(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?
(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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
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?

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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