{"abstract":"The adapter reports an incorrect b detector column while other fields remain valid.","category":"Astronomical coordinate conventions","checks":6,"contract":"Two readout amplifiers cover a focal plane with overscan removed. Amplifier B is physically reversed. Detector labels are one-based; chip gap has no samples. Serial overscan is measured in columns and parallel overscan in rows. Output fields are defined by: a_science_column = d['x']-d['serial']; b_detector_column = d['a']+d['gap']+d['b']+1-d['x']; science_row = d['y']-d['parallel']; b_first_pixel = d['a']+d['gap']+1; mosaic_extent = d['a']+d['gap']+d['b']; science_rows = d['rows']-d['parallel']","evaluation_group":"astro-detector-mosaic-sections","failed_approach":"A partial convention repair still uses d['a']+d['b']+1-d['x']","family":"s3-astronomical-coordinate-conventions-detector-mosaic-sections-b_detector_column","id":"FA-54966","implementations":{"attempt":{"sha256":"b3b14a56445d2818133784ec6eba44f189b48705a52c83261f4424b58758ff5b","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(d):\n    return {'a_science_column': d['x']-d['serial'], 'b_detector_column': d['a']+d['b']+1-d['x'], 'science_row': d['y']-d['parallel'], 'b_first_pixel': d['a']+d['gap']+1, 'mosaic_extent': d['a']+d['gap']+d['b'], 'science_rows': d['rows']-d['parallel']}\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = {1: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 23, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 1, 'y': 1, 'rows': 20}, {'a_science_column': -1, 'b_detector_column': 25, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 9}, {'a_science_column': 1, 'b_detector_column': 11, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 8, 'y': 20, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 18, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 2: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 22, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 2, 'y': 1, 'rows': 20}, {'a_science_column': 0, 'b_detector_column': 24, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 9}, {'a_science_column': 2, 'b_detector_column': 10, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 9, 'y': 20, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 17, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 3: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 21, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 18, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 1, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 9}, {'a_science_column': 3, 'b_detector_column': 9, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 10, 'y': 20, 'rows': 20}, {'a_science_column': 8, 'b_detector_column': 16, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 4: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 20, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 17, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 1, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 9}, {'a_science_column': 4, 'b_detector_column': 8, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 11, 'y': 20, 'rows': 20}, {'a_science_column': 9, 'b_detector_column': 15, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 5: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 19, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 16, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 1, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 9}, {'a_science_column': 5, 'b_detector_column': 7, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 12, 'y': 20, 'rows': 20}, {'a_science_column': 10, 'b_detector_column': 14, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})]}\nfor i, (record, expected) in enumerate(fixtures[N]):\n    check('astronomical fixture %s' % i, solve(record), expected)\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"},"broken":{"sha256":"9a274fda402782d7edf7f318bde8ab2eea518be2cdee403599909c7ed8890f28","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(d):\n    return {'a_science_column': d['x']-d['serial'], 'b_detector_column': d['a']+d['gap']+d['x'], 'science_row': d['y']-d['parallel'], 'b_first_pixel': d['a']+d['gap']+1, 'mosaic_extent': d['a']+d['gap']+d['b'], 'science_rows': d['rows']-d['parallel']}\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = {1: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 23, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 1, 'y': 1, 'rows': 20}, {'a_science_column': -1, 'b_detector_column': 25, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 9}, {'a_science_column': 1, 'b_detector_column': 11, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 8, 'y': 20, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 18, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 2: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 22, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 2, 'y': 1, 'rows': 20}, {'a_science_column': 0, 'b_detector_column': 24, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 9}, {'a_science_column': 2, 'b_detector_column': 10, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 9, 'y': 20, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 17, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 3: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 21, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 18, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 1, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 9}, {'a_science_column': 3, 'b_detector_column': 9, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 10, 'y': 20, 'rows': 20}, {'a_science_column': 8, 'b_detector_column': 16, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 4: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 20, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 17, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 1, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 9}, {'a_science_column': 4, 'b_detector_column': 8, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 11, 'y': 20, 'rows': 20}, {'a_science_column': 9, 'b_detector_column': 15, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 5: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 19, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 16, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 1, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 9}, {'a_science_column': 5, 'b_detector_column': 7, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 12, 'y': 20, 'rows': 20}, {'a_science_column': 10, 'b_detector_column': 14, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})]}\nfor i, (record, expected) in enumerate(fixtures[N]):\n    check('astronomical fixture %s' % i, solve(record), expected)\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"},"fixed":{"sha256":"06cee28a92eb32f257fe691649a654ceed580e79b0217e4d34974b4c9bef9297","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(d):\n    return {'a_science_column': d['x']-d['serial'], 'b_detector_column': d['a']+d['gap']+d['b']+1-d['x'], 'science_row': d['y']-d['parallel'], 'b_first_pixel': d['a']+d['gap']+1, 'mosaic_extent': d['a']+d['gap']+d['b'], 'science_rows': d['rows']-d['parallel']}\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = {1: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 23, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 1, 'y': 1, 'rows': 20}, {'a_science_column': -1, 'b_detector_column': 25, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 7, 'rows': 9}, {'a_science_column': 1, 'b_detector_column': 11, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 8, 'y': 20, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 18, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 2: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 22, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 2, 'y': 1, 'rows': 20}, {'a_science_column': 0, 'b_detector_column': 24, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 7, 'rows': 9}, {'a_science_column': 2, 'b_detector_column': 10, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 9, 'y': 20, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 17, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 3: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 21, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 18, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 3, 'y': 1, 'rows': 20}, {'a_science_column': 1, 'b_detector_column': 23, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 7, 'rows': 9}, {'a_science_column': 3, 'b_detector_column': 9, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 10, 'y': 20, 'rows': 20}, {'a_science_column': 8, 'b_detector_column': 16, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 4: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 20, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 6, 'b_detector_column': 20, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 20}, {'a_science_column': 4, 'b_detector_column': 17, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 4, 'y': 1, 'rows': 20}, {'a_science_column': 2, 'b_detector_column': 22, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 6, 'y': 7, 'rows': 9}, {'a_science_column': 4, 'b_detector_column': 8, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 11, 'y': 20, 'rows': 20}, {'a_science_column': 9, 'b_detector_column': 15, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})], 5: [({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 19, 'science_row': 3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 0, 'parallel': 0, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 7, 'b_detector_column': 19, 'science_row': 7, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 20}), ({'a': 12, 'b': 10, 'gap': 0, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 20}, {'a_science_column': 5, 'b_detector_column': 16, 'science_row': 3, 'b_first_pixel': 13, 'mosaic_extent': 22, 'science_rows': 16}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 5, 'y': 1, 'rows': 20}, {'a_science_column': 3, 'b_detector_column': 21, 'science_row': -3, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16}), ({'a': 4, 'b': 6, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 7, 'y': 7, 'rows': 9}, {'a_science_column': 5, 'b_detector_column': 7, 'science_row': 3, 'b_first_pixel': 8, 'mosaic_extent': 13, 'science_rows': 5}), ({'a': 12, 'b': 10, 'gap': 3, 'serial': 2, 'parallel': 4, 'x': 12, 'y': 20, 'rows': 20}, {'a_science_column': 10, 'b_detector_column': 14, 'science_row': 16, 'b_first_pixel': 16, 'mosaic_extent': 25, 'science_rows': 16})]}\nfor i, (record, expected) in enumerate(fixtures[N]):\n    check('astronomical fixture %s' % i, solve(record), expected)\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"}},"limitations":"Explicitly