1) List the known and unknown quantities.
Sample: O2
Amount of substance: 0.650 mol O2.
Volume: 1.00 L.
Pressure: 20.00 atm.
Ideal gas constant: 0.082057 L * atm * K^(-1) * mol^(-1)
Temperature: unknown.
2) Set the equation.
Ideal gas law.

3) Plug in the known quantities and solve for T.



4) Convert K to ºC.



The temperature of the gas under these conditions is 101.81ºC.
.