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Reduced Temperature is the ratio of the actual temperature of the fluid to its critical temperature. It is dimensionless. Check FAQs
Tr=TTc
Tr - Reduced Temperature?T - Temperature?Tc - Critical Temperature?

Reduced Temperature of Real Gas using Actual and Critical Temperature Example

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Here is how the Reduced Temperature of Real Gas using Actual and Critical Temperature equation looks like with Values.

Here is how the Reduced Temperature of Real Gas using Actual and Critical Temperature equation looks like with Units.

Here is how the Reduced Temperature of Real Gas using Actual and Critical Temperature equation looks like.

0.1314Edit=85Edit647Edit
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Reduced Temperature of Real Gas using Actual and Critical Temperature Solution

Follow our step by step solution on how to calculate Reduced Temperature of Real Gas using Actual and Critical Temperature?

FIRST Step Consider the formula
Tr=TTc
Next Step Substitute values of Variables
Tr=85K647K
Next Step Prepare to Evaluate
Tr=85647
Next Step Evaluate
Tr=0.131375579598145
LAST Step Rounding Answer
Tr=0.1314

Reduced Temperature of Real Gas using Actual and Critical Temperature Formula Elements

Variables
Reduced Temperature
Reduced Temperature is the ratio of the actual temperature of the fluid to its critical temperature. It is dimensionless.
Symbol: Tr
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Temperature
Temperature is the degree or intensity of heat present in a substance or object.
Symbol: T
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
Critical Temperature
Critical Temperature is the highest temperature at which the substance can exist as a liquid. At this phase boundaries vanish, and the substance can exist both as a liquid and vapor.
Symbol: Tc
Measurement: TemperatureUnit: K
Note: Value should be greater than 0.

Other Formulas to find Reduced Temperature

​Go Reduced Temperature of Real Gas given 'a' using Redlich Kwong Equation
Tr=T(aPc0.42748([R]2))25
​Go Reduced Temperature of Real Gas given 'b' using Redlich Kwong Equation
Tr=TbPc0.08664[R]
​Go Reduced Temperature of Real Gas using Reduced Redlich Kwong Equation
Tr=((Pr+(10.26Vm,r(Vm,r+0.26)))(Vm,r-0.263))23

Other formulas in Reduced Temperature of Real Gas category

​Go Reduced Temperature using Redlich Kwong Equation given of 'a' and 'b'
TPRP=Tg(323)(((213)-1)43)((ab[R])23)

How to Evaluate Reduced Temperature of Real Gas using Actual and Critical Temperature?

Reduced Temperature of Real Gas using Actual and Critical Temperature evaluator uses Reduced Temperature = Temperature/Critical Temperature to evaluate the Reduced Temperature, The Reduced Temperature of Real Gas using Actual and Critical Temperature is the ratio of the actual temperature of the fluid to its critical temperature. It is dimensionless. Reduced Temperature is denoted by Tr symbol.

How to evaluate Reduced Temperature of Real Gas using Actual and Critical Temperature using this online evaluator? To use this online evaluator for Reduced Temperature of Real Gas using Actual and Critical Temperature, enter Temperature (T) & Critical Temperature (Tc) and hit the calculate button.

FAQs on Reduced Temperature of Real Gas using Actual and Critical Temperature

What is the formula to find Reduced Temperature of Real Gas using Actual and Critical Temperature?
The formula of Reduced Temperature of Real Gas using Actual and Critical Temperature is expressed as Reduced Temperature = Temperature/Critical Temperature. Here is an example- 0.131376 = 85/647.
How to calculate Reduced Temperature of Real Gas using Actual and Critical Temperature?
With Temperature (T) & Critical Temperature (Tc) we can find Reduced Temperature of Real Gas using Actual and Critical Temperature using the formula - Reduced Temperature = Temperature/Critical Temperature.
What are the other ways to Calculate Reduced Temperature?
Here are the different ways to Calculate Reduced Temperature-
  • Reduced Temperature=Temperature/(((Redlich–Kwong Parameter a*Critical Pressure)/(0.42748*([R]^2)))^(2/5))OpenImg
  • Reduced Temperature=Temperature/((Redlich–Kwong parameter b*Critical Pressure)/(0.08664*[R]))OpenImg
  • Reduced Temperature=((Reduced Pressure+(1/(0.26*Reduced Molar Volume*(Reduced Molar Volume+0.26))))*((Reduced Molar Volume-0.26)/3))^(2/3)OpenImg
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