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Kinetic Energy is defined as the work needed to accelerate a body of a given mass from rest to its stated velocity. Check FAQs
KE=(32)NT[R]Tg
KE - Kinetic Energy?NT - Total Number of Moles?Tg - Temperature of Gas?[R] - Universal gas constant?

Kinetic Energy given n Mole of Gas Example

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With units
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Here is how the Kinetic Energy given n Mole of Gas equation looks like with Values.

Here is how the Kinetic Energy given n Mole of Gas equation looks like with Units.

Here is how the Kinetic Energy given n Mole of Gas equation looks like.

2993.2065Edit=(32)8Edit8.314530Edit
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Kinetic Energy given n Mole of Gas Solution

Follow our step by step solution on how to calculate Kinetic Energy given n Mole of Gas?

FIRST Step Consider the formula
KE=(32)NT[R]Tg
Next Step Substitute values of Variables
KE=(32)8mol[R]30K
Next Step Substitute values of Constants
KE=(32)8mol8.314530K
Next Step Prepare to Evaluate
KE=(32)88.314530
Next Step Evaluate
KE=2993.20654253517J
LAST Step Rounding Answer
KE=2993.2065J

Kinetic Energy given n Mole of Gas Formula Elements

Variables
Constants
Kinetic Energy
Kinetic Energy is defined as the work needed to accelerate a body of a given mass from rest to its stated velocity.
Symbol: KE
Measurement: EnergyUnit: J
Note: Value can be positive or negative.
Total Number of Moles
Total Number of Moles is the total number of moles present in the system.
Symbol: NT
Measurement: Amount of SubstanceUnit: mol
Note: Value should be greater than 0.
Temperature of Gas
The temperature of Gas is the measure of hotness or coldness of a gas.
Symbol: Tg
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
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 Kinetic Energy

​Go Kinetic Energy given Pressure and Volume of Gas
KE=(32)PgasV
​Go Kinetic Energy of One Gas Molecule given Boltzmann Constant
KE=(32)[BoltZ]Tg

Other formulas in Kinetic Energy of Gas category

​Go Kinetic Energy of Gas 1 if Mixture of Gas is Present
KE1=KE2(n1n2)(T1T2)
​Go Kinetic Energy of Gas 2 if Mixture of Two Gas is Present
KE2=KE1(n2n1)(T2T1)

How to Evaluate Kinetic Energy given n Mole of Gas?

Kinetic Energy given n Mole of Gas evaluator uses Kinetic Energy = (3/2)*Total Number of Moles*[R]*Temperature of Gas to evaluate the Kinetic Energy, The Kinetic energy given n mole of gas formula is defined as the product number of moles of gas and gas constant at the particular temperature. Kinetic Energy is denoted by KE symbol.

How to evaluate Kinetic Energy given n Mole of Gas using this online evaluator? To use this online evaluator for Kinetic Energy given n Mole of Gas, enter Total Number of Moles (NT) & Temperature of Gas (Tg) and hit the calculate button.

FAQs on Kinetic Energy given n Mole of Gas

What is the formula to find Kinetic Energy given n Mole of Gas?
The formula of Kinetic Energy given n Mole of Gas is expressed as Kinetic Energy = (3/2)*Total Number of Moles*[R]*Temperature of Gas. Here is an example- 2993.207 = (3/2)*8*[R]*30.
How to calculate Kinetic Energy given n Mole of Gas?
With Total Number of Moles (NT) & Temperature of Gas (Tg) we can find Kinetic Energy given n Mole of Gas using the formula - Kinetic Energy = (3/2)*Total Number of Moles*[R]*Temperature of Gas. This formula also uses Universal gas constant .
What are the other ways to Calculate Kinetic Energy?
Here are the different ways to Calculate Kinetic Energy-
  • Kinetic Energy=(3/2)*Pressure of Gas*Volume of GasOpenImg
  • Kinetic Energy=(3/2)*[BoltZ]*Temperature of GasOpenImg
Can the Kinetic Energy given n Mole of Gas be negative?
Yes, the Kinetic Energy given n Mole of Gas, measured in Energy can be negative.
Which unit is used to measure Kinetic Energy given n Mole of Gas?
Kinetic Energy given n Mole of Gas is usually measured using the Joule[J] for Energy. Kilojoule[J], Gigajoule[J], Megajoule[J] are the few other units in which Kinetic Energy given n Mole of Gas can be measured.
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