Question

The grand potential equals negative k T times the log of one form of this quantity. For 10 points each:
[10h] Name this quantity that is denoted “Z,” from the German for “sum over states,” because it is computed by summing over all microstates. Dividing weights by this quantity normalizes a Boltzmann distribution.
ANSWER: partition function [accept canonical partition function or grand canonical partition function; accept Zust·and·ssumme]
[10e] The grand canonical partition function is a sum of values for this scientist’s namesake “factor.” This scientist’s free energy equals H minus T S and determines spontaneity.
ANSWER: Josiah Willard Gibbs [accept Gibbs factor; accept Gibbs free energy]
[10m] The Gibbs factor over the grand partition function gives this quantity for a microstate. The wave function times its complex conjugate gives this quantity’s density.
ANSWER: probability [accept probability density or likelihood]
<Forrest Weintraub, Science - Physics&gt; ~22929~ &lt;Editor: David Bass>

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