stipulated finite algebraic adapter; no standards conformance, physical accuracy, or production-library claim. Inputs are the documented finite valid model domain. This reproducer isolates one failure mechanism. Results cover the supplied fixtures. Variants within a family share a test contract and should remain grouped when constructing evaluation splits. Related mechanisms with a shared evaluation_group must also remain together; these controlled models are not independent production incidents.","method":"Deterministic executable model with adversarial boundary fixtures.","provenance":{"created_by":"Failure Map","dependencies":"Python standard library","family":"s3-astronomical-coordinate-conventions-detector-mosaic-sections-b_detector_column","generated_at":"2026-09-29T14:45:53.162827+00:00","license":"CC0-1.0","python":"3.12.14","seed":1,"split":"open-access"},"relevance":"Catalog, detector, sky-coordinate, and spectroscopy adapters must preserve the association between numeric coordinates and their declared reference conventions.","repair":"Preserve the declared model convention at this site: d['a']+d['gap']+d['b']+1-d['x']","root_cause":"Opposite amplifier read direction is not reflected across its own section. Faulty expression: d['a']+d['gap']+d['x']","sha256":"3f49448ca28e5e8abb6fb584050f03617e3f798a67d135b8207fe854d01ae283","title":"Detector mosaic sections: Opposite amplifier read direction is not reflected across its own section · case 01","variant":1,"variant_policy":"Five numbered records share a model and may reuse boundary fixtures.","verification":{"attempt":{"elapsed_ms":42.197,"exit_code":1,"observations":[{"actual":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"check":"astronomical fixture 0","expected":{"a_science_column":1,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"passed":false},{"actual":{"a_science_column":3,"b_detector_column":20,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"check":"astronomical fixture 1","expected":{"a_science_column":3,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"passed":false},{"actual":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"check":"astronomical fixture 2","expected":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"passed":true},{"actual":{"a_science_column":-1,"b_detector_column":22,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"check":"astronomical fixture 3","expected":{"a_science_column":-1,"b_detector_column":25,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"passed":false},{"actual":{"a_science_column":1,"b_detector_column":8,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"check":"astronomical fixture 4","expected":{"a_science_column":1,"b_detector_column":11,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"passed":false},{"actual":{"a_science_column":6,"b_detector_column":15,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"check":"astronomical fixture 5","expected":{"a_science_column":6,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"passed":false}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"astronomical fixture 0\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 23, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}, {\"check\": \"astronomical fixture 1\", \"actual\": {\"a_science_column\": 3, \"b_detector_column\": 20, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"expected\": {\"a_science_column\": 3, \"b_detector_column\": 23, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"passed\": false}, {\"check\": \"astronomical fixture 2\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"passed\": true}, {\"check\": \"astronomical fixture 3\", \"actual\": {\"a_science_column\": -1, \"b_detector_column\": 22, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": -1, \"b_detector_column\": 25, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}, {\"check\": \"astronomical fixture 4\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 8, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 11, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"passed\": false}, {\"check\": \"astronomical fixture 5\", \"actual\": {\"a_science_column\": 6, \"b_detector_column\": 15, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 6, \"b_detector_column\": 18, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}], \"passed\": false}\n"},"broken":{"elapsed_ms":42.713,"exit_code":1,"observations":[{"actual":{"a_science_column":1,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"check":"astronomical fixture 0","expected":{"a_science_column":1,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"passed":false},{"actual":{"a_science_column":3,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"check":"astronomical fixture 1","expected":{"a_science_column":3,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"passed":false},{"actual":{"a_science_column":1,"b_detector_column":15,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"check":"astronomical fixture 2","expected":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"passed":false},{"actual":{"a_science_column":-1,"b_detector_column":16,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"check":"astronomical fixture 