[{"run_id":"20260906T231458-5fdd2fff","semester":"1272","observed_at":"2026-09-06 23:14:58.172943+00:00","record_version_id":"af3fce78f808a6fa0b72eb8c55dab5e948d249d79cc15c90ae7ba0e591800dcc","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"20260907T155543-ce3781c4","semester":"1272","observed_at":"2026-09-07 15:55:43.033547+00:00","record_version_id":"af3fce78f808a6fa0b72eb8c55dab5e948d249d79cc15c90ae7ba0e591800dcc","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-03b0bbb9723907cf3d1b41cf0bb34837dc398e42","semester":"1262","observed_at":"2025-04-16 05:20:33.104844+00:00","record_version_id":"9daa113427316a660db025350cd83be0a28b60a964ea11bb60969c0d572f19f1","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0837245627eb714ae6bb0375f7abe8f41042011f","semester":"1262","observed_at":"2025-04-16 05:20:33.104844+00:00","record_version_id":"9daa113427316a660db025350cd83be0a28b60a964ea11bb60969c0d572f19f1","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-08c92e359bbbc110b0778b7e0b15d6f40000e6b1","semester":"1262","observed_at":"2025-08-21 07:05:14.730696+00:00","record_version_id":"a6c802b8c4fc9133e89aac29af957c462726650653dd26c52d003885d6b5b9f3","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0944d76440dc778fbb89626058c10451009ce9c6","semester":"1262","observed_at":"2025-05-21 03:36:18.194118+00:00","record_version_id":"e7fc55f2dbaa1c0d3fc2f5d3204ec95d2c284a0f03b4d8b91c2cfc48f7f100a7","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0a7f4bce29c816ef4d3d71b4eb8a2a3e15e33cc1","semester":"1262","observed_at":"2025-06-18 20:04:02.695444+00:00","record_version_id":"971919209ff5a9507bee2a14bae874cffff1890793782225c7107e349fbf515b","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0ab917f827a7de22ebdc1087114d377a31c4687b","semester":"1262","observed_at":"2025-05-22 02:11:02.531191+00:00","record_version_id":"4dbe50464aadae1f707d5a148a735fd3b7cd6ec0ccd2fa265bf6c79249e4a8be","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0c40ecab4b6db9333d1f18aef816e3ee659e300c","semester":"1262","observed_at":"2025-05-25 18:02:34.797617+00:00","record_version_id":"8dc12ecfb996d5b104f1bfe602eb51fc5ed510a1e9c736f6f15798cb2ca6481e","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-0cb4d29a588ec7f11c7e00b7cf5dc3a0d23d0349","semester":"1266","observed_at":"2026-01-22 01:00:26.555427+00:00","record_version_id":"f6c0d7d9971c7752cfce0d733f4ac43087e3a3c6db2391232493b88a3f713578","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-11c30ec39e91498cbfcf3a923c53a4b03e387280","semester":"1262","observed_at":"2025-07-20 04:58:26.847117+00:00","record_version_id":"2e93decb45e51c6c60b04f9c23da778207d63d30efcf585b99450ad3a0cb80f3","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-13cd500edf2587e9a3428f326253738fbea965ea","semester":"1264","observed_at":"2025-12-14 04:50:04.653658+00:00","record_version_id":"fd21e6ab908ed15762b17c26505938031f878da9821c834b00c56fed139db68c","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-1da08b2de39f05e6bc877c189fc2fd6eeda563f5","semester":"1262","observed_at":"2025-07-01 00:03:56.707251+00:00","record_version_id":"dc0269e807bdc4b32ba7fc4a9f7039190b9bba303ae54c5fe8e81ce24e6e163a","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-2031af47efe133b0e7877f433286ff07385afc41","semester":"1262","observed_at":"2025-07-02 20:16:45.749584+00:00","record_version_id":"3166da2df7991a3886f5ab5d5f5ea890bd38d44929581265c0bd1dcf51eff4d8","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-238eba6f32fbc30407f616dd0628ff02a2a824dd","semester":"1262","observed_at":"2025-08-17 