[{"run_id":"20260906T231458-5fdd2fff","observed_at":"2026-09-06 23:14:58.172943+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5291a20b802b9bbbe22b24cb","output_id":"13079e089e6e8f479b05cacbd1fc9b44d2d21bafeb7b908e40c8b726ffc33e9d","section":"requirements","status":"valid","value_json":"{\"nodes\":[{\"children\":[\"n1\",\"n2\",\"n3\"],\"condition\":null,\"course\":null,\"evidence\":\"GENETICS 466,467, orBIOCORE 381\",\"id\":\"n0\",\"kind\":\"any\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":466,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"GENETICS 466\",\"id\":\"n1\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":467,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"467\",\"id\":\"n2\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":381,\"minimum_grade\":null,\"subjects\":[\"BIOCORE\"],\"timing\":\"prior\"},\"evidence\":\"BIOCORE 381\",\"id\":\"n3\",\"kind\":\"course\"}],\"notes\":[],\"root\":\"n0\",\"status\":\"parsed\"}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":false},{"run_id":"20260906T231458-5fdd2fff","observed_at":"2026-09-06 23:14:58.172943+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5291a20b802b9bbbe22b24cb","output_id":"13079e089e6e8f479b05cacbd1fc9b44d2d21bafeb7b908e40c8b726ffc33e9d","section":"search_profile","status":"valid","value_json":"{\"assumed_background\":[{\"evidence\":[{\"course_id\":\"GENETICS 466\",\"field\":\"description\",\"quote\":\"Genetics in eukaryotes and prokaryotes. Includes transmission genetics, molecular genetics, evolutionary genetics, genetic engineering, and societal issues associated with genetics.\"},{\"course_id\":\"GENETICS 467\",\"field\":\"description\",\"quote\":\"Genetics of eukaryotes and prokaryotes. Includes transmission genetics, probability and hypothesis testing, genetic mapping, molecular genetics, gene expression, and genetic engineering.\"},{\"course_id\":\"BIOCORE 381\",\"field\":\"description\",\"quote\":\"Basic principles of ecology and interrelations between individuals, populations, communities, ecosystems and their environment; transmission genetics and introduction to population genetics; origin of life, evolutionary mechanisms, ancestral relationships among species, and the diversity of life.\"}],\"text\":\"Foundational knowledge in transmission and molecular genetics, population genetics, and ecology.\"}],\"search_phrases\":[\"molecular genetics conservation\",\"somatic cell nuclear transfer\",\"gene editing biodiversity\",\"developmental genetics animal cloning\",\"biobanking animal preservation\"],\"skills_taught\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"explore the challenges and potential of molecular genetic methods based on biobanking, gene editing and nuclear transfer for animal biodiversity preservation\"}],\"text\":\"Application of molecular genetic methods for species preservation.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Use knowledge in animal population status, developmental genetics and phylogeny to address real-life problems involving the conservation of threatened animal populations\"}],\"text\":\"Integration of population status, developmental genetics, and phylogeny for conservation problem-solving.\"}],\"summary\":{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Human-induced factors such as changes in land use and global climate are causing rapid worldwide biodiversity loss. Can modern molecular genetics contribute to species preservation?\"},{\"course_id\":\"GENETICS 527\",\"field\":\"title\",\"quote\":\"DEVELOPMENTAL GENETICS FOR CONSERVATION AND REGENERATION\"}],\"text\":\"Explores the use of molecular genetics, including biobanking, gene editing, and nuclear transfer, to address biodiversity loss and conserve threatened animal populations.\"},\"topics\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"maternal factors and early animal development\"}],\"text\":\"Maternal factors and early animal development.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"interspecies somatic cell nuclear transfer (isSCNT) and oocyte-mediated reprogramming in animal cloning\"}],\"text\":\"Interspecies somatic cell nuclear transfer and oocyte-mediated reprogramming.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"developmental, phylogenetic and ecological considerations for biobanking\"}],\"text\":\"Developmental, phylogenetic, and ecological considerations for biobanking.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"gene editing and synthetic biology as potential tools to recapture biodiversity\"}],\"text\":\"Gene editing and synthetic biology for biodiversity recapture.