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Select the correct statement...

Select the correct statement

A

the pressure exerted by an enclosed gas depends on the shape of the container

B

The R.M.S. speeds of molecules of different ideal gases are the same at the same temperature

C

the average kinetic energy of the molecules in one mole of all ideal gases at the same temperature is the same

D

the average kinetic energy of 1 gm of all ideal gases at the same temperature is the same

Text Solution

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The correct Answer is:
C
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NIKITA PUBLICATION-KINETIC THEORY OF GASES & RADIATION -MCQs (Presure exerted by the gas molecule and kinetic energy)
  1. In an equilibrium state, pressure exerted by the gas molecules of a pe...

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  2. The root mean square velocity of a gas molecule of mass m at a given t...

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  3. Select the correct statement

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  4. One mole of an ideal monoatomic gas is heated at a constant pressure o...

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  5. Two containers are filled, each with a different gas. Two containers a...

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  6. The volume of a gas at pressure 21xx10^(4)N//m^(2) and temperature 27^...

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  7. When a gas is in thermal equilibrium, its molecules have

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  8. The root mean square velocity of a gas molecule at any temperature T K...

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  9. Temperature of gas is a measure of

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  10. Oxygen and Helium gases are in same container. Which one has greater K...

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  11. The mean transitional kinetic energy of a perfect gas molecule at abso...

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  12. Mean kinetic energy of a perfect gas is proportional to

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  13. The mean kinetic energy of one mole or gas per degree of

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  14. On the basis of kinetic theory of gases, the mean K.E. of 1 mole per d...

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  15. Mean kinetic energy of a perfect gas per gram at the temperature T K i...

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  16. The mean transitional kinetic energy of a perfect gas molecule at abso...

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  17. The density of a gas is 6xx 10^(-2 )kg//m^(3) and the root mean square...

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  18. The temperature of an ideal gas is increased from 27 ^@ C to 927^(@)C....

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  19. Root mean square velocity of gas molecules is 300 m//sec. The r.m.s ve...

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  20. if the density of airr at N.T.P. is 1.25kg//m^(3), then the r.m.s. vel...

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