ecology; Biology; Oxygen; Geology; Chemistry","score_opus":0.006983779271043922,"score_gpt":0.186457883916151,"score_spread":0.17947410464510707,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W33138952","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9924114,0.00055350515,0.00016926588,0.0015130464,0.000049031027,0.000013563532,0.00029699272,0.0000144149035,0.0049787983],"genre_scores_gemma":[0.9975553,0.00029586023,0.00023933276,0.00028863837,0.000018437857,0.0000061482524,0.00019903714,0.0000061492965,0.0013910658],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99961275,0.000058331912,0.000022016973,0.000087912646,0.0000740774,0.00014491014],"domain_scores_gemma":[0.99928826,0.00003944013,0.0003207734,0.000048128233,0.00017418952,0.00012922908],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00038775566,0.0002197207,0.00023421264,0.0006996258,0.0017139455,0.0013835022,0.0005350711,0.00070249,0.0038005456],"category_scores_gemma":[0.0015287101,0.00019365583,0.0003013722,0.0008915756,0.0013294226,0.0010115843,0.001068969,0.000519756,0.00048089115],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000046166733,0.000048940317,0.97503006,0.00007133545,0.0000593322,0.0003662929,0.002505909,0.00017360863,0.0010961767,0.0004706558,0.0017906089,0.018340915],"study_design_scores_gemma":[0.0000029215319,0.000030117615,0.98474634,0.000081971215,0.000021698015,0.00010942338,0.009975549,0.00024271732,0.00012410212,0.00020562623,0.0044522774,0.0000072032612],"about_ca_topic_score_codex":0.2544256,"about_ca_topic_score_gemma":0.50945085,"teacher_disagreement_score":0.2544256,"about_ca_system_score_codex":0.0019548305,"about_ca_system_score_gemma":0.0017952851,"threshold_uncertainty_score":0.5058893},"labels":[],"label_agreement":null},{"id":"W333155","doi":"","title":"Geoelectrical anomalies and diamonds in the Ukrainian Shield","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Mining and Gasification Technologies","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Kimberlite; Mantle (geology); Geology; Crust; Lithosphere; Geophysics; Shield; Petrology; Partial melting; Geochemistry; Seismology; Tectonics","score_opus":0.008384640978853967,"score_gpt":0.20131668096985256,"score_spread":0.1929320399909986,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W333155","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9991474,0.00016129855,0.000030022822,0.000018691242,6.1288915e-7,5.4256054e-7,0.000083710525,0.00000367212,0.000553915],"genre_scores_gemma":[0.99978215,0.00004597977,0.0000165859,0.0000018734062,3.3988982e-7,1.7231218e-7,0.00005347131,4.4736e-7,0.000098966564],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99996173,0.000003774686,0.0000033121867,0.000010524169,0.000009071172,0.000011612058],"domain_scores_gemma":[0.99993384,0.0000071765917,0.000029954126,0.0000041202584,0.000014522048,0.000010361272],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000050884784,0.000059081358,0.000097791555,0.0008374705,0.00022762708,0.00028717122,0.000103447885,0.00007457159,0.00037072218],"category_scores_gemma":[0.0001173016,0.00005326867,0.000059578564,0.0006820718,0.00033420848,0.00012471805,0.00035609692,0.000085076805,0.000046357276],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017372424,0.000021006876,0.95025617,0.000053165324,0.000056410387,0.0017098018,0.0027680742,0.0010064576,0.014996283,0.0015239537,0.00027155006,0.02716334],"study_design_scores_gemma":[0.0000023909577,0.00001744841,0.99585694,0.0000065325294,0.000006848043,0.00054437283,0.00084134267,0.00030345845,0.0006591339,0.00020020876,0.0015583697,0.0000030037643],"about_ca_topic_score_codex":0.03147143,"about_ca_topic_score_gemma":0.029466374,"teacher_disagreement_score":0.03147143,"about_ca_system_score_codex":0.00056993886,"about_ca_system_score_gemma":0.00032004982,"threshold_uncertainty_score":0.06257647},"labels":[],"label_agreement":null},{"id":"W333522947","doi":"","title":"Fold-Related Fractures and Postfolding Fracturing, Rock Mass Condition Analyses and Geological Modelling in Turtle Mountain (Alberta Canada).","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Anticline; Geology; Foothills; Turtle (robot); Paleozoic; Clastic rock; Thrust fault; Geomorphology; Paleontology; Sedimentary rock; Geography; Tectonics; Fishery; Cartography","score_opus":0.02487430702944971,"score_gpt":0.2627962822019115,"score_spread":0.23792197517246177,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W333522947","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9875892,0.00077908137,0.005326033,0.00025989747,0.000016974567,0.00003821839,0.0018774732,0.00016801296,0.003945104],"genre_scores_gemma":[0.99102086,0.00037519835,0.003357677,0.000018512328,0.0000043230266,0.000018609187,0.0012935316,0.000023946817,0.0038872268],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.99994016,0.000008780723,0.000002925656,0.0000100960015,0.00001732413,0.000020652371],"domain_scores_gemma":[0.99980026,0.0000538631,0.000026806747,0.000008911401,0.000069596295,0.000040568182],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0001992557,0.0003095935,0.00016739621,0.0005925659,0.00084649917,0.00086021965,0.00084004644,0.00048226648,0.0024154545],"category_scores_gemma":[0.00069922325,0.00024241721,0.00023210386,0.0008551682,0.00046240562,0.00026120327,0.00027458422,0.00028991033,0.000207474],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00020940034,0.00018347357,0.20684333,0.000108567525,0.000078733145,0.0005136695,0.0003499381,0.7397072,0.001422761,0.0031253733,0.0049310746,0.042526443],"study_design_scores_gemma":[0.000025566314,0.000028129063,0.145234,0.00003155333,0.000028690918,0.00007297168,0.0008574635,0.8495515,0.00035150148,0.0009197442,0.0028727278,0.000026187285],"about_ca_topic_score_codex":0.9774476,"about_ca_topic_score_gemma":0.9849161,"teacher_disagreement_score":0.022552371,"about_ca_system_score_codex":0.0056194398,"about_ca_system_score_gemma":0.006138261,"threshold_uncertainty_score":0.04537034},"labels":[],"label_agreement":null},{"id":"W339188483","doi":"","title":"Sedimentary