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Titlebook: Elementary Statistical Thermodynamics; A Problems Approach Norman O. Smith Book 1982 Springer Science+Business Media New York 1982 entropy.

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,Thermodynamic Functions for Ideal Gases—Part II,In the previous chapter the contributions of translational, rotational, and vibrational energies to the state functions, which are the major ones in most cases, were described. In the present chapter the remaining contributions are considered.
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978-0-306-41216-5Springer Science+Business Media New York 1982
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https://doi.org/10.1007/978-3-662-37836-6mense numbers of particles (atoms or molecules) of matter. Each particle has available to it an immense number of possible energies of various kinds, but, left to itself, an isolated collection of such particles will eventually come to an equilibrium state in which the number of particles in any one
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Vorbereitung und Planung von Web-Seminaren,at the probability of a system is measured by the number of ways it can be realized it is therefore expected that entropy, ., will be some function of .. Although a full appreciation of this function must await consideration of systems of indistinguishable particles we will commence with those consi
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M. Eric Gershwin,Edwin L. Klingelhoferuld be used to determine the thermodynamic functions for such systems, exemplified by the Einstein and Debye models for crystalline solids. In this chapter we consider the same aspects of systems of indistinguishable particles. This is in order to be able eventually to tackle the subject of gases, t
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