5.15 For benzene, the collision cross section o is 88 Å^2. Suppose that at 300 K benzene has an average collision frequency y comparable to typical intermolecular vibrational frequencies, roughly 10^12s-1. kB = 1.381E-23 J/K. 1 amu = 1.661E-27 kg.

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5.15 For benzene, the collision cross section
o is 88 Å^2. Suppose that at 300 K benzene
has an average collision frequency y
comparable to typical intermolecular
vibrational frequencies, roughly 10^12s-1.
kB = 1.381E-23 J/K. 1 amu = 1.661E-27 kg.
Part A: Determine the number density p
Part B: Determine the mean free path A.
Part C: What do the results obtained in the
previous parts suggest about benzene at
this density? A) The substance is condensed
as a liquid or solid B) The substance is a gas
Transcribed Image Text:5.15 For benzene, the collision cross section o is 88 Å^2. Suppose that at 300 K benzene has an average collision frequency y comparable to typical intermolecular vibrational frequencies, roughly 10^12s-1. kB = 1.381E-23 J/K. 1 amu = 1.661E-27 kg. Part A: Determine the number density p Part B: Determine the mean free path A. Part C: What do the results obtained in the previous parts suggest about benzene at this density? A) The substance is condensed as a liquid or solid B) The substance is a gas
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