05:15:07.788352+00:00","record_version_id":"972ebf6a2a1302373a4e0d8430ee98ae3504d3b16560f3b91d4ce71a3bc7206e","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-25f0ff56bc4d80f8a8afa1a0bcce8dae6fddb5e5","semester":"1262","observed_at":"2025-05-25 17:20:25.942090+00:00","record_version_id":"6bfbc30307709a5852af8172573737fbf10b2ba742fdb84494009c30c0349a6c","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-2923f91826ce253b7aeefa9f75b4a39fe4c80ff0","semester":"1262","observed_at":"2025-08-10 05:10:25.938416+00:00","record_version_id":"656ab635aebd2f6638976b2d57838e9ea9c29944f08910605ceaaf177a63c195","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-2a05214a4023e0157fa6f7d188c85308f714176c","semester":"1262","observed_at":"2025-09-07 04:56:38.255315+00:00","record_version_id":"d6657aa5ec42342f3a627e492c9846af3c3192bc9f6dd490682ddd8efd10ddb5","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-2b1b8e39131de92b94620b25c5bbb25690efed4c","semester":"1262","observed_at":"2025-06-01 07:54:53.913454+00:00","record_version_id":"72f92296e74355e51b38a35fd201e37213f7dadc470770e30edab7915525ffef","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-33a1225644e5a5855d60f66e65413946e72fedf4","semester":"1262","observed_at":"2025-06-22 01:52:05.152650+00:00","record_version_id":"44256bc03ab1d8df29d2a448bd6dee52547d9ca1bdd08149c09f2a32885e7e16","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-3b89c83dbf5208e13756184de1f2b2d0c09af35f","semester":"1262","observed_at":"2025-06-30 06:40:10.235522+00:00","record_version_id":"61659d5be84494b62d13f040d39bdd8a838774f626647ba2ec64509311a889b5","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-3c3eebf7f35c39364b445a2fa5a112ce28dbb4a1","semester":"1262","observed_at":"2025-06-01 17:03:59.062985+00:00","record_version_id":"9560239677bfef2606bccabf2bf45c7bb07a7801e7f2b8b677ee965e59953541","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-3fa4dd71391f1c9cf4ab2216680bbc428689f92d","semester":"1262","observed_at":"2025-05-25 01:15:58.180530+00:00","record_version_id":"80bd0c5ab104c37eca20b0123a931a34ed369409c5796cf3870f10485f27be31","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-4040aa216da722a34483f68fc1e129ea571ae08d","semester":"1262","observed_at":"2025-06-01 07:27:39.695506+00:00","record_version_id":"fc9463c1de0175baf3a8f916ea2cf17fa9552cf195afdfd4e2c105ebf4303e10","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-454d53cd690294459f8ad0793cc3ed562060e56c","semester":"1262","observed_at":"2025-05-25 01:34:00.536004+00:00","record_version_id":"08f694889c48bba8f3857793db9d9f43d2d09cb6a84535a8cc8f43751b2621d1","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-486f091e051fdb4ccdb80ee7b4fb0a5814510324","semester":"1264","observed_at":"2025-11-16 05:32:31.273726+00:00","record_version_id":"f9de2ad506d9e516ebda080977b7ea455b2391a4123a401118de5d78c91f7e5d","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-50393cfc5fd5598d4f4731ef1919f2ff53af07d9","semester":"1262","observed_at":"2025-06-30 06:05:57.438846+00:00","record_version_id":"069cd0a2cab442f028c8fbfb150b03a1afdc3e58a97e5a6b3f11c21ed69de48a","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-50f6947786b208c800db8bbd0cec84a8f0f187d2","semester":"1262","observed_at":"2025-06-02 03:49:42.915428+00:00","record_version_id":"6026e8699bc49fc76b7847202f8fdf0082ee383bc4d3df2a03480f2c436318e4","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-51d86ed4082dced3803c295419b0ec8440942016","semester":"1264","observed_at":"2025-11-12 04:50:41.141307+00:00","record_version_id":"492fdf7bf6927d087a2c95d048832a36d5d469851414e6d95be215e36e20f2a2","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-53101bd1c10db0d00d094e4c9154d4c244ff23d9","semester":"1262","observed_at":"2025-10-05 