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Chapter 17, Problem 76P

The Maxwell-Boltzmann distribution, plotted in Fig. 17.4, is given by

N ( v )   Δ v = 4 π N ( m 2 π K T ) 3 / 2 v 2 e m v 2 / 2 k T   Δ v

where N(v) Δv is the number of molecules in a small speed range Δv around speed v, N is the total number of molecules in the gas, m is the molecular mass, k is Boltzmann’s constant, and T is the temperature. Use this equation to show that the most probable speed for a gas molecule—the speed at the peak of the curves in Fig. 17.4—is 2 k T / m . Note that the thermal speed (Equation 17.4), which is the average molecular speed, is a factor of 3 / 2 or about 20% greater than the most probable speed—a fact that reflects the long, high-energy “tail” of the Maxwell-Boltzmann distribution.

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Chapter 17 Solutions

Essential University Physics: Volume 1; Mastering Physics with Pearson eText -- ValuePack Access Card -- for Essential University Physics (3rd Edition)

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