Records of Mercury and Organic Matter in Canadian Lakes; Relationship between Climate Change and Contaminants","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Mercury impact and mitigation studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Sedimentary depositional environment; Sedimentary rock; Arctic; Sedimentary organic matter; Climate change; Mercury (programming language); Organic matter; Biogenic silica; Geology; Geologic record; Sediment; Kerogen; Environmental science; Oceanography; Physical geography; Geochemistry; Ecology; Source rock; Paleontology; Geography; Structural basin","score_opus":0.029408264765986653,"score_gpt":0.2592625468196705,"score_spread":0.22985428205368383,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W339188483","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9957767,0.00074860547,0.0000637759,0.000088858586,0.0000032497505,0.000005022624,0.0023122146,0.000011337012,0.000990289],"genre_scores_gemma":[0.9978969,0.00040470203,0.00016839997,0.000024416433,0.0000027809642,0.0000032531375,0.0010994045,0.0000024658264,0.0003976552],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997756,0.000011828183,0.000015095501,0.00004455548,0.00009315732,0.000059688155],"domain_scores_gemma":[0.9989749,0.000060631453,0.00023983454,0.000027342296,0.0005715074,0.00012583238],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.000312965,0.00019786076,0.00018830987,0.0023036432,0.0017787743,0.00087485235,0.0004974818,0.00023883073,0.0006311833],"category_scores_gemma":[0.00103661,0.00017933961,0.00017962592,0.005171934,0.0006552675,0.00028732102,0.00054510514,0.00022399376,0.000080629936],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00006214352,0.00000929071,0.99077016,0.000038674174,0.00007800842,0.00007974145,0.0005819825,0.00026169512,0.0016802787,0.000078069155,0.0003507983,0.006009206],"study_design_scores_gemma":[7.440838e-7,0.0000029682285,0.9990578,0.000003493774,0.000008418104,0.00001673428,0.00017204612,0.00009308822,0.00011844319,0.0000065959625,0.0005168021,0.000002912306],"about_ca_topic_score_codex":0.98105067,"about_ca_topic_score_gemma":0.9932027,"teacher_disagreement_score":0.01894933,"about_ca_system_score_codex":0.009651342,"about_ca_system_score_gemma":0.0071296976,"threshold_uncertainty_score":0.07002574},"labels":[],"label_agreement":null},{"id":"W343403177","doi":"","title":"Explanation of observable secular variations of gravity and alternative methods of determination of drift of the center of mass of the Earth","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysics and Gravity Measurements","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Secular variation; Gravimetry; Geodesy; Geology; Gravity of Earth; Mantle (geology); Gravimeter; Observable; Geophysics; Gravitational field; Physics; Astronomy","score_opus":0.021730268282669538,"score_gpt":0.25438482225121684,"score_spread":0.23265455396854728,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W343403177","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.16038316,0.0076007815,0.81811047,0.0015509637,0.001036913,0.00009539681,0.001311862,0.00068451307,0.009225953],"genre_scores_gemma":[0.7824264,0.002230872,0.20966126,0.00023491701,0.0005491473,0.00017239376,0.0011945849,0.00006787369,0.0034625502],"study_design_codex":"theoretical_or_conceptual","study_design_gemma":"theoretical_or_conceptual","domain_scores_codex":[0.9988667,0.00038717,0.00008766576,0.00030196342,0.0002973718,0.00005921204],"domain_scores_gemma":[0.9976683,0.000972696,0.00040324376,0.00042932504,0.0004513171,0.00007494941],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0014830403,0.0006201994,0.00035287937,0.0020347724,0.00025272203,0.0009231735,0.0009341292,0.00067862554,0.002196493],"category_scores_gemma":[0.004642106,0.00015622021,0.000438478,0.0017219752,0.0011699649,0.0009864174,0.0008804586,0.0006616952,0.00033239633],"study_design_candidate":"theoretical_or_conceptual","study_design_consensus":"theoretical_or_conceptual","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0007814541,0.000102270234,0.16910972,0.0016669288,0.00045142358,0.0018745718,0.0015658214,0.035547797,0.025023911,0.39208362,0.008229265,0.36356312],"study_design_scores_gemma":[0.00020105526,0.00053757994,0.20793723,0.0002834716,0.0002221538,0.004083165,0.0010486025,0.48661906,0.015847757,0.20808919,0.07483178,0.00029900664],"about_ca_topic_score_codex":0.0017554882,"about_ca_topic_score_gemma":0.0020639128,"teacher_disagreement_score":0.002196493,"about_ca_system_score_codex":0.00088587246,"about_ca_system_score_gemma":0.0007084733,"threshold_uncertainty_score":0.007843137},"labels":[],"label_agreement":null},{"id":"W347126045","doi":"","title":"Topographic control of the depth of ground thaw in a peat covered continuous permafrost site in the Canadian arctic tundra","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Climate change and permafrost","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Permafrost; Tundra; Snowmelt; Hydrology (agriculture); Environmental science; Peat; Arctic; Surface runoff; Soil water; Snow; Geology; Soil science; Geomorphology; Ecology; Oceanography; Geotechnical