04:58:05.366968+00:00","record_version_id":"4be54264e9760d5a37516f121e22a810b430ac19a530194d94eeadf383587742","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-58751151c564e11c5cb8aedd3a2d3527c22f73eb","semester":"1262","observed_at":"2025-06-01 06:59:01.536576+00:00","record_version_id":"73d9bd575d40558527f0bd2bb7402d0777c9492146fee55ca8afcb5f95ec6ce8","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-5c4c8d3701a333ba4ddadef7d0b5dde8440fcdf0","semester":"1262","observed_at":"2025-06-01 01:57:51.256704+00:00","record_version_id":"ac675b2e8665e2600a2331654f162c8d9b9a4ddb4191401ed362fbb5325389a8","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-5d20d9f81651d3c83fcaa2fd10870ce6e5d5a685","semester":"1262","observed_at":"2025-05-21 16:48:48.484741+00:00","record_version_id":"d79dae6703762b3568817c8dae635de272041754b40a750ee81b7ce428ae0aa2","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-5feaebf2ab37051c86ad360cc0fa0d7e0e2ea295","semester":"1262","observed_at":"2025-05-24 15:58:23.378859+00:00","record_version_id":"46245ef97c4d83f5cdcab1a3d99a4cde2e28993cb2f87e50f7e47909c3368617","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-60949965544fce098cc006354e201149005fb77b","semester":"1264","observed_at":"2025-10-26 05:07:14.077864+00:00","record_version_id":"acae258bc617f4f7c3ffdccc88224b44e89dc3f17a4f4ddca9f3e1f8a509adef","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-639225ac3addf8522f1d30cb4fe26054ea7f8c49","semester":"1262","observed_at":"2025-06-01 08:14:42.497608+00:00","record_version_id":"259eeb72b8323687f51afe35e8ae0286117892468e7c36afc664ed2090a496af","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-64093b17b3a9c67a41aa33eb37adb53ec38df714","semester":"1262","observed_at":"2025-05-22 02:11:02.531191+00:00","record_version_id":"58fa3586ca909bca689adcbe9757ca54f5955956002fdf612065dc689560e293","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-6885b56099f55e08aa0205546369fb0381d50e13","semester":"1262","observed_at":"2025-07-13 04:59:22.367394+00:00","record_version_id":"92db1c0c6d969034979765918bba020d5eb799d858e8ccfacc8ece83ed72043f","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-69d4b2b16e8268f75b6390b3a0e2ce8bf73999da","semester":"1262","observed_at":"2025-06-30 03:21:29.925498+00:00","record_version_id":"18194d24116e163d41a701803805b1857c5f9292ed391ece858fbc4df6799384","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-6b29c3e0673b2f9a736d2363db5409e03d5b3ed4","semester":"1264","observed_at":"2025-12-03 12:33:41.418072+00:00","record_version_id":"f82747e49d8531bb82c56b02dcf6bc407c34dba03290fe0bccdaf60c1d500391","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-73259984748de484976ef2ad56ad7ab3d4cb4518","semester":"1262","observed_at":"2025-06-26 08:27:56.461216+00:00","record_version_id":"35466a7458cefa5b7567da6814a351d87956abebe564061a01edb8dd7f2ab885","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-741602fbc6252c232a0b9e6bc1a9ae3101625f5a","semester":"1262","observed_at":"2025-06-30 22:49:32.522034+00:00","record_version_id":"e6c6dcef6cb1a7a5a6345efb972dd700deb2245bdb63bbe84b556e4dec858a93","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-7774f45558276ec29bf626e58fffb4a27bdbb2a9","semester":"1264","observed_at":"2025-11-01 11:49:36.359151+00:00","record_version_id":"7278c7a1cc7a50a4344f39b55012452dee0fed28dded9dc8bedbe4ec0b966114","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-7ab7c5e783fc8ebef8b8ee8cea019ee37a72ce74","semester":"1262","observed_at":"2025-09-28 