SSM WWW A box contains N gas molecules, Consider the box to be divided into three equal parts (a) By extension of Eq. 20-20, write a formula for the multiplicity of any given configuration, (b) Consider two configurations: configuration A with equal number of molecules in all three thirds of the box, and configuration B with equal numbers of molecules in each half of the box divided into two equal parts rather then three. What is the ratio W A /W B of the multiplicity of configuration A to that of configuration B ? (c) Evaluate W A /W B for N = 100. (Because 100 is not evenly divisible by 3, put 34 molecules into one of the three box parts of configuration A and 33 in each of the other two parts.)
SSM WWW A box contains N gas molecules, Consider the box to be divided into three equal parts (a) By extension of Eq. 20-20, write a formula for the multiplicity of any given configuration, (b) Consider two configurations: configuration A with equal number of molecules in all three thirds of the box, and configuration B with equal numbers of molecules in each half of the box divided into two equal parts rather then three. What is the ratio W A /W B of the multiplicity of configuration A to that of configuration B ? (c) Evaluate W A /W B for N = 100. (Because 100 is not evenly divisible by 3, put 34 molecules into one of the three box parts of configuration A and 33 in each of the other two parts.)
SSM WWW A box contains N gas molecules, Consider the box to be divided into three equal parts (a) By extension of Eq. 20-20, write a formula for the multiplicity of any given configuration, (b) Consider two configurations: configuration A with equal number of molecules in all three thirds of the box, and configuration B with equal numbers of molecules in each half of the box divided into two equal parts rather then three. What is the ratio WA/WB of the multiplicity of configuration A to that of configuration B? (c) Evaluate WA/WB for N = 100. (Because 100 is not evenly divisible by 3, put 34 molecules into one of the three box parts of configuration A and 33 in each of the other two parts.)
Help me make a visualize experimental setup using a word document. For the theory below.
How to solve this, given answer
Three point-like charges are placed at the corners of a square as shown in the figure, 28.0
cm on each side. Find the minimum amount of work required by an external force to move
the charge q1 to infinity. Let q1=-2.10 μC, q2=+2.40 μС, q3=+3.60 μC.
Chapter 20 Solutions
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