engineering","score_opus":0.015117035797771693,"score_gpt":0.21001298010978625,"score_spread":0.19489594431201457,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W347126045","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.999102,0.000030211993,0.000044108656,0.000022260341,0.0000013962211,0.0000028186134,0.0001556889,0.0000049814175,0.0006364662],"genre_scores_gemma":[0.99970955,0.000013550138,0.000057226618,0.0000039747474,5.8051796e-7,0.0000011134804,0.00008875798,0.0000014514825,0.00012375491],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998332,0.00002106914,0.000006304181,0.000031967982,0.000037059326,0.00007033691],"domain_scores_gemma":[0.99962604,0.00004889656,0.00006274744,0.000018065592,0.00015233683,0.00009183516],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00021921411,0.00011433239,0.00019201318,0.00073738256,0.0014052291,0.00067059847,0.00040185914,0.00021559556,0.00089162024],"category_scores_gemma":[0.0006393477,0.00011187242,0.00013871772,0.0008267018,0.00072776736,0.00015386418,0.0003784531,0.00016800688,0.00008837562],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018830768,0.00004311308,0.97445434,0.000019375759,0.000051503095,0.00028807434,0.0014900763,0.0017859321,0.008563212,0.00021032157,0.00044282916,0.0124629],"study_design_scores_gemma":[0.0000019064938,0.0000056569975,0.9986511,0.00000283992,0.000003985205,0.00002892026,0.00042026432,0.0005219133,0.00012146425,0.000013862613,0.000224208,0.0000038956214],"about_ca_topic_score_codex":0.88961655,"about_ca_topic_score_gemma":0.97040623,"teacher_disagreement_score":0.11038345,"about_ca_system_score_codex":0.003739115,"about_ca_system_score_gemma":0.0034226193,"threshold_uncertainty_score":0.222067},"labels":[],"label_agreement":null},{"id":"W37201475","doi":"","title":"Closure of Tethys and early stages of Himalayan evolution: constraints from the detrital record, Ladakh, India","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Geology and Paleoclimatology Research","field":"Earth and Planetary Sciences","cited_by":2,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"DEPT; Queen (butterfly); Archaeology; Library science; Closure (psychology); Geography; Earth science; Geology; Political science; Ecology; Chemistry; Law; Biology","score_opus":0.011697441520295428,"score_gpt":0.22279041866128999,"score_spread":0.21109297714099456,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W37201475","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9972818,0.0004988534,0.000096893345,0.0000636447,0.000002698838,0.0000018351194,0.00025997972,0.000009700629,0.001784536],"genre_scores_gemma":[0.9993955,0.00017999462,0.000042577514,0.000008284341,0.0000036814238,0.0000013569161,0.00023179843,0.0000035023522,0.00013328365],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9998049,0.000048396756,0.00002295414,0.000051264935,0.000023525814,0.00004901892],"domain_scores_gemma":[0.9991579,0.00031551495,0.00020099599,0.00009616231,0.000119783945,0.000109675115],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00034980092,0.00022264128,0.00029946756,0.0017997264,0.0008938961,0.0014373747,0.0005183682,0.0002015813,0.0018111264],"category_scores_gemma":[0.0013565994,0.0002045067,0.00021102304,0.0029010826,0.0013528456,0.0004658192,0.0010929093,0.00036414404,0.00034528263],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0005346973,0.000029238297,0.9550861,0.00020682847,0.00026632272,0.00082073244,0.0086029,0.0022723314,0.0068753143,0.0029029406,0.0005307498,0.021871828],"study_design_scores_gemma":[0.00000437324,0.000017984106,0.99741554,0.000017662722,0.000030461488,0.00013559144,0.001031094,0.00031856625,0.0002240141,0.00013381022,0.00066330354,0.000007485953],"about_ca_topic_score_codex":0.05846958,"about_ca_topic_score_gemma":0.110670105,"teacher_disagreement_score":0.05846958,"about_ca_system_score_codex":0.0009789608,"about_ca_system_score_gemma":0.00072058593,"threshold_uncertainty_score":0.1162585},"labels":[{"model":"gemma","categories":[],"domain":null,"study_design":"observational","genre":"empirical","about_ca_system":false,"about_ca_topic":false,"confidence":"low"},{"model":"gpt","categories":[],"domain":null,"study_design":"observational","genre":"empirical","about_ca_system":false,"about_ca_topic":false,"confidence":"low"}],"label_agreement":"agree"},{"id":"W42642398","doi":"","title":"Excitation of obliquely propagating whistler waves by an electron beam","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Radio Wave Propagation Studies","field":"Engineering","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Alberta","funders":"","keywords":"Whistler; Physics; Excitation; Cathode ray; Optics; Electron","score_opus":0.006732489457525193,"score_gpt":0.22774591962970525,"score_spread":0.22101343017218006,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W42642398","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.979901,0.00021889298,0.0067138765,0.000060953138,0.00002957023,0.000022392547,0.000021497131,0.000028643097,0.013003224],"genre_scores_gemma":[0.99119407,0.00022203838,0.0019905735,0.000024796773,0.0000112665375,0.000014158949,0.000024585108,0.000013285584,0.0065052677],"study_design_codex":"bench_or_experimental","study_design_gemma":"bench_or_experimental","domain_scores_codex":[0.999892,0.000023091814,0.0000032021567,0.000012252536,0.000032035936,0.00003741489],"domain_scores_gemma":[0.9996748,0.00015669271,0.000060665658,0.000042003885,0.000037838643,0.000027911165],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020768479,0.0002977222,0.00024248518,0.00030851862,0.0005083813,0.0005708296,0.00027671218,0.00035882916,0.0039228494],"category_scores_gemma":[0.00053930277,0.00023469479,0.00014790756,0.00033976242,0.0006842496,