Temperature of Gas 1 given Kinetic Energy of both Gases Formula

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The Temperature of Gas 1 is the measure of the hotness or coldness of a gas. Check FAQs
T1=T2(KE1KE2)(n2n1)
T1 - Temperature of Gas 1?T2 - Temperature of Gas 2?KE1 - Kinetic Energy of Gas 1?KE2 - Kinetic Energy of Gas 2?n2 - Number of Moles of Gas 2?n1 - Number of Moles of Gas 1?

Temperature of Gas 1 given Kinetic Energy of both Gases Example

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Here is how the Temperature of Gas 1 given Kinetic Energy of both Gases equation looks like with Values.

Here is how the Temperature of Gas 1 given Kinetic Energy of both Gases equation looks like with Units.

Here is how the Temperature of Gas 1 given Kinetic Energy of both Gases equation looks like.

140Edit=140Edit(120Edit60Edit)(3Edit6Edit)
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Temperature of Gas 1 given Kinetic Energy of both Gases Solution

Follow our step by step solution on how to calculate Temperature of Gas 1 given Kinetic Energy of both Gases?

FIRST Step Consider the formula
T1=T2(KE1KE2)(n2n1)
Next Step Substitute values of Variables
T1=140K(120J60J)(3mol6mol)
Next Step Prepare to Evaluate
T1=140(12060)(36)
LAST Step Evaluate
T1=140K

Temperature of Gas 1 given Kinetic Energy of both Gases Formula Elements

Variables
Temperature of Gas 1
The Temperature of Gas 1 is the measure of the hotness or coldness of a gas.
Symbol: T1
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
Temperature of Gas 2
The Temperature of Gas 2 is the hotness and coldness of the gas.
Symbol: T2
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
Kinetic Energy of Gas 1
The Kinetic Energy of Gas 1 is proportional to the absolute temperature of the gas, and all gases at the same temperature have the same average kinetic energy.
Symbol: KE1
Measurement: EnergyUnit: J
Note: Value can be positive or negative.
Kinetic Energy of Gas 2
The Kinetic Energy of Gas 2 is proportional to the absolute temperature of the gas, and all gases at the same temperature have the same average kinetic energy.
Symbol: KE2
Measurement: EnergyUnit: J
Note: Value can be positive or negative.
Number of Moles of Gas 2
The Number of Moles of Gas 2 is the total number of moles present in gas 2.
Symbol: n2
Measurement: Amount of SubstanceUnit: mol
Note: Value can be positive or negative.
Number of Moles of Gas 1
The Number of Moles of Gas 1 is the total number of moles of the gas 1.
Symbol: n1
Measurement: Amount of SubstanceUnit: mol
Note: Value can be positive or negative.

Other formulas in Temperature of Gas category

​Go Temperature of Gas 2 given Kinetic Energy of both Gases
T2=T1(n1n2)(KE2KE1)
​Go Temperature of Gas given Average Velocity
Tg=Mmolarπ((Cav)2)8[R]
​Go Temperature of Gas given Average Velocity in 2D
Tg=Mmolar2((Cav)2)π[R]
​Go Temperature of Gas given Kinetic Energy
Tg=(23)(KE[R]Nmoles)

How to Evaluate Temperature of Gas 1 given Kinetic Energy of both Gases?

Temperature of Gas 1 given Kinetic Energy of both Gases evaluator uses Temperature of Gas 1 = Temperature of Gas 2*(Kinetic Energy of Gas 1/Kinetic Energy of Gas 2)*(Number of Moles of Gas 2/Number of Moles of Gas 1) to evaluate the Temperature of Gas 1, The Temperature of Gas 1 given Kinetic Energy of both Gases formula is defined as the product of the ratios of kinetic energy and number of moles with the temperature of the second gas. Temperature of Gas 1 is denoted by T1 symbol.

How to evaluate Temperature of Gas 1 given Kinetic Energy of both Gases using this online evaluator? To use this online evaluator for Temperature of Gas 1 given Kinetic Energy of both Gases, enter Temperature of Gas 2 (T2), Kinetic Energy of Gas 1 (KE1), Kinetic Energy of Gas 2 (KE2), Number of Moles of Gas 2 (n2) & Number of Moles of Gas 1 (n1) and hit the calculate button.

FAQs on Temperature of Gas 1 given Kinetic Energy of both Gases

What is the formula to find Temperature of Gas 1 given Kinetic Energy of both Gases?
The formula of Temperature of Gas 1 given Kinetic Energy of both Gases is expressed as Temperature of Gas 1 = Temperature of Gas 2*(Kinetic Energy of Gas 1/Kinetic Energy of Gas 2)*(Number of Moles of Gas 2/Number of Moles of Gas 1). Here is an example- 140 = 140*(120/60)*(3/6).
How to calculate Temperature of Gas 1 given Kinetic Energy of both Gases?
With Temperature of Gas 2 (T2), Kinetic Energy of Gas 1 (KE1), Kinetic Energy of Gas 2 (KE2), Number of Moles of Gas 2 (n2) & Number of Moles of Gas 1 (n1) we can find Temperature of Gas 1 given Kinetic Energy of both Gases using the formula - Temperature of Gas 1 = Temperature of Gas 2*(Kinetic Energy of Gas 1/Kinetic Energy of Gas 2)*(Number of Moles of Gas 2/Number of Moles of Gas 1).
Can the Temperature of Gas 1 given Kinetic Energy of both Gases be negative?
Yes, the Temperature of Gas 1 given Kinetic Energy of both Gases, measured in Temperature can be negative.
Which unit is used to measure Temperature of Gas 1 given Kinetic Energy of both Gases?
Temperature of Gas 1 given Kinetic Energy of both Gases is usually measured using the Kelvin[K] for Temperature. Celsius[K], Fahrenheit[K], Rankine[K] are the few other units in which Temperature of Gas 1 given Kinetic Energy of both Gases can be measured.
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