Semi-grand ensembles: Difference between revisions

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Consider now that we want to consider a system with fixed total number of particles, <math> N </math>
Consider now that we want to consider a system with fixed total number of particles, <math> N </math>


: <math> \left. N = N_1 + N_2 \right. </math>;  
: <math> \left. N = \sum_{i=1}^c N_i  \right. </math>;  


but the composition can change, from the thermodynamics we can apply a Legendre's transform [HAVE TO CHECK ACCURACY]
but the composition can change, from the thermodynamics we can apply a Legendre's transform [HAVE TO CHECK ACCURACY]
to the differential equation written above in terms of <math> A (T,V,N_1,N_2) </math>.  
to the differential equation written above in terms of <math> A (T,V,N_1,N_2) </math>.  


# Consider the change <math> (N_1,N_2) \rightarrow (N,N_2) </math> i.e.: <math> \left. N_1 = N-N_2 \right. </math>
# Consider the variable change <math> N_1 \rightarrow N </math> i.e.: <math> \left. N_1 = N- \sum_{i=2}^c N_i \right. </math>





Revision as of 16:46, 5 March 2007

General Features

Semi-grand ensembles are used in Monte Carlo simulation of mixtures.

In this ensembles the total number of molecules is fixed, but the composition can change.

Canonical Ensemble: fixed volume, temperature and number(s) of molecules

We will consider a system with "c" components;. In the Canonical Ensemble, the differential equation energy for the Helmholtz energy function can be written as:

,

where:

  • is the Helmholtz energy function
  • is the Boltzmann constant
  • is the absolute temperature
  • is the internal energy
  • is the pressure
  • is the chemical potential of the species "i"
  • is the number of molecules of the species "i"

Semi-grand ensemble at fixed volume and temperature

Consider now that we want to consider a system with fixed total number of particles,

;

but the composition can change, from the thermodynamics we can apply a Legendre's transform [HAVE TO CHECK ACCURACY] to the differential equation written above in terms of .

  1. Consider the variable change i.e.:



Or:

where . Now considering the thermodynamical potentia:

Fixed pressure and temperature

In the Isothermal-Isobaric ensemble: ensemble we can write:

where: