Stanford Root

Schedule

Stanford Root

Schedule

BIOE 300B

Quantitative Physiology

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

An engineering approach to understanding physiological phenomenon. Course introduces weekly topics in biology and human physiology paired with a mathematical approach to modeling and understanding that week's topic. No strict prerequisites. No prior background in biology is required or assumed. Familiarity with linear algebra, statistics, and programming is recommended. Course information at: http://bioe300b.stanford.edu

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 1919
0 / 50 enrolled
DAYS:Monday, Wednesday, Friday
TIME:1:30 PM – 2:50 PM
LOCATION:Hewlett Teaching Center 102
INSTRUCTOR:
Nuyujukian, Paul, Willett, Frank
3units

BIOE 300B: Quantitative Physiology

3 units · Letter or Credit/No Credit

An engineering approach to understanding physiological phenomenon. Course introduces weekly topics in biology and human physiology paired with a mathematical approach to modeling and understanding that week's topic. No strict prerequisites. No prior background in biology is required or assumed. Familiarity with linear algebra, statistics, and programming is recommended. Course information at: http://bioe300b.stanford.edu

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Monday Wednesday Friday 1:30 PM – 2:50 PM — Hewlett Teaching Center 102 — Nuyujukian, Paul, Willett, Frank (Graduate)

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  • BIOE 285: Computational Modeling in the Cardiovascular System (CME 285, ME 285)
  • BIOE 291: Principles and Practice of Optogenetics for Optical Control of Biological Tissues
  • BIOE 293: Bioengineering Department Colloquium
  • BIOE 296: Evidence-Based Approaches in Effective Teaching & Research Mentorship
  • BIOE 300A: Molecular and Cellular Bioengineering (BIOPHYS 200A)
  • BIOE 301A: Molecular and Cellular Engineering Lab (EE 235)
  • BIOE 301B: Clinical Needs and Technology (BMP 301B)
  • BIOE 301C: Diagnostic Devices Lab (BIOE 201C)
  • BIOE 301D: Microfluidic Device Laboratory (GENE 207)
  • BIOE 301E: Computational Protein Modeling Laboratory
  • BIOE 301P: Research Data, Computation, & Visualization

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