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51 SSM As a sample of nitrogen gas (N2) undergoes a temperature increase at constant volume, the distribution of molecular speeds increases. That is, the
51 SSM As a sample of nitrogen gas (N2) undergoes a temperature increase at constant volume, the distribution of molecular speeds increases. That is, the probability distribution function P(v) for the molecules spreads to higher speed values, as suggested in Fig. 19-86. One way to report the spread in P(v) is to measure the difference Av between the most probable speed up and the rms speed Vims. When P(v) spreads to higher speeds, Av increases. Assume that the gas is ideal and the N, molecules rotate but do not oscillate. For 1.5 mol, an initial temperature of 250 K, and a final temperature of 500 K, what are (a) the initial difference Avi, (b) the final difference Avr, and (c) the entropy change AS for the gas
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