0.00040776044,0.00042514192,0.00037315636,0.00038006983],"study_design_candidate":"bench_or_experimental","study_design_consensus":"bench_or_experimental","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.001158101,0.00016439406,0.0050184284,0.00031008132,0.00003655667,0.0016899112,0.001944936,0.011329882,0.9068658,0.05707073,0.0005698919,0.013841355],"study_design_scores_gemma":[0.00018747446,0.0012690573,0.023997664,0.000086791915,0.00006731641,0.000945686,0.001788922,0.104888864,0.8508839,0.007312712,0.008475188,0.00009646732],"about_ca_topic_score_codex":0.00070982124,"about_ca_topic_score_gemma":0.00077485514,"teacher_disagreement_score":0.0039228494,"about_ca_system_score_codex":0.00019410282,"about_ca_system_score_gemma":0.00021193425,"threshold_uncertainty_score":0.013123214},"labels":[],"label_agreement":null},{"id":"W4685399","doi":"10.1210/jcem-36-3-622","title":"The GreenLand Ice Sheet monitoring Network (GLISN)","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":8,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Greenland ice sheet; Geology; Geography; Oceanography; Physical geography; Archaeology; Climatology; Ice sheet","score_opus":0.015757371023573646,"score_gpt":0.21397140243508678,"score_spread":0.19821403141151314,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W4685399","genre_codex":"dataset","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":null,"domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.088174395,0.0014423612,0.0029204276,0.00074335275,0.00035611138,0.00039087352,0.87687576,0.00081433274,0.02828247],"genre_scores_gemma":[0.08843928,0.0008635825,0.011648185,0.00049983413,0.000116040166,0.0005281371,0.8851595,0.00022454998,0.01252093],"study_design_codex":"not_applicable","study_design_gemma":"observational","domain_scores_codex":[0.99973494,0.000042917596,0.000028827855,0.00007430212,0.000075921955,0.000043133747],"domain_scores_gemma":[0.9990865,0.000047425943,0.00020482703,0.000084152205,0.00042339918,0.00015369919],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00084437564,0.00062448665,0.00033898445,0.0017686959,0.00033478567,0.0004985803,0.00049524434,0.00028001468,0.0041851625],"category_scores_gemma":[0.0009304765,0.00014754653,0.00013476024,0.0027603789,0.00014235174,0.0003864631,0.0006366604,0.0002768734,0.0017440966],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00077130756,0.00013004134,0.1480015,0.00072001666,0.00025919956,0.00027920151,0.00044958555,0.0054857796,0.0038934574,0.003440712,0.6824407,0.15412848],"study_design_scores_gemma":[0.00019749462,0.000075818796,0.39196113,0.00034276472,0.000082957806,0.000118276665,0.00038242651,0.0058918055,0.002072582,0.0010591787,0.597781,0.000034504443],"about_ca_topic_score_codex":0.1599604,"about_ca_topic_score_gemma":0.18884578,"teacher_disagreement_score":0.1599604,"about_ca_system_score_codex":0.0011219168,"about_ca_system_score_gemma":0.004549939,"threshold_uncertainty_score":0.3180586},"labels":[],"label_agreement":null},{"id":"W53972417","doi":"","title":"Report from ILEWG and Cape Canaveral Lunar Declaration 2008","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Space exploration and regulation","field":"Physics and Astronomy","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Charter; Declaration; Committee on Space Research; Political science; Space (punctuation); Work (physics); Public relations; Engineering; Computer science; Law; Astrobiology","score_opus":0.012059330414680157,"score_gpt":0.23509020582075682,"score_spread":0.22303087540607666,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W53972417","genre_codex":"other","genre_gemma":"other","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"other","genre_consensus":"other","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.0042896927,0.010457206,0.0020007903,0.039274257,0.036274277,0.0019437122,0.07430149,0.0014307305,0.8300279],"genre_scores_gemma":[0.009923896,0.005880555,0.0039358023,0.015596944,0.00304817,0.002921932,0.058010884,0.0015075533,0.89917433],"study_design_codex":"not_applicable","study_design_gemma":"not_applicable","domain_scores_codex":[0.9909917,0.0006961178,0.00060257135,0.00057968014,0.005884329,0.0012455372],"domain_scores_gemma":[0.9918201,0.0010147503,0.0009323232,0.0007627968,0.0046210163,0.0008490685],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.006371541,0.0012279085,0.0007472806,0.0041032853,0.0028447758,0.009713796,0.002745313,0.0050423653,0.08333801],"category_scores_gemma":[0.02259294,0.00083803886,0.0009552945,0.0050724535,0.00069436204,0.0036879878,0.005081454,0.0064732647,0.062516555],"study_design_candidate":"not_applicable","study_design_consensus":"not_applicable","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00003591232,0.000014632116,0.00026648922,0.00014857063,0.0000038253934,0.000076779346,0.00010666214,0.00006904894,0.000082449,0.004615492,0.9846065,0.009973719],"study_design_scores_gemma":[0.0000057936018,0.000004593075,0.0010746327,0.00017147805,0.0000020146308,0.000021297714,0.00007752286,0.000016793643,0.00008226438,0.00034174626,0.9981931,0.0000088089655],"about_ca_topic_score_codex":0.05911716,"about_ca_topic_score_gemma":0.03901711,"teacher_disagreement_score":0.08333801,"about_ca_system_score_codex":0.007155546,"about_ca_system_score_gemma":0.016351297,"threshold_uncertainty_score":0.2787934},"labels":[],"label_agreement":null},{"id":"W54912957","doi":"","title":"Turbulent fluxes and transfer of carbon dioxide in Arctic at the SEARCH station Eureka, Canada","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Arctic; Environmental science; Sea ice; Climatology; Oceanography; Meteorology; Geology; Geography","score_opus":0.00441448334703776,"score_gpt":0.18010480919009353,"score_spread":0.17569032584305577,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W54912957","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9882311,0.0003162176,0.00026943465,0.00017542916,0.000015155965,0.000019507583,0.0052839746,0.00003688044,0.005652194],"genre_scores_gemma":[0.9887389,0.00033492167,0.00081275176,0.00004364107,0.0000052062014,0.000013134579,0.0034219464,0.000027870203,0.006601654],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99976605,0.000008098725,0.0000064007313,0.000051058123,0.00010229271,0.00006604439],"domain_scores_gemma":[0.99963176,0.000015903619,0.000017134069,0.00000621927,0.00028557354,0.00004338838],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00023837708,0.00031604405,0.00030859155,0.0007711381,0.0024346819,0.0009465736,0.0006800039,0.00027523556,0.0012328053],"category_scores_gemma":[0.00038327623,0.00023267884,0.00026685823,0.0011835226,0.00033338778,0.00040137122,0.0004767065,0.00047339205,0.0002760368],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00081144704,0.00025155875,0.9121149,0.00011428519,0.00023133033,0.0007383815,0.0029900547,0.015067151,0.021721078,0.0017601226,0.0097762495,0.034423493],"study_design_scores_gemma":[0.000022133523,0.000017826967,0.9848092,0.000021322498,0.00002385307,0.00004038789,0.000979139,0.008549001,0.0016875176,0.0000757122,0.0037396518,0.000034335255],"about_ca_topic_score_codex":0.9916353,"about_ca_topic_score_gemma":0.99506867,"teacher_disagreement_score":0.014446353,"about_ca_system_score_codex":0.014446353,"about_ca_system_score_gemma":0.01653531,"threshold_uncertainty_score":0.10481614},"labels":[],"label_agreement":null},{"id":"W64113942","doi":"","title":"The impact of large-scale forest disturbance on hydrology in Central British Columbia, Canada","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Hydrology and Watershed Management Studies","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"University of British Columbia","funders":"","keywords":"Disturbance (geology); Hydrology (agriculture); Scale (ratio); Environmental science; Physical geography; Geography; Forestry; Archaeology; Geology; Cartography; Geomorphology","score_opus":0.00299549584889928,"score_gpt":0.196080208649466,"score_spread":0.19308471280056672,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W64113942","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9923942,0.0007290091,0.00006914667,0.0011107404,0.000023752718,0.000020376638,0.001329696,0.000018787974,0.004304334],"genre_scores_gemma":[0.9964192,0.00051106955,0.000077561606,0.00012461153,0.000006128321,0.000007234036,0.0004179132,0.00000825655,0.0024280609],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9993124,0.00009335299,0.00004908447,0.00008932594,0.00018147223,0.00027445322],"domain_scores_gemma":[0.9966059,0.00046131058,0.00029153944,0.00009463935,0.0015753305,0.000971334],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00054832926,0.00026155415,0.00031598832,0.0016039304,0.0031448249,0.0022026876,0.0010339037,0.00056387816,0.0035560287],"category_scores_gemma":[0.0026615795,0.00030306814,0.000329774,0.0029854309,0.0015107681,0.0006236302,0.0010743241,0.000906646,0.0002798068],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00017835014,0.00016511751,0.9646224,0.00007708335,0.00016249625,0.0006344414,0.0025502273,0.0017536778,0.00083255966,0.0005750941,0.006670766,0.021777822],"study_design_scores_gemma":[0.000009219086,0.000008063061,0.9933369,0.000032315576,0.000025180598,0.00004043216,0.0038880045,0.0006571002,0.00007051017,0.000055455173,0.0018604703,0.000016387],"about_ca_topic_score_codex":0.99846965,"about_ca_topic_score_gemma":0.99959964,"teacher_disagreement_score":0.042835467,"about_ca_system_score_codex":0.042835467,"about_ca_system_score_gemma":0.044186372,"threshold_uncertainty_score":0.31079453},"labels":[],"label_agreement":null},{"id":"W7643891","doi":"","title":"GEM-AQ modelling of smoke events observed in the Canadian High Arctic","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Atmospheric and Environmental Gas Dynamics","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"York University","funders":"","keywords":"Smoke; Arctic; Environmental science; Meteorology; Climatology; Oceanography; Geography; Geology","score_opus":0.026037931122020803,"score_gpt":0.19887296158970766,"score_spread":0.17283503046768686,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W7643891","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9868456,0.00024896846,0.0023120623,0.00042659597,0.00009864746,0.000022197046,0.0036022696,0.00078759145,0.005656089],"genre_scores_gemma":[0.9966916,0.00006608253,0.0011274763,0.000032260894,0.000012133168,0.00000580672,0.0011357027,0.000049799815,0.0008790987],"study_design_codex":"simulation_or_modeling","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.99979955,0.000023360604,0.000009963057,0.000052278912,0.000035829005,0.00007893593],"domain_scores_gemma":[0.99951684,0.00009771406,0.000034336506,0.00003271582,0.00021001909,0.00010832798],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0006074023,0.0008336803,0.00074024,0.00053127337,0.0015294622,0.001458598,0.0022806127,0.0015684912,0.0017590006],"category_scores_gemma":[0.001332456,0.0005654791,0.00091536914,0.0011225336,0.00070806564,0.0006677999,0.0005785931,0.0010517987,0.00024285306],"study_design_candidate":"simulation_or_modeling","study_design_consensus":"simulation_or_modeling","about_ca_topic_candidate":true,"about_ca_topic_consensus":true,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002587192,0.00009026214,0.02000455,0.000050558938,0.0000961049,0.00009917564,0.00009552202,0.9710702,0.0015820219,0.000981436,0.0017696646,0.0039016902],"study_design_scores_gemma":[0.000062825835,0.000011662446,0.010806875,0.000005740837,0.000025183797,0.0000057456136,0.00006462188,0.9876901,0.0004570696,0.00013282368,0.00071461144,0.000022759954],"about_ca_topic_score_codex":0.9453396,"about_ca_topic_score_gemma":0.9191604,"teacher_disagreement_score":0.05466038,"about_ca_system_score_codex":0.00761466,"about_ca_system_score_gemma":0.009155078,"threshold_uncertainty_score":0.10996449},"labels":[],"label_agreement":null},{"id":"W78126468","doi":"","title":"Accelerated