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Assuming the expression for the pressure exerted by the gas on the walls of the container, it can be shown that the pressure is 

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Important Questions on Kinetic Theory of Gases and Radiation

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The average momentum of a molecule in a sample of an ideal gas depends on
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Gases exert pressure on the walls of the container because the gas molecules 

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On colliding in a closed container, the gas molecules

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The pressure exerted by a gas is proportional to

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An ideal gas is enclosed in a cylinder at pressure of 2 atm and temperature, 300 K. Then mean time between two successive collisions is 6×10-8 s. If the pressure is doubled and temperature is increased to 500 K, the mean time between two successive collisions will be close to
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A 25×10-3 m3 volume cylinder is filled with 1 mol of O2 gas at room temperature (300 K) . The molecular diameter of O2 , and its root mean square speed, are found to be 0.3 nm and 200 m s-1 , respectively. What is the average collision rate (per second) for an O2 molecule?
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In the nuclear fusion reaction  H12+H13He24+n. It is given that the repulsive potential energy between the two nuclei is ~7.7×10-14 J, the temperature at which the gases must be heated to initiate the reaction is nearly [Boltzmann's constant k=1.38×10-23 J K-1
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According to kinetic theory of gas, the average kinetic energy of a gas molecule can be determined by knowing