Number of Moles of Gas by Ideal Gas Law Solution

STEP 0: Pre-Calculation Summary
Formula Used
Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas)
Nmoles = (Pgas*V)/([R]*Tgas)
This formula uses 1 Constants, 4 Variables
Constants Used
[R] - Universal gas constant Value Taken As 8.31446261815324
Variables Used
Number of Moles - Number of Moles is the amount of gas present in moles. 1 mole of gas weighs as much as its molecular weight.
Pressure of Gas - (Measured in Pascal) - The pressure of Gas is the force that the gas exerts on the walls of its container.
Volume of Gas - (Measured in Cubic Meter) - The volume of Gas is the amount of space that it occupies.
Temperature of Gas - (Measured in Kelvin) - The temperature of Gas is the measure of hotness or coldness of a gas.
STEP 1: Convert Input(s) to Base Unit
Pressure of Gas: 101325 Pascal --> 101325 Pascal No Conversion Required
Volume of Gas: 22.4 Liter --> 0.0224 Cubic Meter (Check conversion ​here)
Temperature of Gas: 273 Kelvin --> 273 Kelvin No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Nmoles = (Pgas*V)/([R]*Tgas) --> (101325*0.0224)/([R]*273)
Evaluating ... ...
Nmoles = 0.999925856385987
STEP 3: Convert Result to Output's Unit
0.999925856385987 --> No Conversion Required
FINAL ANSWER
0.999925856385987 0.999926 <-- Number of Moles
(Calculation completed in 00.004 seconds)

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K J Somaiya College of science (K J Somaiya), Mumbai
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25 Ideal Gas Law Calculators

Initial Temperature of Gas by Ideal Gas law
​ Go Initial Temperature of Gas for Ideal Gas = (Initial Pressure of Gas*Initial Volume of Gas)/((Final Pressure of Gas*Final Volume of Gas for Ideal Gas)/Final Temperature of Gas for Ideal Gas)
Final Temperature of Gas by Ideal Gas Law
​ Go Final Temperature of Gas for Ideal Gas = (Final Pressure of Gas*Final Volume of Gas for Ideal Gas)/((Initial Pressure of Gas*Initial Volume of Gas)/Initial Temperature of Gas for Ideal Gas)
Initial Pressure of Gas by Ideal Gas Law
​ Go Initial Pressure of Gas = ((Final Pressure of Gas*Final Volume of Gas for Ideal Gas)/Final Temperature of Gas for Ideal Gas)*(Initial Temperature of Gas for Ideal Gas/Initial Volume of Gas)
Initial Volume of Gas by Ideal Gas Law
​ Go Initial Volume of Gas = ((Final Pressure of Gas*Final Volume of Gas for Ideal Gas)/Final Temperature of Gas for Ideal Gas)*(Initial Temperature of Gas for Ideal Gas/Initial Pressure of Gas)
Final Pressure of Gas by Ideal Gas Law
​ Go Final Pressure of Gas = ((Initial Pressure of Gas*Initial Volume of Gas)/Initial Temperature of Gas for Ideal Gas)*(Final Temperature of Gas for Ideal Gas/Final Volume of Gas for Ideal Gas)
Final Volume of Gas by Ideal Gas Law
​ Go Final Volume of Gas for Ideal Gas = ((Initial Pressure of Gas*Initial Volume of Gas)/Initial Temperature of Gas for Ideal Gas)*(Final Temperature of Gas for Ideal Gas/Final Pressure of Gas)
Initial Temperature of Gas given Density
​ Go Initial Temperature of Gas for Ideal Gas = (Initial Pressure of Gas/Initial Density of Gas)/(Final Pressure of Gas/(Final Density of Gas*Final Temperature of Gas for Ideal Gas))
Initial Density of Gas by Ideal Gas Law
​ Go Initial Density of Gas = (Initial Pressure of Gas/Initial Temperature of Gas for Ideal Gas)/(Final Pressure of Gas/(Final Density of Gas*Final Temperature of Gas for Ideal Gas))
Final Temperature of Gas given Density
​ Go Final Temperature of Gas for Ideal Gas = (Final Pressure of Gas/Final Density of Gas)/(Initial Pressure of Gas/(Initial Density of Gas*Initial Temperature of Gas for Ideal Gas))
Initial Pressure of Gas given Density
​ Go Initial Pressure of Gas = (Final Pressure of Gas/(Final Density of Gas*Final Temperature of Gas for Ideal Gas))*(Initial Density of Gas*Initial Temperature of Gas for Ideal Gas)
Final Density of Gas by Ideal Gas Law
​ Go Final Density of Gas = (Final Pressure of Gas/Final Temperature of Gas for Ideal Gas)/(Initial Pressure of Gas/(Initial Density of Gas*Initial Temperature of Gas for Ideal Gas))
Final Pressure of gas given Density
​ Go Final Pressure of Gas = (Initial Pressure of Gas/(Initial Density of Gas*Initial Temperature of Gas for Ideal Gas))*(Final Density of Gas*Final Temperature of Gas for Ideal Gas)
Temperature of Gas given Molecular Weight of Gas by Ideal Gas law
​ Go Temperature of Gas = (Pressure of Gas*Volume of Gas)/((Mass of Gas/Molar Mass)*[R])
Pressure of Gas given Molecular Weight of Gas by Ideal Gas law
​ Go Pressure of Gas = ((Mass of Gas/Molar Mass)*[R]*Temperature of Gas)/Volume of Gas
Volume of Gas given Molecular Weight of Gas by Ideal Gas Law
​ Go Volume of Gas = ((Mass of Gas/Molar Mass)*[R]*Temperature of Gas)/Pressure of Gas
Molecular Weight of Gas by Ideal Gas Law
​ Go Molar Mass = (Mass of Gas*[R]*Temperature of Gas)/(Pressure of Gas*Volume of Gas)
Amount of Gas taken by Ideal Gas Law
​ Go Mass of Gas = (Molar Mass*Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas)
Number of Moles of Gas by Ideal Gas Law
​ Go Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas)
Temperature of Gas by Ideal Gas Law
​ Go Temperature of Gas = (Pressure of Gas*Volume of Gas)/(Number of Moles*[R])
Volume of Gas from Ideal Gas Law
​ Go Volume of Gas = (Number of Moles*[R]*Temperature of Gas)/Pressure of Gas
Pressure by Ideal Gas Law
​ Go Pressure of Gas = (Number of Moles*[R]*Temperature of Gas)/Volume of Gas
Temperature of Gas given Density by Ideal Gas Law
​ Go Temperature of Gas = (Pressure of Gas*Molar Mass)/([R]*Density of Gas)
Density of Gas by Ideal Gas law
​ Go Density of Gas = (Pressure of Gas*Molar Mass)/([R]*Temperature of Gas)
Molecular Weight of Gas given Density by Ideal Gas Law
​ Go Molar Mass = (Density of Gas*[R]*Temperature of Gas)/Pressure of Gas
Pressure of Gas given Density by Ideal Gas law
​ Go Pressure of Gas = (Density of Gas*[R]*Temperature of Gas)/Molar Mass

