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Kinetic Theory of Gases
Pressure in Kinetic Theory of Gases Formulas
Pressure is the force applied perpendicular to the surface of an object per unit area over which that force is distributed. And is denoted by p. Pressure is usually measured using the Pascal for Pressure. Note that the value of Pressure is always negative.
Formulas to find Pressure in Kinetic Theory of Gases
f
x
Pressure of Real Gas using Redlich Kwong Equation
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f
x
Actual Pressure using Redlich Kwong Equation given 'a' and 'b'
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f
x
Actual Pressure of Real Gas using Redlich Kwong Equation given 'b'
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f
x
Actual Pressure of Real Gas using Reduced Redlich Kwong Equation
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f
x
Pressure of Real Gas using Berthelot Equation
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f
x
Pressure using Modified Berthelot Equation given Reduced and Actual Parameters
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f
x
Pressure of Real Gas using Berthelot Equation given Critical and Reduced Parameters
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f
x
Actual Pressure of Real Gas given Clausius Parameter a, Reduced and Actual Parameters
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f
x
Actual Pressure of Real Gas given Clausius Parameter b, Actual and Critical Parameters
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f
x
Actual Pressure of Real Gas given Clausius Parameter b, Reduced and Critical Parameters
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f
x
Actual Pressure of Real Gas given Clausius Parameter c, Actual and Critical Parameters
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f
x
Actual Pressure of Real Gas given Clausius Parameter c, Reduced and Critical Parameters
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f
x
Actual Pressure of Real Gas using Critical and Reduced Pressure
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f
x
Pressure of Real Gas using Clausius Equation
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f
x
Pressure of Real Gas using Clausius Equation given Reduced and Critical Parameters
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f
x
Pressure of Real Gas using Peng Robinson Equation
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f
x
Pressure of Real Gas using Peng Robinson Equation given Reduced and Critical Parameters
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f
x
Actual Pressure given Peng Robinson Parameter a, and other Actual and Reduced Parameters
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f
x
Actual Pressure given Peng Robinson Parameter b, other Reduced and Critical Parameters
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f
x
Actual Pressure given Peng Robinson Parameter b, other Actual and Reduced Parameters
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Kinetic Theory of Gases formulas that make use of Pressure
f
x
Molar Volume of Real Gas using Redlich Kwong Equation
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f
x
Critical Pressure of Real Gas using Reduced Redlich Kwong Equation
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f
x
Reduced Pressure of Real Gas using Redlich Kwong Equation given 'a'
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f
x
Reduced Pressure of Real Gas using Redlich Kwong Equation given 'b'
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f
x
Redlich Kwong Parameter given Pressure, Temperature and Molar Volume of Real Gas
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f
x
Redlich Kwong Parameter a, given Reduced and Actual Pressure
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f
x
Redlich Kwong Parameter b given Pressure, Temperature and Molar Volume of Real Gas
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f
x
Redlich Kwong Parameter b given Reduced and Actual Pressure
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f
x
Temperature of Real Gas using Berthelot Equation
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f
x
Molar Volume of Real Gas using Berthelot Equation
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f
x
Berthelot Parameter of Real Gas
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f
x
Berthelot parameter b of Real Gas
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f
x
Molar Volume using Modified Berthelot Equation given Critical and Actual Parameters
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f
x
Molar Volume using Modified Berthelot Equation given Reduced and Actual Parameters
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f
x
Temperature using Modified Berthelot Equation given Reduced and Actual Parameters
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f
x
Critical Temperature using Modified Berthelot Equation given Reduced and Actual Parameters
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f
x
Reduced Molar Volume using Modified Berthelot Equation given Critical and Actual Parameters
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f
x
Critical Molar Volume using Modified Berthelot Equation given Reduced and Actual Parameters
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f
x
Actual Temperature of Real Gas given Clausius Parameter a, Reduced and Actual Parameters
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f
x
Actual Temperature of Real Gas given Clausius Parameter b, Reduced and Actual Parameters
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f
x
Actual Temperature of Real Gas given Clausius Parameter c, Reduced and Actual Parameters
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f
x
Actual Volume of Real Gas using Clausius Parameter b, Reduced and Actual Parameters
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f
x
Clausius Parameter given Pressure, Temperature and Molar Volume of Real Gas
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f
x
Clausius Parameter given Reduced and Actual Parameters
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f
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Clausius Parameter b given Pressure, Temperature and Molar Volume of Real Gas
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f
x
Clausius Parameter b given Reduced and Actual Parameters
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f
x
Clausius Parameter c given Reduced and Actual Parameters
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f
x
Critical Pressure of Real Gas using Clausius Equation given Actual and Critical Parameters
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f
x
Critical Pressure of Real Gas using Actual and Reduced Pressure
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f
x
Critical Temperature of Real Gas using Clausius Equation given Actual and Critical Parameters
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f
x
Critical Temperature of Real Gas using Clausius Equation given Reduced and Actual Parameters
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f
x
Critical Temperature given Clausius Parameter a, Reduced and Actual Parameters
