Question
Can you please answer #5? Thank You! In the figure at the right is shown two systems, labeled A and B, that each can hold
Can you please answer #5? Thank You!
In the figure at the right is shown two systems, labeled A and B, that each can hold thermal energy. A and B each have 6 binary degrees of freedom (i.e., each degree of freedom can either be empty or hold one packet of energy). There are 6 available packets of energy, and they are identical so we can't tell them apart. The figure shows one way that the energy packets can be distributed; it's possible to draw or list the other possible ways of distributing the energy. Express your entries forWas a number and forSas a number multiplying kB. 1. How many ways,WA, are there to distribute all 6 packets to system A? WA= If we knew the energy was distributed with 6 packets in A and 0 packets in B, what would be the entropy,SAB, of that state? SAB= kB
Can you please answer #5? Thank You! In the figure at the right is shown two systems, labeled A and B, that each can hold thermal energy. A and B each have 6 binary degrees of freedom (i.e., each degree of freedom can either be empty or hold one packet of energy). There are 6 available packets of energy, and they are identical so we can't tell them apart. The figure shows one way that the energy packets can be distributed; it's possible to draw or list the other possible ways of distributing the energy. Express your entries forWas a number and forSas a number multiplying kB. 1. How many ways,WA, are there to distribute all 6 packets to system A? WA= If we knew the energy was distributed with 6 packets in A and 0 packets in B, what would be the entropy,SAB, of that state? SAB= kB |
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