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@wikipedia


Equation of State for the Ideal Gas:

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\rho(T, p) = \frac{M}{R} \cdot \frac{p}{T}

where

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body\rho

Gas density

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bodyp

Gas pressure

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bodyM

Gas molar mass


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bodyT

Gas temperature

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bodyR

Gas constant


Alternative forms

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p  = n \, k \,  T



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p  = \rho_m \, R \, T




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p  = \frac{R \, T}{V_m}



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p \, V = \nu \, R \, T





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Z = 1


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body--uriencoded--n = \frac%7B\rho%7D%7BM%7D

Gas concentration

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body\rho_m

Gas molar density

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body

pgas pressure

V_m

Gas molar volume

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bodyV

gas volume
Gas volume

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bodyZ

Compressibility factor

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body

T

k

gas temperature
Boltzmann constant

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body\nu

amount of
Amount of gas substance

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bodyR

gas constant


See also

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Natural Science / Physics / Thermodynamics / Equation of State

Ideal Gas ]

Real Gas EOS @model ]