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The temperature of argon, kept in a vess...

The temperature of argon, kept in a vessel, is raised by `1^(@)C` at a constant volume. The total heat supplied to the gas is a combination of translational and rotational energies. Their respective shares are

A

60%,40%

B

100%,0%

C

0%,100%

D

40%,60%

Text Solution

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The correct Answer is:
A
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NIKITA PUBLICATION-KINETIC THEORY OF GASES & RADIATION -MCQs (Degrees of freedom and law of equipartition of energy & Application of specific hest capacities of gases)
  1. For a gas the differce between the two specific heat is 4150 J//kg K. ...

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  2. The temperature of argon, kept in a vessel, is raised by 1^(@)C at a c...

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  3. The temperature of argon, kept in a vessel, is raised by 1^(@)C at a c...

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  4. The temperature of ozone in a vessel, is raised by 1^(@)C at constant ...

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  5. Molar specific heat of a monatomic gas at constant pressure is

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  6. One mole of an ideal gas requires 207 J of heat to raise the temperatu...

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  7. If the difference the two specific heats of triatomic gas is 500 J/ kg...

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  8. If the difference between the two specific heats of triatomic gas is 5...

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  9. Molar specific heat of oxygen at constant pressure is 7.2 cal/mol .^(@...

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  10. The temperature of 5 mol of gas which was held at constant volume was ...

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  11. 5 moles of gas were heated from 100^(@)C to 120^(@)C at constant volum...

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  12. The specific heat of a gas constant volume is 20 J/mol K. when two mol...

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  13. The ratio of specific heats of a gas is 1.4. if the value of C(V) is 2...

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  14. The relation between principal specific heats of gases at constant pre...

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  15. For nitrogen C(p)-C(V)=x and for argon C(P)-C(V)=Y.The relation betwee...

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  16. The Mayer's relation is

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  17. It temperature of 5 moles of a gas is raised through 100^(@)C at const...

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  18. When gas in a vessel expands, it internal energy decreases. The proces...

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  19. Two spheres of the same metal have radii in theratio 1 : 2 Their heat ...

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  20. The thermal capacity of 10 gram of a substance is 8 calories. Then the...

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