Clausius equation of state: Difference between revisions

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m (Undo revision 9115 by 140.136.232.232 (Talk) I think things were correct as they were.)
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where
where


:<math>a = \frac{27R^2T_c^2}{64P_c}</math>
:<math>a = v_c - \frac{RT_c}{4P_c}</math>


:<math>b= v_c - \frac{RT_c}{4P_c}</math>
:<math>b= \frac{3RT_c}{8P_c}-v_c</math>


and
and


:<math>c= \frac{3RT_c}{8P_c}-v_c</math>
:<math>c= \frac{27R^2T_c^2}{64P_c}</math>


where <math>p</math> is the [[pressure]], <math>T</math> is the [[temperature]], <math> v </math> is the volume per mol,  and <math>R</math> is the [[molar gas constant]]. <math>T_c</math> is the [[critical points | critical]] temperature and <math>P_c</math> is the [[pressure]] at the critical point, and <math> v_c </math> is the critical volume per mol.
where <math>p</math> is the [[pressure]], <math>T</math> is the [[temperature]], <math> v </math> is the volume per mol,  and <math>R</math> is the [[molar gas constant]]. <math>T_c</math> is the [[critical points | critical]] temperature and <math>P_c</math> is the [[pressure]] at the critical point, and <math> v_c </math> is the critical volume per mol.

Revision as of 11:56, 20 October 2009

The Clausius equation of state is given by [1]

where

and

where is the pressure, is the temperature, is the volume per mol, and is the molar gas constant. is the critical temperature and is the pressure at the critical point, and is the critical volume per mol.

References