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Assuming the expression for pressure, on...

Assuming the expression for pressure, on the basis of kinetic theory of gases, prove that, `PV=2/3xxtotal `K.E. of a gas molecules.

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MBD PUBLICATION-KINETICS THEORY OF GASES-QUESTION BANK
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  2. The mean free path of the molecules of a gas in a chamber at 30^@ is 2...

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  3. Assuming the expression for pressure, on the basis of kinetic theory o...

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  4. The velocities of five molecules are 2m/s, 3m/s, 4m/s, 5m/s and 6m/s r...

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  5. Calculate r.m.s. speed of nitrogen at 0^@C ( Density of nitrogen = 1.2...

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  6. At what temperature will nitrogen molecules have the same r.m.s speed...

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  7. At what temperature will the r.m.s. velocity of a gas be double its va...

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  8. For hydrogen gas CP = 3400 cal/kg K,CV=2400 cal/kg K and R = 8300 J/k ...

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  9. A molecule of perfect gas travels, between two successive collisions a...

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  10. According to kinetic theory, the collisions between molecules of a gas...

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  11. According to kinetic theory of gases the gas consists of large no of s...

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  12. All the particles of gas are

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  13. The distance between two successive collisions is called

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  14. Work done by a gas depends upon:

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  15. If C1, C2, C3 are the velocities of 3 molecules then their mean squar...

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  16. Root mean square velocity of gas molecules is independent of

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  17. Four molecules of a gas have velocity 2km/s, 4km/s, 6 km/s and 8km/sec...

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  18. The velocities of three molecules are 2m/s, 3m/s and 4m/s respectively...

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  19. If the velocities of 3 molecules are 2m/s, 3m/s and 7m/s respectively ...

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  20. The r.m.s. velocity of molecules 2m/s, 4m/s and 6m/s sec is

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