\"}]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":false},{"run_id":"20260906T231458-5fdd2fff","observed_at":"2026-09-06 23:14:58.172943+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5291a20b802b9bbbe22b24cb","output_id":"13079e089e6e8f479b05cacbd1fc9b44d2d21bafeb7b908e40c8b726ffc33e9d","section":"student_experience","status":"insufficient_evidence","value_json":"{\"status\":\"insufficient_evidence\",\"themes\":[]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":false},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5590a4969e0a630fe46a86e8","output_id":"b207f859f78c836a24e841c368e220f5e889e91295165ab2e647055b84a2f3b7","section":"requirements","status":"valid","value_json":"{\"nodes\":[{\"children\":[\"n1\",\"n2\",\"n3\"],\"condition\":null,\"course\":null,\"evidence\":\"GENETICS 466,467, orBIOCORE 381\",\"id\":\"n0\",\"kind\":\"any\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":466,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"GENETICS 466\",\"id\":\"n1\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":467,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"467\",\"id\":\"n2\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":381,\"minimum_grade\":null,\"subjects\":[\"BIOCORE\"],\"timing\":\"prior\"},\"evidence\":\"BIOCORE 381\",\"id\":\"n3\",\"kind\":\"course\"}],\"notes\":[],\"root\":\"n0\",\"status\":\"parsed\"}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5590a4969e0a630fe46a86e8","output_id":"b207f859f78c836a24e841c368e220f5e889e91295165ab2e647055b84a2f3b7","section":"search_profile","status":"valid","value_json":"{\"assumed_background\":[{\"evidence\":[{\"course_id\":\"GENETICS 466\",\"field\":\"description\",\"quote\":\"Genetics in eukaryotes and prokaryotes. Includes transmission genetics, molecular genetics, evolutionary genetics, genetic engineering, and societal issues associated with genetics.\"},{\"course_id\":\"GENETICS 467\",\"field\":\"description\",\"quote\":\"Genetics of eukaryotes and prokaryotes. Includes transmission genetics, probability and hypothesis testing, genetic mapping, molecular genetics, gene expression, and genetic engineering.\"},{\"course_id\":\"BIOCORE 381\",\"field\":\"description\",\"quote\":\"Basic principles of ecology and interrelations between individuals, populations, communities, ecosystems and their environment; transmission genetics and introduction to population genetics; origin of life, evolutionary mechanisms, ancestral relationships among species, and the diversity of life.\"}],\"text\":\"Foundational knowledge in transmission and molecular genetics, population genetics, and ecology.\"}],\"search_phrases\":[\"molecular genetics conservation\",\"somatic cell nuclear transfer\",\"gene editing biodiversity\",\"developmental genetics animal cloning\",\"biobanking animal preservation\"],\"skills_taught\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"explore the challenges and potential of molecular genetic methods based on biobanking, gene editing and nuclear transfer for animal biodiversity preservation\"}],\"text\":\"Application of molecular genetic methods for species preservation.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Use knowledge in animal population status, developmental genetics and phylogeny to address real-life problems involving the conservation of threatened animal populations\"}],\"text\":\"Integration of population status, developmental genetics, and phylogeny for conservation problem-solving.\"}],\"summary\":{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Human-induced factors such as changes in land use and global climate are causing rapid worldwide biodiversity loss. Can modern molecular genetics contribute to species preservation?\"},{\"course_id\":\"GENETICS 527\",\"field\":\"title\",\"quote\":\"DEVELOPMENTAL GENETICS FOR CONSERVATION AND REGENERATION\"}],\"text\":\"Explores the use of molecular genetics, including biobanking, gene editing, and nuclear transfer, to address biodiversity loss and conserve threatened animal populations.\"},\"topics\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"maternal factors and early animal development\"}],\"text\":\"Maternal factors and early animal development.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"interspecies somatic cell nuclear transfer (isSCNT) and oocyte-mediated reprogramming in animal cloning\"}],\"text\":\"Interspecies somatic cell nuclear transfer and oocyte-mediated reprogramming.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"developmental, phylogenetic and ecological considerations for biobanking\"}],\"text\":\"Developmental, phylogenetic, and ecological considerations for biobanking.