Introduction to The Physical Principles of Cellular Dynamics. Mechanical and Chemical Equilibrium in a Biological Context. Central Entropic Processes in The Cell. Random Walk and Models For The Structure of Biomolecules. Methods For Single-molecule Manipulations And Their Uses. Diffusion and Friction. Life at Low Reynolds Number. Procesive Enzymes As Molecular Motors.

Faculty: Biology
|Undergraduate Studies

Pre-required courses

(34035 - Thermodynamics 1 and 104022 - Differential and Integral Calculus 2m and 134058 - Biology 1) or (54316 - Advanced Thermodynamics A and 104022 - Differential and Integral Calculus 2m and 134058 - Biology 1) or (104004 - Differential and Integral Calculus 2 and 124510 - Physical Chemistry and 134058 - Biology 1) or (104004 - Differential and Integral Calculus 2 and 124415 - Physical Chem.-chemical Thermodynamics and 134058 - Biology 1) or (104013 - Differential and Integral Calculus 2t and 124503 - Physical Chemistry 1b and 134058 - Biology 1) or (104022 - Differential and Integral Calculus 2m and 114036 - Statistical and Thermal Physics and 134058 - Biology 1) or (104022 - Differential and Integral Calculus 2m and 124413 - Statistical Thermodynamics and 134058 - Biology 1) or (104032 - Calculus 2m and 124510 - Physical Chemistry and 134058 - Biology 1) or (104281 - Infinitesimal Calculus 2 and 114036 - Statistical and Thermal Physics and 134058 - Biology 1)


Course with no extra credit

134136 - Molecular Biophysics


Semestrial Information