Critical Volume of Real Gas given Clausius Parameter c Solution

STEP 0: Pre-Calculation Summary
Formula Used
Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c
Vc = ((3*[R]*Tc)/(8*P'c))-c
This formula uses 1 Constants, 4 Variables
Constants Used
[R] - Universal gas constant Value Taken As 8.31446261815324
Variables Used
Critical Volume - (Measured in Cubic Meter) - The Critical Volume is the volume occupied by the unit mass of gas at critical temperature and pressure.
Critical Temperature - (Measured in Kelvin) - 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.
Critical Pressure of Real Gas - (Measured in Pascal) - Critical Pressure of Real Gas is the minimum pressure required to liquify a substance at the critical temperature.
Clausius Parameter c - Clausius parameter c is an empirical parameter characteristic to equation obtained from Clausius model of real gas.
STEP 1: Convert Input(s) to Base Unit
Critical Temperature: 647 Kelvin --> 647 Kelvin No Conversion Required
Critical Pressure of Real Gas: 4600000 Pascal --> 4600000 Pascal No Conversion Required
Clausius Parameter c: 0.0002 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vc = ((3*[R]*Tc)/(8*P'c))-c --> ((3*[R]*647)/(8*4600000))-0.0002
Evaluating ... ...
Vc = 0.000238542715810746
STEP 3: Convert Result to Output's Unit
0.000238542715810746 Cubic Meter -->0.238542715810746 Liter (Check conversion ​here)
FINAL ANSWER
0.238542715810746 0.238543 Liter <-- Critical Volume
(Calculation completed in 00.020 seconds)

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Critical Volume of Real Gas Calculators

Critical Volume given Clausius Parameter c, Reduced and Actual Parameters
​ LaTeX ​ Go Critical Volume = ((3*[R]*(Temperature of Real Gas/Reduced Temperature))/(8*(Pressure of Gas/Reduced Pressure)))-Clausius Parameter c
Critical Volume given Clausius Parameter b, Reduced and Actual Parameters
​ LaTeX ​ Go Critical Volume = Clausius Parameter b for Real Gas+(([R]*(Temperature of Gas/Reduced Temperature))/(4*(Pressure/Reduced Pressure)))
Critical Volume of Real Gas given Clausius Parameter b
​ LaTeX ​ Go Critical Volume = Clausius Parameter b for Real Gas+(([R]*Critical Temperature For Clausius Model)/(4*Critical Pressure of Real Gas))
Critical Volume of Real Gas given Clausius Parameter c
​ LaTeX ​ Go Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c

Critical Volume of Real Gas given Clausius Parameter c Formula

​LaTeX ​Go
Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c
Vc = ((3*[R]*Tc)/(8*P'c))-c

What are Real Gases?

Real gases are non ideal gases whose molecules occupy space and have interactions; consequently, they do not adhere to the ideal gas law. To understand the behavior of real gases, the following must be taken into account:
- compressibility effects;
- variable specific heat capacity;
- van der Waals forces;
- non-equilibrium thermodynamic effects;
- issues with molecular dissociation and elementary reactions with variable composition.

How to Calculate Critical Volume of Real Gas given Clausius Parameter c?

Critical Volume of Real Gas given Clausius Parameter c calculator uses Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c to calculate the Critical Volume, The Critical Volume of real gas given Clausius parameter c formula is defined as the volume occupied by 1 mole of gas at critical temperature and pressure. Critical Volume is denoted by Vc symbol.

How to calculate Critical Volume of Real Gas given Clausius Parameter c using this online calculator? To use this online calculator for Critical Volume of Real Gas given Clausius Parameter c, enter Critical Temperature (Tc), Critical Pressure of Real Gas (P'c) & Clausius Parameter c (c) and hit the calculate button. Here is how the Critical Volume of Real Gas given Clausius Parameter c calculation can be explained with given input values -> 238.5427 = ((3*[R]*647)/(8*4600000))-0.0002.

FAQ

What is Critical Volume of Real Gas given Clausius Parameter c?
The Critical Volume of real gas given Clausius parameter c formula is defined as the volume occupied by 1 mole of gas at critical temperature and pressure and is represented as Vc = ((3*[R]*Tc)/(8*P'c))-c or Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c. 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, Critical Pressure of Real Gas is the minimum pressure required to liquify a substance at the critical temperature & Clausius parameter c is an empirical parameter characteristic to equation obtained from Clausius model of real gas.
How to calculate Critical Volume of Real Gas given Clausius Parameter c?
The Critical Volume of real gas given Clausius parameter c formula is defined as the volume occupied by 1 mole of gas at critical temperature and pressure is calculated using Critical Volume = ((3*[R]*Critical Temperature)/(8*Critical Pressure of Real Gas))-Clausius Parameter c. To calculate Critical Volume of Real Gas given Clausius Parameter c, you need Critical Temperature (Tc), Critical Pressure of Real Gas (P'c) & Clausius Parameter c (c). With our tool, you need to enter the respective value for Critical Temperature, Critical Pressure of Real Gas & Clausius Parameter c and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Critical Volume?
In this formula, Critical Volume uses Critical Temperature, Critical Pressure of Real Gas & Clausius Parameter c. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Critical Volume = Clausius Parameter b for Real Gas+(([R]*(Temperature of Gas/Reduced Temperature))/(4*(Pressure/Reduced Pressure)))
  • Critical Volume = ((3*[R]*(Temperature of Real Gas/Reduced Temperature))/(8*(Pressure of Gas/Reduced Pressure)))-Clausius Parameter c
  • Critical Volume = Clausius Parameter b for Real Gas+(([R]*Critical Temperature For Clausius Model)/(4*Critical Pressure of Real Gas))
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