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f
x
Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters
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f
x
Critical Temperature given Clausius Parameter c, Reduced and Actual Parameters
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f
x
Reduced Pressure of Real Gas using Clausius Equation given Reduced and Actual Parameters
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f
x
Reduced Pressure of Real Gas given Clausius Parameter and Actual Parameters
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f
x
Reduced Pressure of Real Gas given Clausius Parameter a, Reduced and Actual Parameters
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f
x
Reduced Pressure of Real Gas given Clausius Parameter c and Actual Parameters
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f
x
Reduced Volume of Real Gas given Clausius Parameter b, Reduced and Actual Parameters
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f
x
Reduced Molar Volume of Real Gas using Clausius Equation given Critical and Actual Parameters
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f
x
Reduced Molar Volume of Real Gas using Clausius Equation given Reduced and Actual Parameters
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f
x
Reduced Temperature of Real Gas given Clausius Parameter a, Reduced and Actual Parameters
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f
x
Reduced Temperature of Real Gas given Clausius Parameter c given Reduced and Actual Parameters
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f
x
Reduced Temperature of Real Gas using Clausius Equation given Critical and Actual Parameters
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f
x
Reduced Temperature of Real Gas using Clausius Equation given Reduced and Actual Parameters
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f
x
Reduced Temperature of Real Gas using Clausius Parameter b given Reduced and Actual Parameters
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f
x
Temperature of Real Gas using Clausius Equation
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f
x
Critical Volume given Clausius Parameter b, Reduced and Actual Parameters
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f
x
Critical Molar Volume of Real Gas using Clausius Equation given Reduced and Actual Parameters
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f
x
Critical Molar Volume using Clausius Equation given Actual and Critical Parameters
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f
x
Molar Volume of Real Gas using Clausius Equation
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f
x
Temperature of Real Gas using Peng Robinson Equation
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f
x
Peng Robinson Alpha-Function using Peng Robinson Equation
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f
x
Actual Temperature given Peng Robinson Parameter a, and other Actual and Reduced Parameters
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f
x
Actual Temperature given Peng Robinson Parameter b, other Actual and Reduced Parameters
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f
x
Reduced Temperature given Peng Robinson Parameter a, and other Actual and Reduced Parameters
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f
x
Reduced Temperature given Peng Robinson Parameter b, other Actual and Reduced Parameters
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f
x
Reduced Temperature using Peng Robinson Equation given Critical and Actual Parameters
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f
x
Critical Temperature given Peng Robinson Parameter a, and other Actual and Reduced Parameters
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f
x
Critical Temperature given Peng Robinson Parameter b and other Actual and Reduced Parameters
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f
x
Critical Temperature using Peng Robinson Equation given Reduced and Actual Parameters
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f
x
Peng Robinson parameter a, of Real Gas given Reduced and Actual Parameters
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f
x
Peng Robinson Parameter a, using Peng Robinson Equation
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f
x
Peng Robinson Parameter b of Real Gas given Reduced and Actual Parameters
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f
x
Reduced Pressure given Peng Robinson Parameter a, and other Actual and Critical Parameters
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f
x
Reduced Pressure given Peng Robinson Parameter a, and other Actual and Reduced Parameters
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f
x
Reduced Pressure given Peng Robinson Parameter b, other Actual and Critical Parameters
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f
x
Reduced Pressure given Peng Robinson Parameter b, other Actual and Reduced Parameters
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f
x
STP
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List of variables in Kinetic Theory of Gases formulas
f
x
Temperature
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f
x
Molar Volume
Go
f
x
Redlich–Kwong parameter b
Go
f
x
Redlich–Kwong Parameter a
Go
f
x
Reduced Pressure
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f
x
Critical Temperature
Go
f
x
Critical Pressure
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f
x
Reduced Temperature
Go
f
x
Reduced Molar Volume
Go
f
x
Berthelot Parameter b
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f
x
Berthelot Parameter a
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f
x
Critical Molar Volume
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f
x
Temperature of Real Gas
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f
x
Clausius Parameter a
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f
x
Critical Temperature For Clausius Model
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f
x
Critical Volume
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f
x
Clausius Parameter b for Real Gas
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f
x
Critical Pressure of Real Gas
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f
x
Clausius Parameter c
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f
x
Reduced Molar Volume for Real Gas
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f
x
Peng–Robinson Parameter b
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f
x
Peng–Robinson Parameter a
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f
x
α-function
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FAQ
What is the Pressure?
Pressure is the force applied perpendicular to the surface of an object per unit area over which that force is distributed. Pressure is usually measured using the Pascal for Pressure. Note that the value of Pressure is always negative.
Can the Pressure be negative?
Yes, the Pressure, measured in Pressure can be negative.
What unit is used to measure Pressure?
Pressure is usually measured using the Pascal[Pa] for Pressure. Kilopascal[Pa], Bar[Pa], Pound Per Square Inch[Pa] are the few other units in which Pressure can be measured.
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