Thermodynamic and Statistical Mechanics, Self Guided Course
General Information
Lecture 1: General Introduction
Lecture 2: Temperature and the Boltzmann factor
Lecture 3: Kinetic theory of gas, including Maxwell-Boltzmann
Lecture 4: First Law of Thermodynamics
Lecture 5: Second Law of Thermodynamics
Lecture 6: Entropy
Lecture 7: Information and Entropy
Lecture 8: Thermodynamic potentials
Lecture 9: Rods, bubbles, and magnets
Lecture 10: Third Law of Thermodynamics
Lecture 11: Equipartition of energy
Lecture 12: The partition function
Lecture 13: Statistical mechanics of an ideal gas
Lecture 14: Chemical Potential
Lecture 15: Photons
Lecture 16: Phonons
Lecture 17: Ultra-relativistic gas
Lecture 18: Real gas
Lecture 19: Cooling real gas
Lecture 20: Phase transition
Lecture 21: Bose-Einstein and Fermi-Dirac Distributions
Lecture 22: Quantum gases and condensates
Complement 1: Exact Differential
Complement 2: Combinatorics and Probability Distribution
Complement 3: Integral Appendix
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Thermodynamic and Statistical Mechanics, Self Guided Course
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