Number of Moles of Gas by Ideal Gas Law Formula

Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas)
Nmoles = (Pgas*V)/([R]*Tgas)

What is Ideal gas law?

The ideal gas law, also called the general gas equation, is the equation of state of a hypothetical ideal gas. It is a good approximation of the behavior of many gases under many conditions, although it has several limitations. Note that this law makes no comment as to whether a gas heats or cools during compression or expansion. An ideal gas may not change temperature, but most gases like air are not ideal and follow the Joule–Thomson effect.

How to Calculate Number of Moles of Gas by Ideal Gas Law?

Number of Moles of Gas by Ideal Gas Law calculator uses Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas) to calculate the Number of Moles, The Number of moles of gas by ideal gas law formula is defined as the ratio of the pressure and volume of the gas to the universal gas constant and temperature of the gas. Number of Moles is denoted by Nmoles symbol.

How to calculate Number of Moles of Gas by Ideal Gas Law using this online calculator? To use this online calculator for Number of Moles of Gas by Ideal Gas Law, enter Pressure of Gas (Pgas), Volume of Gas (V) & Temperature of Gas (Tgas) and hit the calculate button. Here is how the Number of Moles of Gas by Ideal Gas Law calculation can be explained with given input values -> 0.999926 = (101325*0.0224)/([R]*273).

FAQ

What is Number of Moles of Gas by Ideal Gas Law?
The Number of moles of gas by ideal gas law formula is defined as the ratio of the pressure and volume of the gas to the universal gas constant and temperature of the gas and is represented as Nmoles = (Pgas*V)/([R]*Tgas) or Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas). The pressure of Gas is the force that the gas exerts on the walls of its container, The volume of Gas is the amount of space that it occupies & The temperature of Gas is the measure of hotness or coldness of a gas.
How to calculate Number of Moles of Gas by Ideal Gas Law?
The Number of moles of gas by ideal gas law formula is defined as the ratio of the pressure and volume of the gas to the universal gas constant and temperature of the gas is calculated using Number of Moles = (Pressure of Gas*Volume of Gas)/([R]*Temperature of Gas). To calculate Number of Moles of Gas by Ideal Gas Law, you need Pressure of Gas (Pgas), Volume of Gas (V) & Temperature of Gas (Tgas). With our tool, you need to enter the respective value for Pressure of Gas, Volume of Gas & Temperature of Gas and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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