Stanford Root

Schedule

Stanford Root

Schedule

BIOE 279

Computational Biology: Structure and Organization of Biomolecules and Cells (BIOPHYS 279, BMDS 245, CME 279, CS 279)

UNITS:3
GRADING:Medical Option (Med-Ltr-CR/NC)
LEVEL:Graduate
GER:—

Computational techniques for investigating and designing the three-dimensional structure and dynamics of biomolecules and cells. These computational methods play an increasingly important role in drug discovery, medicine, bioengineering, and molecular biology. Course topics include protein structure prediction, protein design, drug screening, molecular simulation, cellular-level simulation, image analysis for microscopy, and methods for solving structures from crystallography and electron microscopy data. Prerequisites: elementary programming background (CS 106A or equivalent) and an introductory course in biology or biochemistry.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 25035
0 / 86 enrolled
DAYS:Tuesday, Thursday
TIME:3 PM – 4:20 PM
LOCATION:Packrd101
INSTRUCTOR:
Dror, Ron
3units

BIOE 279: Computational Biology: Structure and Organization of Biomolecules and Cells (BIOPHYS 279, BMDS 245, CME 279, CS 279)

3 units · Medical Option (Med-Ltr-CR/NC)

Computational techniques for investigating and designing the three-dimensional structure and dynamics of biomolecules and cells. These computational methods play an increasingly important role in drug discovery, medicine, bioengineering, and molecular biology. Course topics include protein structure prediction, protein design, drug screening, molecular simulation, cellular-level simulation, image analysis for microscopy, and methods for solving structures from crystallography and electron microscopy data. Prerequisites: elementary programming background (CS 106A or equivalent) and an introductory course in biology or biochemistry.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Tuesday Thursday 3:00 PM – 4:20 PM — Packrd101 — Dror, Ron (Graduate)

More BIOE courses

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  • BIOE 267: How to Serve the World (MED 267)
  • BIOE 271: Frugal Science
  • BIOE 273: Biodesign for Digital Health (MED 273)
  • BIOE 274: Micro and Nano Processing Technologies for Medical Electronics (CHEMENG 247, CHEMENG 447)
  • BIOE 277: AI-Assisted Care (CS 337, MED 277, PSYC 278)
  • BIOE 281: Biomechanics of Movement (ME 281)
  • BIOE 282: Introduction to Biomechanics and Mechanobiology (ME 283)
  • BIOE 283: Mechanotransduction in Cells and Tissues (BIOPHYS 244, ME 244)
  • 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

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