3","expected":{"a_science_column":-1,"b_detector_column":25,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"passed":false},{"actual":{"a_science_column":1,"b_detector_column":10,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"check":"astronomical fixture 4","expected":{"a_science_column":1,"b_detector_column":11,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"passed":false},{"actual":{"a_science_column":6,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"check":"astronomical fixture 5","expected":{"a_science_column":6,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"passed":false}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"astronomical fixture 0\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 18, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 23, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}, {\"check\": \"astronomical fixture 1\", \"actual\": {\"a_science_column\": 3, \"b_detector_column\": 18, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"expected\": {\"a_science_column\": 3, \"b_detector_column\": 23, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"passed\": false}, {\"check\": \"astronomical fixture 2\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 15, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"passed\": false}, {\"check\": \"astronomical fixture 3\", \"actual\": {\"a_science_column\": -1, \"b_detector_column\": 16, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": -1, \"b_detector_column\": 25, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}, {\"check\": \"astronomical fixture 4\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 10, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 11, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"passed\": false}, {\"check\": \"astronomical fixture 5\", \"actual\": {\"a_science_column\": 6, \"b_detector_column\": 23, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 6, \"b_detector_column\": 18, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": false}], \"passed\": false}\n"},"fixed":{"elapsed_ms":40.395,"exit_code":0,"observations":[{"actual":{"a_science_column":1,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"check":"astronomical fixture 0","expected":{"a_science_column":1,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":3,"science_rows":16},"passed":true},{"actual":{"a_science_column":3,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"check":"astronomical fixture 1","expected":{"a_science_column":3,"b_detector_column":23,"b_first_pixel":16,"mosaic_extent":25,"science_row":7,"science_rows":20},"passed":true},{"actual":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"check":"astronomical fixture 2","expected":{"a_science_column":1,"b_detector_column":20,"b_first_pixel":13,"mosaic_extent":22,"science_row":3,"science_rows":16},"passed":true},{"actual":{"a_science_column":-1,"b_detector_column":25,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"check":"astronomical fixture 3","expected":{"a_science_column":-1,"b_detector_column":25,"b_first_pixel":16,"mosaic_extent":25,"science_row":-3,"science_rows":16},"passed":true},{"actual":{"a_science_column":1,"b_detector_column":11,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"check":"astronomical fixture 4","expected":{"a_science_column":1,"b_detector_column":11,"b_first_pixel":8,"mosaic_extent":13,"science_row":3,"science_rows":5},"passed":true},{"actual":{"a_science_column":6,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"check":"astronomical fixture 5","expected":{"a_science_column":6,"b_detector_column":18,"b_first_pixel":16,"mosaic_extent":25,"science_row":16,"science_rows":16},"passed":true}],"passed":true,"stderr":"","stdout":"{\"observations\": [{\"check\": \"astronomical fixture 0\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 23, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 23, \"science_row\": 3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": true}, {\"check\": \"astronomical fixture 1\", \"actual\": {\"a_science_column\": 3, \"b_detector_column\": 23, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"expected\": {\"a_science_column\": 3, \"b_detector_column\": 23, \"science_row\": 7, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 20}, \"passed\": true}, {\"check\": \"astronomical fixture 2\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 20, \"science_row\": 3, \"b_first_pixel\": 13, \"mosaic_extent\": 22, \"science_rows\": 16}, \"passed\": true}, {\"check\": \"astronomical fixture 3\", \"actual\": {\"a_science_column\": -1, \"b_detector_column\": 25, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": -1, \"b_detector_column\": 25, \"science_row\": -3, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": true}, {\"check\": \"astronomical fixture 4\", \"actual\": {\"a_science_column\": 1, \"b_detector_column\": 11, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"expected\": {\"a_science_column\": 1, \"b_detector_column\": 11, \"science_row\": 3, \"b_first_pixel\": 8, \"mosaic_extent\": 13, \"science_rows\": 5}, \"passed\": true}, {\"check\": \"astronomical fixture 5\", \"actual\": {\"a_science_column\": 6, \"b_detector_column\": 18, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"expected\": {\"a_science_column\": 6, \"b_detector_column\": 18, \"science_row\": 16, \"b_first_pixel\": 16, \"mosaic_extent\": 25, \"science_rows\": 16}, \"passed\": true}], \"passed\": true}\n"}},"verified":true,"visibility":"public"}