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"gene editing and synthetic biology as potential tools to recapture biodiversity\"}],\"text\":\"Gene editing and synthetic biology for biodiversity recapture.\"}]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-5590a4969e0a630fe46a86e8","output_id":"b207f859f78c836a24e841c368e220f5e889e91295165ab2e647055b84a2f3b7","section":"student_experience","status":"insufficient_evidence","value_json":"{\"status\":\"insufficient_evidence\",\"themes\":[]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-8b774950c2b6adfdc46d1b82","output_id":"96c68529bd9dc56b6ce32516f9062eb2d30b859510b384105963515254c25c42","section":"requirements","status":"valid","value_json":"{\"nodes\":[{\"children\":[\"n1\",\"n2\",\"n3\"],\"condition\":null,\"course\":null,\"evidence\":\"GENETICS 466,467, orBIOCORE 381\",\"id\":\"n0\",\"kind\":\"any\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":466,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"GENETICS 466\",\"id\":\"n1\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":467,\"minimum_grade\":null,\"subjects\":[\"GENETICS\"],\"timing\":\"prior\"},\"evidence\":\"467\",\"id\":\"n2\",\"kind\":\"course\"},{\"children\":[],\"condition\":null,\"course\":{\"course_number\":381,\"minimum_grade\":null,\"subjects\":[\"BIOCORE\"],\"timing\":\"prior\"},\"evidence\":\"BIOCORE 381\",\"id\":\"n3\",\"kind\":\"course\"}],\"notes\":[],\"root\":\"n0\",\"status\":\"parsed\"}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-8b774950c2b6adfdc46d1b82","output_id":"96c68529bd9dc56b6ce32516f9062eb2d30b859510b384105963515254c25c42","section":"search_profile","status":"valid","value_json":"{\"assumed_background\":[{\"evidence\":[{\"course_id\":\"GENETICS 466\",\"field\":\"description\",\"quote\":\"Genetics in eukaryotes and prokaryotes. Includes transmission genetics, molecular genetics, evolutionary genetics, genetic engineering, and societal issues associated with genetics.\"},{\"course_id\":\"GENETICS 467\",\"field\":\"description\",\"quote\":\"Genetics of eukaryotes and prokaryotes. Includes transmission genetics, probability and hypothesis testing, genetic mapping, molecular genetics, gene expression, and genetic engineering.\"},{\"course_id\":\"BIOCORE 381\",\"field\":\"description\",\"quote\":\"Basic principles of ecology and interrelations between individuals, populations, communities, ecosystems and their environment; transmission genetics and introduction to population genetics; origin of life, evolutionary mechanisms, ancestral relationships among species, and the diversity of life.\"}],\"text\":\"Foundational knowledge in transmission and molecular genetics, population genetics, and ecology.\"}],\"search_phrases\":[\"molecular genetics conservation\",\"somatic cell nuclear transfer\",\"gene editing biodiversity\",\"developmental genetics animal cloning\",\"biobanking animal preservation\"],\"skills_taught\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"explore the challenges and potential of molecular genetic methods based on biobanking, gene editing and nuclear transfer for animal biodiversity preservation\"}],\"text\":\"Application of molecular genetic methods for species preservation.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Use knowledge in animal population status, developmental genetics and phylogeny to address real-life problems involving the conservation of threatened animal populations\"}],\"text\":\"Integration of population status, developmental genetics, and phylogeny for conservation problem-solving.\"}],\"summary\":{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"Human-induced factors such as changes in land use and global climate are causing rapid worldwide biodiversity loss. Can modern molecular genetics contribute to species preservation?\"},{\"course_id\":\"GENETICS 527\",\"field\":\"title\",\"quote\":\"DEVELOPMENTAL GENETICS FOR CONSERVATION AND REGENERATION\"}],\"text\":\"Explores the use of molecular genetics, including biobanking, gene editing, and nuclear transfer, to address biodiversity loss and conserve threatened animal populations.\"},\"topics\":[{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"maternal factors and early animal development\"}],\"text\":\"Maternal factors and early animal development.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"interspecies somatic cell nuclear transfer (isSCNT) and oocyte-mediated reprogramming in animal cloning\"}],\"text\":\"Interspecies somatic cell nuclear transfer and oocyte-mediated reprogramming.