(b) Find the increase in internal energy if translational, rotational, and vibrational motions are possible. (c) How much of the energy calculated in (a) and (b) is transla- tional kinetic energy?

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(b) Find the increase in internal energy if translational,
rotational, and vibrational motions are possible. (c) How
much of the energy calculated in (a) and (b) is transla-
tional kinetic energy?
Transcribed Image Text:(b) Find the increase in internal energy if translational, rotational, and vibrational motions are possible. (c) How much of the energy calculated in (a) and (b) is transla- tional kinetic energy?
10. A sample of 2.37 moles of an ideal diatomic gas expe-
riences a temperature increase of 65.2 K at constant
volume. (a) Find the increase in internal energy if
only translational and rotational motions are possible.
Transcribed Image Text:10. A sample of 2.37 moles of an ideal diatomic gas expe- riences a temperature increase of 65.2 K at constant volume. (a) Find the increase in internal energy if only translational and rotational motions are possible.
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