10.2 Calculate the translational, rotational, and vibrational contributions to U, S, and CV for a mole of ICI molecules at 200 K and 900 K. The vibrational energy of ICI is 384 cm-1 and the rotational constant of ICI is 2.27 x 10-24 J. You may consider the gas to behave ideally and have a pressure of exactly 1 bar.

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10.2 Calculate the translational, rotational, and vibrational contributions to U,S, and CV for a mole of ICI
molecules at 200 K and 900 K. The vibrational energy of ICI is 384 cm-1 and the rotational constant of ICI
is 2.27 x 10-24 J. You may consider the gas to behave ideally and have a pressure of exactly 1 bar.
Transcribed Image Text:10.2 Calculate the translational, rotational, and vibrational contributions to U,S, and CV for a mole of ICI molecules at 200 K and 900 K. The vibrational energy of ICI is 384 cm-1 and the rotational constant of ICI is 2.27 x 10-24 J. You may consider the gas to behave ideally and have a pressure of exactly 1 bar.
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