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Critical Temperature For Clausius Model is the highest temperature at which the substance can exist as a liquid. At this phase boundaries vanish, the substance can exist both as a liquid and vapor. Check FAQs
T'c=((VrealVr)-b')(4(pPr)[R])
T'c - Critical Temperature For Clausius Model?Vreal - Volume of Real Gas?Vr - Reduced Volume?b' - Clausius Parameter b for Real Gas?p - Pressure?Pr - Reduced Pressure?[R] - Universal gas constant?

Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters Example

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Here is how the Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters equation looks like with Values.

Here is how the Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters equation looks like with Units.

Here is how the Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters equation looks like.

1112.9328Edit=((22Edit9.5Edit)-0.0024Edit)(4(800Edit0.8Edit)8.3145)
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Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters Solution

Follow our step by step solution on how to calculate Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters?

FIRST Step Consider the formula
T'c=((VrealVr)-b')(4(pPr)[R])
Next Step Substitute values of Variables
T'c=((22L9.5L)-0.0024)(4(800Pa0.8)[R])
Next Step Substitute values of Constants
T'c=((22L9.5L)-0.0024)(4(800Pa0.8)8.3145)
Next Step Convert Units
T'c=((0.0220.0095)-0.0024)(4(800Pa0.8)8.3145)
Next Step Prepare to Evaluate
T'c=((0.0220.0095)-0.0024)(4(8000.8)8.3145)
Next Step Evaluate
T'c=1112.93276784161K
LAST Step Rounding Answer
T'c=1112.9328K

Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters Formula Elements

Variables
Constants
Critical Temperature For Clausius Model
Critical Temperature For Clausius Model is the highest temperature at which the substance can exist as a liquid. At this phase boundaries vanish, the substance can exist both as a liquid and vapor.
Symbol: T'c
Measurement: TemperatureUnit: K
Note: Value should be greater than 0.
Volume of Real Gas
Volume of Real Gas is the space occupied by that real gas at standard temperature and pressure.
Symbol: Vreal
Measurement: VolumeUnit: L
Note: Value should be greater than 0.
Reduced Volume
Reduced Volume of a fluid is computed from the ideal gas law as the ratio of its actual volume to critical volume.
Symbol: Vr
Measurement: VolumeUnit: L
Note: Value can be positive or negative.
Clausius Parameter b for Real Gas
Clausius Parameter b for Real Gas is an empirical parameter characteristic to equation obtained from Clausius model of real gas.
Symbol: b'
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Pressure
Pressure is the force applied perpendicular to the surface of an object per unit area over which that force is distributed.
Symbol: p
Measurement: PressureUnit: Pa
Note: Value can be positive or negative.
Reduced Pressure
Reduced Pressure is the ratio of the actual pressure of the fluid to its critical pressure. It is dimensionless.
Symbol: Pr
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 1.
Universal gas constant
Universal gas constant is a fundamental physical constant that appears in the ideal gas law, relating the pressure, volume, and temperature of an ideal gas.
Symbol: [R]
Value: 8.31446261815324

Other Formulas to find Critical Temperature For Clausius Model

​Go Critical Temperature of Real Gas using Clausius Equation given Actual and Critical Parameters
T'c=(p+(a((Vm+c)2)))(Vm-b'[R])Trg
​Go Critical Temperature of Real Gas using Clausius Equation given Reduced and Actual Parameters
T'c=(p+(a((Vm+c)2)))(Vm-b'[R])Tr
​Go Critical Temperature of Real Gas using Clausius Equation given Reduced and Critical Parameters
T'c=((PrP'c)+(a(((V'm,rVm,c)+c)2)))((V'm,rVm,c)-b'[R])Tr
​Go Critical Temperature of Real Gas given Clausius Parameter a
T'c=(a64P'c27([R]2))13

Other formulas in Critical Temperature category

​Go Critical Temperature given Clausius Parameter c, Reduced and Actual Parameters
Tc_RP=(c+(VrealVr))8(pPr)3[R]

How to Evaluate Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters?

Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters evaluator uses Critical Temperature For Clausius Model = ((Volume of Real Gas/Reduced Volume)-Clausius Parameter b for Real Gas)*((4*(Pressure/Reduced Pressure))/[R]) to evaluate the Critical Temperature For Clausius Model, The Critical Temperature given Clausius parameter b, reduced and actual parameters formula is defined as the highest temperature at which the substance can exist as a liquid. Critical Temperature For Clausius Model is denoted by T'c symbol.

How to evaluate Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters using this online evaluator? To use this online evaluator for Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters, enter Volume of Real Gas (Vreal), Reduced Volume (Vr), Clausius Parameter b for Real Gas (b'), Pressure (p) & Reduced Pressure (Pr) and hit the calculate button.

FAQs on Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters

What is the formula to find Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters?
The formula of Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters is expressed as Critical Temperature For Clausius Model = ((Volume of Real Gas/Reduced Volume)-Clausius Parameter b for Real Gas)*((4*(Pressure/Reduced Pressure))/[R]). Here is an example- 1112.933 = ((0.022/0.0095)-0.00243)*((4*(800/0.8))/[R]).
How to calculate Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters?
With Volume of Real Gas (Vreal), Reduced Volume (Vr), Clausius Parameter b for Real Gas (b'), Pressure (p) & Reduced Pressure (Pr) we can find Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters using the formula - Critical Temperature For Clausius Model = ((Volume of Real Gas/Reduced Volume)-Clausius Parameter b for Real Gas)*((4*(Pressure/Reduced Pressure))/[R]). This formula also uses Universal gas constant .
What are the other ways to Calculate Critical Temperature For Clausius Model?
Here are the different ways to Calculate Critical Temperature For Clausius Model-
  • Critical Temperature For Clausius Model=((Pressure+(Clausius Parameter a/(((Molar Volume+Clausius Parameter c)^2))))*((Molar Volume-Clausius Parameter b for Real Gas)/[R]))/Temperature of Real GasOpenImg
  • Critical Temperature For Clausius Model=((Pressure+(Clausius Parameter a/(((Molar Volume+Clausius Parameter c)^2))))*((Molar Volume-Clausius Parameter b for Real Gas)/[R]))/Reduced TemperatureOpenImg
  • Critical Temperature For Clausius Model=(((Reduced Pressure*Critical Pressure of Real Gas)+(Clausius Parameter a/((((Reduced Molar Volume for Real Gas*Critical Molar Volume)+Clausius Parameter c)^2))))*(((Reduced Molar Volume for Real Gas*Critical Molar Volume)-Clausius Parameter b for Real Gas)/[R]))/Reduced TemperatureOpenImg
Can the Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters be negative?
No, the Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters, measured in Temperature cannot be negative.
Which unit is used to measure Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters?
Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters is usually measured using the Kelvin[K] for Temperature. Celsius[K], Fahrenheit[K], Rankine[K] are the few other units in which Critical Temperature given Clausius Parameter b, Reduced and Actual Parameters can be measured.
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