Compressibility: Difference between revisions

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(New page: :<math>Z= \frac{pV}{Nk_BT}</math> The bulk modulus <math>B</math> gives the change in volume of a solid substance as the pressure on it is changed, :<math>B = -V \frac{\partial P}{\parti...)
 
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:<math>N = \int_V \rho(r,t)~{\rm d}r</math>
:<math>N = \int_V \rho(r,t)~{\rm d}r</math>
 
==See also==
The [[compressibility equation]] in [[statistical mechanics]].
==Compressibility of an Ideal Gas==
==Compressibility of an Ideal Gas==
From the [[Equation of State: Ideal Gas | ideal gas law]]  we see that
From the [[Equation of State: Ideal Gas | ideal gas law]]  we see that


:<math>Z= \frac{pV}{Nk_BT}=1</math>
:<math>Z= \frac{pV}{Nk_BT}=1</math>

Revision as of 15:24, 22 May 2007

Z=pVNkBT

The bulk modulus B gives the change in volume of a solid substance as the pressure on it is changed,

B=−V∂P∂V

The compressibility K or κ, is given by

κ=1B

The isothermal compressibility, κT is given by

κT=−1V∂V∂P|T=1ρ∂ρ∂P|T

(Note: in Hansen and McDonald the isothermal compressibility is written as χT). where ρ is the particle number density given by

ρ=NV

where N is the total number of particles in the system, i.e.

N=∫Vρ(r,t)dr

See also

The compressibility equation in statistical mechanics.

Compressibility of an Ideal Gas

From the ideal gas law we see that

Z=pVNkBT=1