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"developmental, phylogenetic and ecological considerations for biobanking\"}],\"text\":\"Developmental, phylogenetic, and ecological considerations for biobanking.\"},{\"evidence\":[{\"course_id\":\"GENETICS 527\",\"field\":\"description\",\"quote\":\"gene editing and synthetic biology as potential tools to recapture biodiversity\"}],\"text\":\"Gene editing and synthetic biology for biodiversity recapture.\"}]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-8b774950c2b6adfdc46d1b82","output_id":"96c68529bd9dc56b6ce32516f9062eb2d30b859510b384105963515254c25c42","section":"student_experience","status":"insufficient_evidence","value_json":"{\"status\":\"insufficient_evidence\",\"themes\":[]}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true},{"run_id":"20260907T155543-ce3781c4","observed_at":"2026-09-07 15:55:43.033547+00:00","course_uid":"course_49dfb79a78d31a4be0ad1682","course_id":"GENETICS 527","catalog_version_id":"b26aad5e02b6869a9c6b9ae96968731bcd0333a31aa84771db95fdfb2f30b746","record_version_id":"e452c7bc362062bbf6d5d4c58ff38e93c433a0dace3d9f2e139374f96419cf9b","job_id":"enrich-8b774950c2b6adfdc46d1b82","output_id":"96c68529bd9dc56b6ce32516f9062eb2d30b859510b384105963515254c25c42","section":"student_summary","status":"valid","value_json":"{\"context_hash\":\"d8992f780ba143dec1055da540958fd13d6cc10dcae6e23607149adf79b14d86\",\"course_id\":\"GENETICS 527\",\"current_instructors\":[{\"instructor_uid\":\"instructor_f2a83075af69cac6d5388861\",\"message\":\"No course-specific reviews available\",\"name\":\"Francisco Pelegri\",\"review_status\":\"no_course_reviews\",\"rmp_instructor_id\":\"rmp:874058\",\"summary\":[{\"citations\":[{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1254\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1262\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1264\",\"type\":\"grade\"}],\"text\":\"Recent recorded grades — Spring 2025: 3.95 GPA, 97.7% A/AB (n=44 letter grades); Fall 2025: 3.93 GPA, 97.1% A/AB (n=34 letter grades); Spring 2026: 3.97 GPA, 100.0% A/AB (n=52 letter grades).\"}]}],\"difficulty_workload\":[],\"errors\":[],\"historical_context\":[],\"message\":\"No course-specific reviews available\",\"offered\":true,\"profile_hash\":\"5cb4dabf887cdbcd8c00d5a1312e10828b95c63f30bc3ea76aea199565390d02\",\"quick_take\":[{\"citations\":[{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"grades_latest\",\"term_id\":\"1254\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"grades_latest\",\"term_id\":\"1262\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"grades_latest\",\"term_id\":\"1264\",\"type\":\"grade\"}],\"text\":\"Recent recorded grades — Spring 2025: 3.95 GPA, 97.7% A/AB (n=44 letter grades); Fall 2025: 3.93 GPA, 97.1% A/AB (n=34 letter grades); Spring 2026: 3.97 GPA, 100.0% A/AB (n=52 letter grades).\"}],\"student_experience\":[],\"task_hash\":\"74fb0997943e888960bbc9e47db8c4fd12e4292d55c20509d8d89db6a9910f68\",\"teaching_history\":[{\"citations\":[{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1202\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1212\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1222\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1224\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1232\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1234\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1242\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1244\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1252\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1254\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1262\",\"type\":\"grade\"},{\"course_id\":\"GENETICS 527\",\"run_id\":\"20260907T155543-ce3781c4\",\"section_number\":1,\"source_course_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"source_record\":{\"entity_id\":\"db2006f3-f6d1-3552-a0c8-7efbd38634fd\",\"file\":\"tables/observations.parquet\",\"kind\":\"grades\",\"source\":\"madgrades\"},\"table\":\"section_grades_latest\",\"term_id\":\"1264\",\"type\":\"grade\"}],\"text\":\"FRANCISCO PELEGRI is recorded teaching in Fall 2019, Fall 2020, Fall 2021, Spring 2022, Fall 2022, Spring 2023, Fall 2023, Spring 2024, Fall 2024, Spring 2025, Fall 2025, Spring 2026. Recorded history may be incomplete and does not establish a future schedule.\"}],\"term_id\":\"1272\",\"term_name\":\"2026 Fall\",\"version\":2}","candidate_json":null,"error":null,"model":"nvidia/Qwen3.6-35B-A3B-NVFP4","model_revision":"1355db6a052410cfd62085d94b58866fd0f2c3c5","selected_for_release":true}]