- Employs microscopic description of gases of classical and quantum particles to obtain equations of state for classical and ideal gases
- Reviews relevant basic thermodynamics and establishes their connections to statistical mechanics
- Develops classical (Boltzmann) and quantum (Fermi-Dirac, Bose-Einstein) statistical mechanics
- Treats four types of ensemble and derives expressions for typical thermodynamic functions in terms of corresponding partition functions
- Presents detailed discussions of the roles played by internal molecular states and electronic and nuclear spin states
- Reinforces concepts using applications, worked examples, and end-of-chapter problems
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