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Lecture
Statistical Physics: Entropy
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Ensembles and Partition Functions
Covers ensembles, partition functions, and distributions in statistical thermodynamics.
Quantum to Classical Mechanics: Fundamentals
Covers the transition from quantum to classical mechanics, statistical mechanics, Monte Carlo simulations, and molecular dynamics simulations.
Statistical Definition of Entropy: Microstates and Macrostates
Covers microstates, macrostates, entropy, and density of states in statistical mechanics.
Statistical Physics: Isolated Systems and Entropy
Covers statistical physics, isolated systems, entropy, and the Boltzmann distribution.
Statistical Physics: Systems Isolation
Explores statistical physics concepts in isolated systems, focusing on entropy and disorder.
Path integrals and statistical mechanics
Explores path integral methods, partition functions, Trotter factorization, quantum-classical isomorphism, and multidimensional generalization in statistical mechanics.
Molecular dynamics under constraints
Explores molecular dynamics simulations under holonomic constraints, focusing on numerical integration and algorithm formulation.
Quantum Statistics: Canonical & Grand Canonical Ensembles
Explores quantum statistics in canonical and grand canonical ensembles, discussing distinguishability, microstates, and the Pauli exclusion principle.
Canonical Ensemble: Partition Function and Ideal Gas
Explores the canonical ensemble, partition function, and ideal gas properties.
Statistical Thermodynamics: Microcanonical and Canonical Ensembles
Explores the microcanonical and canonical ensembles, historical contributions, macrostates, microstates, and particle arrangements in statistical thermodynamics.