Stanford Root

Schedule

Stanford Root

Schedule

BIOPHYS 279

Computational Biology: Structure and Organization of Biomolecules and Cells (BIOE 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: 25037
0 / 999 enrolled
DAYS:Tuesday, Thursday
TIME:3 PM – 4:20 PM
LOCATION:Packrd101
INSTRUCTOR:
Dror, Ron
3units

BIOPHYS 279: Computational Biology: Structure and Organization of Biomolecules and Cells (BIOE 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 BIOPHYS courses

  • BIOPHYS 232: Advanced Imaging Lab in Biophysics (APPPHYS 232, BIO 132, BIO 232, BIOE 232, GENE 232)
  • BIOPHYS 235: Biotransport Phenomena (APPPHYS 235, BIOE 235, ME 235)
  • BIOPHYS 241: Biological Macromolecules (BIOC 241, BIOE 241, SBIO 241)
  • BIOPHYS 242: Methods in Molecular Biophysics (SBIO 242)
  • BIOPHYS 244: Mechanotransduction in Cells and Tissues (BIOE 283, ME 244)
  • BIOPHYS 250: SEMINAR IN BIOPHYSICS
  • BIOPHYS 294: Cellular Biophysics (APPPHYS 294)
  • BIOPHYS 297: Bio-Inorganic Chemistry (CHEM 257)
  • BIOPHYS 300: Graduate Research
  • BIOPHYS 399: Directed Reading in Biophysics
  • BIOPHYS 801: TGR Project
  • BIOPHYS 802: TGR Dissertation

All BIOPHYS courses · All departments