Heat capacity: Difference between revisions

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m (→‎Debye: Added a formula.)
m (Added a reference.)
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*[http://dx.doi.org/10.1063/1.1667469 Claudio A. Cerdeiriña, Diego González-Salgado, Luis Romani, María del Carmen Delgado, Luis A. Torres and Miguel Costas "Towards an understanding of the heat capacity of liquids. A simple two-state model for molecular association", Journal of Chemical Physics '''120''' pp. 6648-6659 (2004)]
*[http://dx.doi.org/10.1063/1.1667469 Claudio A. Cerdeiriña, Diego González-Salgado, Luis Romani, María del Carmen Delgado, Luis A. Torres and Miguel Costas "Towards an understanding of the heat capacity of liquids. A simple two-state model for molecular association", Journal of Chemical Physics '''120''' pp. 6648-6659 (2004)]
==Solids==
==Solids==
====Dulong and Petit====
====Petit and Dulong====
<ref>Alexis-Thérèse Petit and Pierre-Louis Dulong "Recherches sur quelques points importants de la Théorie de la Chaleur", Annales de Chimie et de Physique '''10''' pp. 395-413 (1819)</ref>
====Einstein====
====Einstein====
====Debye====
====Debye====
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*[[Ideal gas: Heat capacity | Heat capacity of an ideal gas]]
*[[Ideal gas: Heat capacity | Heat capacity of an ideal gas]]
==References==
==References==
<references/>
[[category: classical thermodynamics]]
[[category: classical thermodynamics]]

Revision as of 15:25, 5 November 2009

The heat capacity is defined as the differential of heat with respect to the temperature ,

where is heat and is the entropy.

At constant volume

From the first law of thermodynamics one has

thus at constant volume, denoted by the subscript , then ,

At constant pressure

At constant pressure (denoted by the subscript ),

where is the enthalpy. The difference between the heat capacity at constant pressure and the heat capacity at constant volume is given by

Liquids

Solids

Petit and Dulong

[1]

Einstein

Debye

A low temperatures on has

where is the Boltzmann constant, is the temperature and is an empirical parameter known as the Debye temperature.

See also

References

  1. Alexis-Thérèse Petit and Pierre-Louis Dulong "Recherches sur quelques points importants de la Théorie de la Chaleur", Annales de Chimie et de Physique 10 pp. 395-413 (1819)