collapse of Arctic Ice Shelves","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Cryospheric studies and observations","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of Ottawa","funders":"","keywords":"Ice shelf; Arctic ice pack; Geology; Oceanography; Sea ice; Iceberg; Antarctic sea ice; Cryosphere; Shelf ice; Fast ice; Ice divide; Ice sheet; Arctic; Physical geography; Geography","score_opus":0.0309758622898586,"score_gpt":0.23459337086104337,"score_spread":0.20361750857118477,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W78126468","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9824358,0.00076472,0.00029516485,0.0006165831,0.000061086386,0.00000978717,0.000677394,0.000030021198,0.015109399],"genre_scores_gemma":[0.99592906,0.0008198364,0.00019461496,0.00017728447,0.00004821337,0.0000054761517,0.00067641056,0.000009361566,0.002139678],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9997179,0.000043623895,0.000014658317,0.000046394896,0.00008791527,0.00008946212],"domain_scores_gemma":[0.9994289,0.000028042758,0.00013503584,0.00003649528,0.00023436714,0.00013717412],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0003651158,0.0001911579,0.00015456708,0.0007681864,0.0010706853,0.001453984,0.00026578567,0.00046820933,0.0032672426],"category_scores_gemma":[0.0011095459,0.00010570076,0.00018022036,0.0006504804,0.0006280919,0.0006460383,0.0012730567,0.00061916205,0.0005000481],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002400893,0.000071045295,0.8827139,0.00013509557,0.000099221,0.0009958076,0.0035733087,0.0019198747,0.008509028,0.0061839204,0.011353786,0.0842048],"study_design_scores_gemma":[0.0000039693396,0.000055346496,0.9702912,0.000054590688,0.000011350424,0.00042082294,0.0033231613,0.0005270596,0.0009297868,0.00047398396,0.023898318,0.000010358627],"about_ca_topic_score_codex":0.04585653,"about_ca_topic_score_gemma":0.059879977,"teacher_disagreement_score":0.04585653,"about_ca_system_score_codex":0.0012005445,"about_ca_system_score_gemma":0.00091123045,"threshold_uncertainty_score":0.09117925},"labels":[],"label_agreement":null},{"id":"W81512472","doi":"","title":"Conceptual design of an apparatus for measuring frequency-dependent streaming potential of porous media","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Geophysical and Geoelectrical Methods","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"Université Laval","funders":"","keywords":"Porous medium; Streaming current; Flow (mathematics); Mechanics; Current (fluid); Coupling (piping); Fluid dynamics; Porosity; Geology; Materials science; Physics; Geotechnical engineering; Mechanical engineering; Engineering; Thermodynamics; Nanotechnology","score_opus":0.03328563936244997,"score_gpt":0.24219174876340252,"score_spread":0.20890610940095256,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W81512472","genre_codex":"methods","genre_gemma":"methods","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"methods","genre_consensus":"methods","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.011177348,0.0001955034,0.98197454,0.0005554654,0.00023703404,0.001819727,0.00024681984,0.0011607672,0.0026328526],"genre_scores_gemma":[0.10192728,0.0003385266,0.8901523,0.0003325675,0.00011242902,0.0047418512,0.00025050002,0.00007801013,0.0020664576],"study_design_codex":"bench_or_experimental","study_design_gemma":"simulation_or_modeling","domain_scores_codex":[0.9987237,0.00020245562,0.00012285024,0.0003001491,0.00055450015,0.000096339856],"domain_scores_gemma":[0.9985071,0.0003056355,0.00018558565,0.0002974241,0.0004931683,0.00021115542],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0038270077,0.0010277585,0.0011876678,0.0011849548,0.001305685,0.0019374203,0.0057126577,0.0025617955,0.0027076863],"category_scores_gemma":[0.0025534823,0.0010936242,0.0009200554,0.0006341536,0.0023039477,0.0021530453,0.001986145,0.0019624878,0.0015991033],"study_design_candidate":"simulation_or_modeling","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00044653486,0.0005351608,0.0039352803,0.0015015362,0.0001074872,0.0007008044,0.00056752324,0.01471878,0.6224622,0.26190746,0.0027976744,0.09031951],"study_design_scores_gemma":[0.0005729914,0.0050566825,0.0053243623,0.0005350924,0.00027993458,0.0022568742,0.0003598262,0.19841951,0.60202897,0.057379283,0.12719741,0.0005890036],"about_ca_topic_score_codex":0.00082245097,"about_ca_topic_score_gemma":0.00055695587,"teacher_disagreement_score":0.0057126577,"about_ca_system_score_codex":0.0015103444,"about_ca_system_score_gemma":0.0039014493,"threshold_uncertainty_score":0.020239353},"labels":[],"label_agreement":null},{"id":"W8298118","doi":"10.1055/s-2008-1032820","title":"Spatial and temporal patterns of wildfires in the Northern Alps","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"Fire effects on ecosystems","field":"Environmental Science","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Arson; Boreal; Fire regime; Taiga; Physical geography; Geography; Environmental science; Forestry; Archaeology; Ecology; Ecosystem","score_opus":0.004051982698796751,"score_gpt":0.19283661269012306,"score_spread":0.1887846299913263,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W8298118","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99850225,0.00033954007,0.000037502687,0.000037897342,0.0000042114702,0.0000017165994,0.0004676162,0.0000075718535,0.00060175674],"genre_scores_gemma":[0.9989881,0.00014307056,0.000065036824,0.000008457066,0.000010782475,0.0000036391255,0.00055261946,0.0000024989479,0.00022564254],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.9996971,0.000049301052,0.000036259557,0.00009021334,0.00006206359,0.000065060325],"domain_scores_gemma":[0.99893016,0.00019544785,0.000497597,0.00004491457,0.00014066818,0.00019114147],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0005610532,0.00010328357,0.00019609286,0.0013874877,0.00030863687,0.0008153062,0.00022444974,0.00025858168,0.0013908964],"category_scores_gemma":[0.0008167996,0.00010609459,0.00021378114,0.001287433,0.00035025255,0.00033875104,0.00030144636,0.00018372954,0.00027867506],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000101128964,0.000029312756,0.9933455,0.000030398205,0.00004953054,0.00009283399,0.0006374776,0.00009507038,0.000826949,0.00004998218,0.00017117208,0.0045706197],"study_design_scores_gemma":[0.000001157084,0.000012231277,0.99917233,0.000005397544,0.000004876498,0.000057236786,0.00041605282,0.00008362029,0.00002132843,0.000010330469,0.00021348933,0.00000197643],"about_ca_topic_score_codex":0.016614722,"about_ca_topic_score_gemma":0.036916975,"teacher_disagreement_score":0.016614722,"about_ca_system_score_codex":0.00026876482,"about_ca_system_score_gemma":0.00019994062,"threshold_uncertainty_score":0.033036053},"labels":[],"label_agreement":null},{"id":"W83648095","doi":"","title":"Episodic Seismicity from Near Surface to Base of the Crust","year":2010,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"University of British Columbia; University of New Brunswick","funders":"","keywords":"Geology; Crust; Seismology; Induced seismicity; Geophysics","score_opus":0.012295754633871801,"score_gpt":0.20102738569198011,"score_spread":0.1887316310581083,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W83648095","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99553126,0.00009182823,0.00017377229,0.00003470213,0.000006620415,0.0000032596756,0.0007513707,0.000013671924,0.0033935502],"genre_scores_gemma":[0.9990576,0.0000743785,0.00008608151,0.000005420001,0.000009206798,0.0000014151517,0.00034610403,0.0000024119604,0.00041739971],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99993384,0.0000088146135,0.000006193693,0.00001770546,0.000015668062,0.000017788918],"domain_scores_gemma":[0.99968195,0.00004587723,0.000081606195,0.000027658101,0.000087976776,0.00007496873],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00010388017,0.00012022747,0.00016455847,0.001104925,0.00048003264,0.0005329806,0.00019105148,0.00020118919,0.0014634765],"category_scores_gemma":[0.0009085923,0.00011561224,0.00009230997,0.0010162571,0.00024869226,0.0004354807,0.0007058958,0.00023477447,0.00018495995],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00018643885,0.00004294289,0.95573115,0.00007820985,0.000070923445,0.00037924194,0.0035723688,0.001306218,0.008534543,0.0006328664,0.0011736827,0.028291352],"study_design_scores_gemma":[0.0000015589247,0.000030204857,0.9980375,0.0000071242107,0.000012865497,0.00007859652,0.0005438464,0.00024776545,0.00018147561,0.000048817838,0.00080752146,0.0000027732087],"about_ca_topic_score_codex":0.033051725,"about_ca_topic_score_gemma":0.10883738,"teacher_disagreement_score":0.033051725,"about_ca_system_score_codex":0.0003811478,"about_ca_system_score_gemma":0.00031814116,"threshold_uncertainty_score":0.06571871},"labels":[],"label_agreement":null},{"id":"W86025789","doi":"","title":"Aircraft measurements of the horizontal multiplicative cascade structure of the atmosphere","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Meteorological Phenomena and Simulations","field":"Earth and Planetary Sciences","cited_by":1,"is_retracted":false,"has_abstract":false,"route_ca_aff":true,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":false,"ca_institutions":"McGill University","funders":"","keywords":"Atmosphere (unit); Cascade; Environmental science; Meteorology; Atmospheric sciences; Geodesy; Geology; Physics; Engineering","score_opus":0.02418246888954026,"score_gpt":0.22627751638174276,"score_spread":0.2020950474922025,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W86025789","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.99348927,0.00003444196,0.00429025,0.000053889726,0.000017574277,0.000009649206,0.0005651948,0.00013987224,0.0013999749],"genre_scores_gemma":[0.99861896,0.000013777042,0.0010055957,0.0000048577417,0.000004091885,0.000003110734,0.00027676864,0.000006597657,0.00006633496],"study_design_codex":"simulation_or_modeling","study_design_gemma":"observational","domain_scores_codex":[0.9998616,0.000026914164,0.000006269543,0.000040398514,0.000040553845,0.000024191062],"domain_scores_gemma":[0.9997373,0.00007757958,0.000035347333,0.000051334024,0.000064022235,0.00003433556],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00020957815,0.0004054004,0.00016609706,0.00033888977,0.0003035039,0.00040106062,0.0003321328,0.00035148032,0.00057674974],"category_scores_gemma":[0.0009369798,0.0002670295,0.00027244227,0.0004091047,0.00020900184,0.00046080243,0.00025904016,0.00045658502,0.00010280427],"study_design_candidate":"observational","study_design_consensus":null,"about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.00070025155,0.0005245912,0.28362545,0.000109606415,0.00036524617,0.00022004133,0.00061341276,0.58923227,0.0854308,0.0069427495,0.00307934,0.02915628],"study_design_scores_gemma":[0.00008325049,0.00006382403,0.17888191,0.0000053583526,0.000059884038,0.000030322066,0.000044058135,0.81366926,0.006195023,0.0004888538,0.00044887213,0.000029342218],"about_ca_topic_score_codex":0.04615455,"about_ca_topic_score_gemma":0.04531372,"teacher_disagreement_score":0.04615455,"about_ca_system_score_codex":0.00057393877,"about_ca_system_score_gemma":0.0004702326,"threshold_uncertainty_score":0.09177184},"labels":[],"label_agreement":null},{"id":"W93317758","doi":"","title":"The ESASSI-08 cruise in the South Scotia Ridge region: preliminary analysis of hydrodynamic and biogeochemical data","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"Marine and coastal ecosystems","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Cruise; Oceanography; Biogeochemical cycle; Ridge; Geology; Nova scotia; Environmental science","score_opus":0.01829856060860869,"score_gpt":0.21805422576044522,"score_spread":0.19975566515183654,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W93317758","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.97593623,0.00023197818,0.0003840225,0.00005022021,0.00000801632,0.0001498721,0.020073159,0.00003478274,0.0031316532],"genre_scores_gemma":[0.94657916,0.00029436467,0.004539928,0.000042806998,0.000018972281,0.00015689916,0.042865973,0.00003267641,0.005469236],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99985766,0.0000172082,0.000010830825,0.000026186424,0.000058972804,0.000029034421],"domain_scores_gemma":[0.99963224,0.000028563998,0.000053592652,0.00003246686,0.00016928847,0.0000837406],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.0004395946,0.0002600002,0.00017085437,0.00097654434,0.00032324382,0.00033876038,0.000214238,0.00014241597,0.0010530399],"category_scores_gemma":[0.0005550827,0.0001433141,0.00015389838,0.0013772714,0.00015053526,0.00014471741,0.00035428198,0.00016688701,0.00039033024],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":true,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.0002925749,0.00007251356,0.96402067,0.00008972591,0.000054123444,0.00055824115,0.0004842146,0.0030178854,0.01094396,0.00013635795,0.004206942,0.01612281],"study_design_scores_gemma":[0.000007978573,0.000017355074,0.99719965,0.000005668673,0.0000036995762,0.000018359076,0.00007079434,0.00059479434,0.00024003863,0.0000061359638,0.0018326836,0.0000027725832],"about_ca_topic_score_codex":0.5481114,"about_ca_topic_score_gemma":0.7333466,"teacher_disagreement_score":0.5481114,"about_ca_system_score_codex":0.0010496461,"about_ca_system_score_gemma":0.0016924273,"threshold_uncertainty_score":0.90909976},"labels":[],"label_agreement":null},{"id":"W98506830","doi":"","title":"Fault geometries and deformation mechanisms in the evolution of low-angle normal faults (Kea, Greece)","year":2009,"lang":"en","type":"article","venue":"EGUGA","topic":"earthquake and tectonic studies","field":"Earth and Planetary Sciences","cited_by":0,"is_retracted":false,"has_abstract":true,"route_ca_aff":false,"route_ca_fund":false,"route_ca_venue":false,"route_about_ca":true,"ca_institutions":"","funders":"","keywords":"Boulevard; Structural geology; Sedimentology; Geology; Fault (geology); Archaeology; Seismology; Geography; Geomorphology","score_opus":0.008246711353092382,"score_gpt":0.19688381040444558,"score_spread":0.1886370990513532,"validation_status":"score_only:v0-immature-baseline","prediction":{"id":"W98506830","genre_codex":"empirical","genre_gemma":"empirical","domain_codex":null,"domain_gemma":null,"model_version":"metacan-v3-hybrid-931329e0061c","genre_candidate":"empirical","genre_consensus":"empirical","domain_candidate":null,"domain_consensus":null,"prediction_status":"machine_predicted_unvalidated","genre_scores_codex":[0.9985104,0.00007420496,0.0000887532,0.000018414737,7.1489103e-7,0.0000018381534,0.00008683335,0.000004151925,0.001214717],"genre_scores_gemma":[0.9996344,0.000035714507,0.000063713305,0.0000011957233,4.6998377e-7,5.6728186e-7,0.000057593454,0.000001960396,0.00020431781],"study_design_codex":"observational","study_design_gemma":"observational","domain_scores_codex":[0.99989617,0.000017544495,0.000016038555,0.000031745956,0.00001802024,0.000020472155],"domain_scores_gemma":[0.99943286,0.00012493992,0.00021126233,0.0000431645,0.00012547607,0.000062278334],"candidate_categories":[],"consensus_categories":[],"category_scores_codex":[0.00024720602,0.00011052852,0.00013556279,0.0014191915,0.0002167589,0.00068490265,0.00020132544,0.00027705135,0.0015823413],"category_scores_gemma":[0.0013454951,0.00014635408,0.00011838643,0.0012451629,0.0005129588,0.0004856754,0.000482905,0.0001451147,0.00044774843],"study_design_candidate":"observational","study_design_consensus":"observational","about_ca_topic_candidate":false,"about_ca_topic_consensus":false,"about_ca_system_candidate":false,"about_ca_system_consensus":false,"study_design_scores_codex":[0.000242872,0.000032839387,0.9521153,0.000054950593,0.000040345785,0.00038119196,0.00081899884,0.008333268,0.011453418,0.0023843877,0.00021231,0.023929976],"study_design_scores_gemma":[0.000006284559,0.000037435653,0.9957104,0.000009946504,0.000007867403,0.00029890356,0.00039639566,0.002106598,0.00036683946,0.00069033704,0.00036267255,0.000006342808],"about_ca_topic_score_codex":0.0049160775,"about_ca_topic_score_gemma":0.0091498885,"teacher_disagreement_score":0.0049160775,"about_ca_system_score_codex":0.00047724365,"about_ca_system_score_gemma":0.00023292255,"threshold_uncertainty_score":0.009774923},"labels":[],"label_agreement":null}]}