We apply the general formalism of statistical mechanics to classical and quantum systems of noninteracting particles and discuss the equipartition theorem, the Maxwell velocity distribution, the Fermi-Dirac and Bose-Einstein distributions, blackbody radiation, the ideal Fermi and Bose gases, and the specific heat of a crystalline solid among other applications.

<a href="https://www.compadre.org/OSP/items/detail.cfm?ID=7275">Gould, Harvey, and Jan Tobochnik. "STP Textbook Chapter 6: Many Particle Systems." In Thermal and Statistical Physics. 2008.</a>

H. Gould and J. Tobochnik, in Thermal and Statistical Physics (2008), WWW Document, (https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449).

H. Gould and J. Tobochnik, STP Textbook Chapter 6: Many Particle Systems, in Thermal and Statistical Physics (2008), <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449>.

Gould, H., & Tobochnik, J. (2008). STP Textbook Chapter 6: Many Particle Systems. In Thermal and Statistical Physics. Retrieved August 24, 2019, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449

Gould, Harvey, and Jan Tobochnik. "STP Textbook Chapter 6: Many Particle Systems." In Thermal and Statistical Physics. 2008. https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449 (accessed 24 August 2019).

Gould, Harvey, and Jan Tobochnik. "STP Textbook Chapter 6: Many Particle Systems." Thermal and Statistical Physics. 2008. 9 Apr. 2008. 24 Aug. 2019 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449>.

@incollection{
Author = "Harvey Gould and Jan Tobochnik",
Title = {STP Textbook Chapter 6: Many Particle Systems},
BookTitle = {Thermal and Statistical Physics},
Month = {April},
Year = {2008}
}

%0 Book Section %A Gould, Harvey %A Tobochnik, Jan %D April 9, 2008 %T STP Textbook Chapter 6: Many Particle Systems %B Thermal and Statistical Physics %8 April 9, 2008 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=7275&DocID=449

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