04:58:07.340658+00:00","record_version_id":"43c8eca9b65f3491e3908d2512d3e00b4c3d868975de54334a1d77e743b3fe8b","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-7b2f22d83ea05055ab90dcb77dc802382cccc6f7","semester":"1262","observed_at":"2025-05-21 17:56:46.096741+00:00","record_version_id":"151e034d2147795bd23a04232dafd7bb941244c12ddfe00d63cfafe4f5bb3e36","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-7ca1175502be18eb51f7b016818a884a43fd4ebb","semester":"1262","observed_at":"2025-07-29 06:28:23.644795+00:00","record_version_id":"31c6eea85ae65198de5fa32428a751819b3bcdeac0e4f98b660469915a819021","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-7d8cee5e42602ad9ba5dc0322085af2fa0dffaac","semester":"1262","observed_at":"2025-05-22 01:15:19.291664+00:00","record_version_id":"2240d47d4520ed20d4fbe5ac45fb81dc66b5a213f4f417331ed075ffa1566d74","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-81a0d6a7f668c98c59bd05fa988aa079c5ad1f68","semester":"1262","observed_at":"2025-05-31 07:49:50.419452+00:00","record_version_id":"b52132197dd57d1d11fa671f8a698aa0a9d72d7a329cae4ce1a5ea753ecb2f10","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-82f31c08c746a214872494cde6ecaeb9330441b4","semester":"1262","observed_at":"2025-06-17 21:26:08.547156+00:00","record_version_id":"76dae3e533c384f90428760f334731628bc4b4f6b1a124bb9558733d1d6f061b","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-84c248343c5a99ab42c5616c594812a5e3e31cbb","semester":"1262","observed_at":"2025-07-04 06:00:07.487827+00:00","record_version_id":"3af54e3431cf9a00e967e4d85198b8ecadfa540e4c581992e52bf12ce33b5e42","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-86334e7275e315853287e8580c35456c68df800b","semester":"1262","observed_at":"2025-05-22 06:53:03.336354+00:00","record_version_id":"0f56161ef4378153f370e174f48187edd45c49cbbda0390aa3c7d3651d24cc54","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-8686dc1664f93a6c05f50321410961b39b12f91b","semester":"1262","observed_at":"2025-05-28 10:17:41.595894+00:00","record_version_id":"867d6b6bae71dabd079c621bef1deafd89aaa97772fdcb87d5a0afbd6bbd1b16","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-86d941366886c9a14a2581c04e20d0bdd25e1b02","semester":"1262","observed_at":"2025-08-31 04:54:14.656039+00:00","record_version_id":"829eef44ada76dfd1e0a6c23184a9bf969331654715b3c580a05b3a02560f423","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-8ba1d2e6cfbb1525b4f9f769ec164fb6ad0f237a","semester":"1262","observed_at":"2025-06-02 05:22:45.010398+00:00","record_version_id":"843ffa37722125bd4a5c5d471ad11d0ef8502e448d50f6314a9a16978094bb48","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-90e5aa456689a3b222016c05c319bbcd0bddd453","semester":"1262","observed_at":"2025-05-25 02:00:10.037905+00:00","record_version_id":"81ba877076c0bb52444eec51d6a860e5b3248522ce838f6d94d771d0bae98b1e","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-92d960aa7e4cd6e4c9ac8b2e232092904038e9e4","semester":"1262","observed_at":"2025-06-08 01:50:46.451351+00:00","record_version_id":"af05a60319dd8e2ce7baaa20288106e9ba7d99bb150ef71dd11fa159097ead6a","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-94002ae588a8f71eca6d64105f2e603e8587293b","semester":"1262","observed_at":"2025-05-21 09:01:16.021508+00:00","record_version_id":"6ee3bdc87fc6c8e2fad8997ec5b209bfa5922932dc65805856a8809401649415","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-9dd575e013c5c6e000ab3ad2d1288cc1dd9c96dc","semester":"1264","observed_at":"2025-12-21 04:47:46.589081+00:00","record_version_id":"7eb41d8f29ba13ff654b6226eac4478f526ffeb91007361b578e083aa7982f7f","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-a1ea26ed78cbd6e94bc3221e50a6ed9b6bf43871","semester":"1262","observed_at":"2025-05-25 