Temperature of Gas using Kinetic Energy per Mole Solution

STEP 0: Pre-Calculation Summary
Formula Used
Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant
Tg = 2/3*Etrans/R
This formula uses 3 Variables
Variables Used
Temperature of Gas - (Measured in Kelvin) - The temperature of Gas is the measure of hotness or coldness of a gas.
Kinetic Energy per Mole - (Measured in Joule Per Mole) - Kinetic energy per mole is the energy possessed by the mole due to its motion.
Specific Gas Constant - (Measured in Joule per Kilogram per K) - The Specific Gas Constant of a gas or a mixture of gases is given by the molar gas constant divided by the molar mass of the gas or mixture.
STEP 1: Convert Input(s) to Base Unit
Kinetic Energy per Mole: 24 Joule Per Mole --> 24 Joule Per Mole No Conversion Required
Specific Gas Constant: 0.055 Joule per Kilogram per K --> 0.055 Joule per Kilogram per K No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Tg = 2/3*Etrans/R --> 2/3*24/0.055
Evaluating ... ...
Tg = 290.909090909091
STEP 3: Convert Result to Output's Unit
290.909090909091 Kelvin --> No Conversion Required
FINAL ANSWER
290.909090909091 290.9091 Kelvin <-- Temperature of Gas
(Calculation completed in 00.004 seconds)

Credits

Created by Sanjay Krishna
Amrita School of Engineering (ASE), Vallikavu
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Verified by Maiarutselvan V
PSG College of Technology (PSGCT), Coimbatore
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15 Elements of Kinetic Theory Calculators

Mean Free Path of Single-Species Gas
Go Mean Free Path of Molecule = 1/(sqrt(2)*Number Density*pi*Distance between Two Bodies^2)
Mean Free Path using Number Density
Go Mean Free Path of Molecule = 1/(Number Density*pi*Distance between Two Bodies^2)
Number Density
Go Number Density = Pressure of Gas/([BoltZ]*Temperature of Gas)
Pressure of Gas using Number Density
Go Pressure of Gas = Number Density*[BoltZ]*Temperature of Gas
Molar Volume using Kinetic Energy per Mole
Go Molar Volume using Kinetic Energy = 2/3*Kinetic Energy per Mole/Pressure
Kinetic Energy per Mole using Molar Volume
Go Kinetic Energy per Mole = 3/2*Pressure*Molar Volume using Kinetic Energy
Pressure using Molar Volume
Go Pressure = 2/3*Kinetic Energy per Mole/Molar Volume using Kinetic Energy
Specific Gas Constant using Kinetic Energy per Mole
Go Specific Gas Constant = 2/3*Kinetic Energy per Mole/Temperature of Gas
Kinetic Energy per Mole using Temperature of Gas
Go Kinetic Energy per Mole = 3/2*Specific Gas Constant*Temperature of Gas
Temperature of Gas using Kinetic Energy per Mole
Go Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant
Temperature of Gas using Emissivity per Unit Mole
Go Temperature of Gas = 2/3*Emissivity per unit Mole/[BoltZ]
Emissivity per Unit Mole
Go Emissivity per unit Mole = 3/2*[BoltZ]*Temperature of Gas
Volume of Gas
Go Volume of Gas = 2/3*Total Kinetic Energy per Mole/Pressure
Pressure using Kinetic Energy per Mole
Go Pressure = 2/3*Kinetic Energy per Mole/Volume of Gas
Kinetic Energy per Mole
Go Kinetic Energy per Mole = 3/2*Pressure*Volume of Gas

Temperature of Gas using Kinetic Energy per Mole Formula

Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant
Tg = 2/3*Etrans/R

What is gas constant?

The pressure is defined as the physical force exerted on an object. The force applied is perpendicular to the surface of objects per unit area.

How to Calculate Temperature of Gas using Kinetic Energy per Mole?

Temperature of Gas using Kinetic Energy per Mole calculator uses Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant to calculate the Temperature of Gas, Temperature of Gas using Kinetic Energy per Mole is defined as the function of kinetic energy per mole and specific gas constant. Temperature of Gas is denoted by Tg symbol.

How to calculate Temperature of Gas using Kinetic Energy per Mole using this online calculator? To use this online calculator for Temperature of Gas using Kinetic Energy per Mole, enter Kinetic Energy per Mole (Etrans) & Specific Gas Constant (R) and hit the calculate button. Here is how the Temperature of Gas using Kinetic Energy per Mole calculation can be explained with given input values -> 290.9091 = 2/3*24/0.055.

FAQ

What is Temperature of Gas using Kinetic Energy per Mole?
Temperature of Gas using Kinetic Energy per Mole is defined as the function of kinetic energy per mole and specific gas constant and is represented as Tg = 2/3*Etrans/R or Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant. Kinetic energy per mole is the energy possessed by the mole due to its motion & The Specific Gas Constant of a gas or a mixture of gases is given by the molar gas constant divided by the molar mass of the gas or mixture.
How to calculate Temperature of Gas using Kinetic Energy per Mole?
Temperature of Gas using Kinetic Energy per Mole is defined as the function of kinetic energy per mole and specific gas constant is calculated using Temperature of Gas = 2/3*Kinetic Energy per Mole/Specific Gas Constant. To calculate Temperature of Gas using Kinetic Energy per Mole, you need Kinetic Energy per Mole (Etrans) & Specific Gas Constant (R). With our tool, you need to enter the respective value for Kinetic Energy per Mole & Specific Gas Constant 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 Temperature of Gas?
In this formula, Temperature of Gas uses Kinetic Energy per Mole & Specific Gas Constant. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Temperature of Gas = 2/3*Emissivity per unit Mole/[BoltZ]
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