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Chemistry

The molecular theory states that the pressure exerted by a gas in closed vessel results from the gas molecules striking against the walls of the vessel. How will the pressure change if :

(a) the temperature is doubled keeping the volume constant

(b) the volume is made half of its original value keeping the temperature constant?

Gas Laws

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Answer

(a) This can be explained on the basis of Gas equation

P1V1T1\dfrac{\text{P}1\text{V}1}{\text{T}1} = P2V2T2\dfrac{\text{P}2\text{V}2}{\text{T}2}

When volume is constant we get,

P1T1\dfrac{\text{P}1}{\text{T}1} = P2T2\dfrac{\text{P}2}{\text{T}2}

Hence, when temperature is doubled, pressure is doubled, as pressure and temperature are directly proportional.

(b) This can be explained on the basis of Boyle's law

P1V1 = P2V2

Hence, when the volume is made half of its original value keeping the temperature constant, pressure becomes double, as pressure and volume are inversely proportional.

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