09:16:55.180581+00:00","record_version_id":"904a454de7b124e03aa340f4cd1b4cb0f934b410dbb9ad48edc52d9649d9d936","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-a76a3505853d5ea9c13bb98472b87361d469e2ee","semester":"1262","observed_at":"2025-05-28 18:03:41.793846+00:00","record_version_id":"ecf81d0cfe83e40e54fab8eb52c52bb615a96db90c6a8b6442429f1067557e96","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-b285d591f6acf3aa1910e02edc297664db86eb8c","semester":"1262","observed_at":"2025-06-10 22:48:22.460295+00:00","record_version_id":"484fec7f3f1c03b2d1b68bc038b6cc7fb1a1944c546d300817453f3de61101a8","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-b79af756e4f00ba98231feb859ed8e98239eb811","semester":"1262","observed_at":"2025-05-22 02:47:56.931581+00:00","record_version_id":"1931177616580e474c0d291463c74976a0c4aea748690b9d7cd505a44d33aede","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-b89e05b94730c6471439082d9279c0a834a4aeec","semester":"1262","observed_at":"2025-08-26 20:25:42.325239+00:00","record_version_id":"ae029eca75c6ee8e375411967f7fdc1279a5c3fb3be7a6d735c87e4a79368b20","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-b9279a12d1f2688df9e556183c94d41a89e431dc","semester":"1262","observed_at":"2025-07-06 01:49:47.203835+00:00","record_version_id":"70eb75b652d33f499a70538ee00e157906755afda9ffd31b3a047b5d9c13752f","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-bbdc905e96cc681a5e9a8b02c795b682206e36d1","semester":"1262","observed_at":"2025-06-25 08:02:45.445730+00:00","record_version_id":"707b38248f240fc95eb7f5c83581e20fa284c951843e7b610864d85503b87228","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-bde225b5243a13d81827aa173e39c78a652b54a0","semester":"1262","observed_at":"2025-05-23 07:22:33.219345+00:00","record_version_id":"fe7ba6cececd0386b1d579b8e822f5bfd5df0fd6622d318087dbf0daf7d3031f","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-c1fac4cbfde737f4f4ac02cdf15e6f5a9b5b676d","semester":"1262","observed_at":"2025-05-22 01:15:19.291664+00:00","record_version_id":"2240d47d4520ed20d4fbe5ac45fb81dc66b5a213f4f417331ed075ffa1566d74","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-c6b62be45f8a13cba109ef2a7741b9cd9a6b8272","semester":"1262","observed_at":"2025-08-24 08:48:09.035112+00:00","record_version_id":"d830ec2a81fde813a1d788c6eb9b4817760e7f507f8367fae1e30e73ac72a05a","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-cc83f62cb6db61f39320916d819ad48ce55cd96d","semester":"1262","observed_at":"2025-05-22 00:45:35.735230+00:00","record_version_id":"1fc3b4cab19d6508848cddb0a02ac8f1e48867de6ec6b443ee96f45bee2c773e","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-d33818a01b6b4c5e2902e704da6e5b713742d4dc","semester":"1262","observed_at":"2025-10-13 10:46:24.251475+00:00","record_version_id":"5611fafeb7f225c34aa1cc1130aa1f68ce1e3638cdb34ebc535de53507518d9d","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-d3c17db9832d3064916046caf891dd23f10b1bb9","semester":"1262","observed_at":"2025-08-26 11:30:42.288639+00:00","record_version_id":"de8e863b098ad6a7535c3f35252e5b307d8962c6aae93bee83430a0e4a773ef2","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-d4ee226dc44268e9b6767fb9f5f20343322f494b","semester":"1262","observed_at":"2025-06-15 01:52:23.911697+00:00","record_version_id":"b62b4aabcf03a8eae26ce4b7fec525b39e64b5175b1dea47ddb6e5b4668e6a33","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-d8f9fc7f136e2033556d9d65bbdbdf33425dbdc9","semester":"1262","observed_at":"2025-05-28 