Canonical ensemble: Difference between revisions
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Carl McBride (talk | contribs) m (→Partition Function: Added classical criteria) |
Carl McBride (talk | contribs) m (Added a see also section) |
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* <math> \left( R^*\right)^{3N} </math> represent the 3N position coordinates of the particles (reduced with the system size): i.e. <math> \int d (R^*)^{3N} = 1 </math> | * <math> \left( R^*\right)^{3N} </math> represent the 3N position coordinates of the particles (reduced with the system size): i.e. <math> \int d (R^*)^{3N} = 1 </math> | ||
==See also== | |||
*[[Ideal gas partition function]] | |||
==References== | ==References== | ||
<references/> | <references/> | ||
[[Category:Statistical mechanics]] | [[Category:Statistical mechanics]] |
Revision as of 12:08, 31 August 2011
Variables:
- Number of Particles,
- Volume,
Partition Function
The classical partition function for a one-component system in a three-dimensional space, , is given by:
where:
- is the de Broglie thermal wavelength (depends on the temperature)
- , with being the Boltzmann constant, and T the temperature.
- is the potential energy, which depends on the coordinates of the particles (and on the interaction model)
- represent the 3N position coordinates of the particles (reduced with the system size): i.e.