Nobel Laureate's brilliant attempt to develop a simple, unified standard method of dealing with all cases of statistical thermodynamics (classical, quantum, Bose-Einstein, Fermi-Dirac, etc.).
Nobel Laureate's brilliant attempt to develop a simple, unified standard method of dealing with all cases of statistical thermodynamics (classical, quantum, Bose-Einstein, Fermi-Dirac, etc.).Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
I. General introduction II. The method of the most probable distribution III. Discussion of the Nernst theorem IV. Examples on the second section (a) Free mass-point (ideal monatomic gas) (b) Planck's oscillator (c) Fermi oscillator V. Fluctuations VI. The method of mean values VII. The n-particle problem VIII. Evaluation of the formulae. Limiting cases The entropy constant The failure of the classical theory. Gibb's paradox Digression: Annihilation of matter? Digression on the uncertainty relation Gas-degeneration proper Weak degeneration Medium degeneration Strong degeneration (a) Strong Fermi-Dirac degeneration (b) Strong Bose-Einstein degeneration IX. The problem of radiation Appendix
I. General introduction II. The method of the most probable distribution III. Discussion of the Nernst theorem IV. Examples on the second section (a) Free mass-point (ideal monatomic gas) (b) Planck's oscillator (c) Fermi oscillator V. Fluctuations VI. The method of mean values VII. The n-particle problem VIII. Evaluation of the formulae. Limiting cases The entropy constant The failure of the classical theory. Gibb's paradox Digression: Annihilation of matter? Digression on the uncertainty relation Gas-degeneration proper Weak degeneration Medium degeneration Strong degeneration (a) Strong Fermi-Dirac degeneration (b) Strong Bose-Einstein degeneration IX. The problem of radiation Appendix
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