16:48:12.400438+00:00","record_version_id":"574cb4fe3fe1c9581b5ea7463908101f6e848bbd72ed48d0e4858f4f5592192b","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-dbbc9739c616c3846b2e796e00a36fa41225f7d8","semester":"1262","observed_at":"2025-06-01 17:47:19.325144+00:00","record_version_id":"371b57df3a73a86d9deec08cfe6624bce9fd8c314e7895556ade9e4aefb6b9fc","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-dbe5f2d24b48c3177297a3d69c553cc9d1194bac","semester":"1262","observed_at":"2025-09-14 05:00:27.366070+00:00","record_version_id":"4da9f37bab9abd1488889138c287eb8ae2df526a0a3cc5f491a25ecb525bba3b","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-dd357dc2758e9e282c30988a527ce37de92593b9","semester":"1264","observed_at":"2025-10-19 01:39:41.951404+00:00","record_version_id":"e613a5bbfb1f8fe4f31b6d9fedf759e9b9132314b7a2770ffbc4a4ba569c541c","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-de74de559e409a3fe668685e28043b888d2e6841","semester":"1262","observed_at":"2025-06-27 07:38:50.882897+00:00","record_version_id":"98c74b7269dffb928c043330e31c118a3655588cca0401ca56b230cf7aecd368","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-deca7188cf536ade3203cd88b52a45e92a059617","semester":"1262","observed_at":"2025-06-27 00:37:46.087071+00:00","record_version_id":"88a388a6ab0dafd6597c51cf403ddffbe29ad107ee7d7656adfadc52dec682da","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-df60fa9ac3931c5612b0fa641b7a6f5fbec86fab","semester":"1262","observed_at":"2025-05-24 06:36:37.554678+00:00","record_version_id":"8e3d2a68fdf00e3d27ab8138b3e647fd0ed4dd79fe5bdd971459c09696aace6f","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-e339da2d849aaf8bb4dceca07a84728af23cf755","semester":"1262","observed_at":"2025-07-23 08:49:22.748925+00:00","record_version_id":"296796d3e2ba23af73117713cf76a2dcbc1fde8f8a666a0cb0f1258f2e1a3e08","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-e934b1784835f5d36ae9b7ef0992b11e72c39142","semester":"1262","observed_at":"2025-06-01 06:21:25.219533+00:00","record_version_id":"a9b6166df84f86b87a53fe5ef28abb0e7b8cd6567c300de8e20ded5ab064508c","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-ef471690c082448deebd2687eab84b0b78813c36","semester":"1262","observed_at":"2025-06-29 01:47:56.317645+00:00","record_version_id":"8ee22f4e983d68db15d45d29a6f736b2620976ac31bed4c8dae7677c29235955","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-efc4e8e2cd7c3f68e059a308990c00c77c7611eb","semester":"1264","observed_at":"2025-10-16 05:48:13.935141+00:00","record_version_id":"7198988e2dd8a9933daddb4fd411d65e3c7398a9abc4b69e9a67a4062fe87a49","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"},{"run_id":"legacy-f18b7749725097d41f69c60779ff38cf073b93b3","semester":"1262","observed_at":"2025-05-21 19:52:03.259353+00:00","record_version_id":"02ceb10be6c05b94bdc9a33a589ff71a67e9ad435b07cab1245bee9da960921d","course_id":"BME 330","course_uid":"course_8a265fd197218e66e32da298","catalog_version_id":"d0485cd3475bc52437f6d25229ca2d2d4343fc4b47384b55971d0e34d8be32bf","course_number":330,"subjects":["BME"],"title":"ENGINEERING PRINCIPLES OF MOLECULES, CELLS, AND TISSUES","description":"Introduction to the fundamental principles of kinetics and transport that are relevant for the analysis of biological systems. Topics covered include concepts of reaction rate, stoichiometry, equilibrium, momentum/mass transport, and the interaction between transport and kinetics in biological systems.","requirements_text":"(E M A 201,PHYSICS 201,207, or247), (MATH 319,320, or375) and (CHEM 104,109, or116), or member of Engineering Guest Students"}]