Boyle temperature: Difference between revisions

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(New page: The '''Boyle temperature''' is the temperature at which the second virial coefficient becomes zero, ''i.e.'' :<math>B_T \equiv B_2\vert_{T=T_B}=0</math>...)
 
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The '''Boyle temperature''' is the [[temperature]] at which the [[Virial equation of state | second virial coefficient]] becomes zero,
The '''Boyle temperature''', <math>T_B</math>, is the [[temperature]] at which the [[Virial equation of state | second virial coefficient]] becomes zero,
''i.e.''
''i.e.''  


:<math>B_T \equiv B_2\vert_{T=T_B}=0</math>
:<math>B_2\vert_{T=T_B}=0</math>.


At the Boyle temperature the gas obeys [[Boyle's law]].
At the Boyle temperature a non-ideal gas, more or less, obeys [[Boyle's law]] (which holds for an [[ideal gas]]).
==See also==
*[[Van der Waals equation of state#Boyle temperature |Boyle temperature of the van der Waals equation of state]]
*[[Theta solvent]]
==References==
<references/>
[[category: classical thermodynamics]]

Latest revision as of 11:06, 7 October 2010

The Boyle temperature, , is the temperature at which the second virial coefficient becomes zero, i.e.

.

At the Boyle temperature a non-ideal gas, more or less, obeys Boyle's law (which holds for an ideal gas).

See also[edit]

References[edit]