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Search Results
| Name | Grades | Rating | |||
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Not teaching in Spring 2026 | |||||
BMEN 3310 (Overall) | |||||
A | |||||
BMEN 3310 Christian Rivera | |||||
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BMEN 3310 Mihaela Stefan | |||||
A | |||||
Search Results
| Name | Grades | Rating | |||
|---|---|---|---|---|---|
Not teaching in Spring 2026 | |||||
BMEN 3310 (Overall) | |||||
A | |||||
BMEN 3310 Christian Rivera | |||||
A- | |||||
BMEN 3310 Mihaela Stefan | |||||
A | |||||
Fluid Mechanics and Transport Processes in Biomedical Engineering
BMEN 3310
Erik Jonsson School of Engineering and Computer Science
Introduction to fluid flow and transport phenomena in bioengineering. Fluids in biological circulatory systems, devices, and microsystems. Mass, thermal, and multiphase transport in biology. Emphasis on the use of mathematical modeling and computer simulations. 3 credit hours.
Prerequisites: BMEN 1208 and ENGR 3300.
Offering Frequency: Each year
Grades: 148
Median GPA: A
Mean GPA: 3.309
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Fluid Mechanics and Transport Processes in Biomedical Engineering
BMEN 3310
Erik Jonsson School of Engineering and Computer Science
Introduction to fluid flow and transport phenomena in bioengineering. Fluids in biological circulatory systems, devices, and microsystems. Mass, thermal, and multiphase transport in biology. Emphasis on the use of mathematical modeling and computer simulations. 3 credit hours.
Prerequisites: BMEN 1208 and ENGR 3300.
Offering Frequency: Each year
Grades: 148
Median GPA: A
Mean GPA: 3.309
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