Grand canonical ensemble: Difference between revisions

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The '''grand-canonical ensemble''' is particularly well suited to simulation studies of adsorption.
== Ensemble variables ==
== Ensemble variables ==




* Chemical Potential, <math> \left. \mu \right.  </math>
* [[Chemical potential]], <math> \left. \mu \right.  </math>


* Volume, <math> \left. V  \right. </math>
* Volume, <math> \left. V  \right. </math>

Revision as of 16:34, 22 May 2007

The grand-canonical ensemble is particularly well suited to simulation studies of adsorption.

Ensemble variables

  • Volume,
  • Temperature,

Partition Function

Classical partition function (one-component system) in a three-dimensional space:

where:

  • is the number of particles
  • , with being the Boltzmann constant
  • is the potential energy, which depends on the coordinates of the particles (and on the interaction model)
  • represent the position coordinates of the particles (reduced with the system size): i.e.

Helmholtz energy and partition function

The corresponding thermodynamic potential, the grand potential, , for the grand canonical partition function is:

,

where A is the Helmholtz energy function. Using the relation

one arrives at

i.e.: