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| {{Stub-general}}
| | [[category: statistical mechanics]] |
| The '''Gibbs paradox''' serves to highlight the differences between indistinguishable particles and distinguishable particles, whose [[partition function]]s are distinct. This leads to the [[entropy]] for the [[Sackur–Tetrode equation | ideal gas]] to be either [[Extensive properties | extensive]] (which it should be) or not.
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| ==References==
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| ;Related reading
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| *[http://dx.doi.org/10.1119/1.1987279 Barry M. Casper and Susan Freier ""Gibbs Paradox" Paradox", American Journal of Physics '''41''' pp. 509-511 (1973)]
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| *[http://dx.doi.org/10.1119/1.16653 Peter D. Pesic "The principle of identicality and the foundations of quantum theory. I. The Gibbs paradox", American Journal of Physics '''59''' pp. 971-974 (1991)]
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| * E. T. Jaynes "The Gibbs Paradox", in ''Maximum Entropy and Bayesian Methods'', Series: Fundamental Theories of Physics , Vol. 50 Kluwer Academic Publishers (1992) ISBN 978-0-7923-4311-0
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| *[http://dx.doi.org/10.1002/ejtc.27 S.-K. Lin "Gibbs paradox of entropy of mixing: experimental facts, its rejection and the theoretical consequences", Electronic Journal of Theoretical Chemistry '''1''' pp. 135-151 (2001)]
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| *[http://dx.doi.org/10.1063/1.1477057 Chih-Yuan Tseng and Ariel Caticha1 "Yet another resolution of the Gibbs paradox: an information theory approach", AIP Conference Proceedings '''617''' pp. 331-339 (2002)]
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| *[http://dx.doi.org/10.1063/1.3660203 Denis J. Evans, Stephen R. Williams, and Debra J. Searles "On the entropy of relaxing deterministic systems", Journal of Chemical Physics '''135''' 194107 (2011)]
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| [[category:paradox]] | | [[category:paradox]] |
| [[category: classical thermodynamics]]
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| [[category: statistical mechanics]]
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