Question: Can someone please help me with my physical chemistry? And please read the question all the way through. Someone continues to solve this problem using
Can someone please help me with my physical chemistry? And please read the question all the way through. Someone continues to solve this problem using different values from the question. If you are that someone please don't answer this question. I really need help.

2. (20 points total). In a medium with dielectric constant = 3, approximately corresponding to the interior of a protein, find the energy of interaction for: a) (5 points) Four charges with alternating signs te and -e arranged in a square array, with each side having length 3.9 : te -e -e +e b) (5 points) Four charges in a line separated by 3.9 , with alternating values of +e ande: te -e te -e c) (2 points) Are the energy values in a) and b) favorable or unfavorable to these configurations? Explain your answer. d) (4 points) At T= 300 K, compute the relative probability, p(configuration)/p(apart), for finding the charges in configuration a); configuration b). e) (4 points) Is the interaction energy large enough to stabilize configuration a) against thermal fluctuations at T = 300 K? Is the interaction energy large enough to stabilize configuration b)? Explain your answer. 2. (20 points total). In a medium with dielectric constant = 3, approximately corresponding to the interior of a protein, find the energy of interaction for: a) (5 points) Four charges with alternating signs te and -e arranged in a square array, with each side having length 3.9 : te -e -e +e b) (5 points) Four charges in a line separated by 3.9 , with alternating values of +e ande: te -e te -e c) (2 points) Are the energy values in a) and b) favorable or unfavorable to these configurations? Explain your answer. d) (4 points) At T= 300 K, compute the relative probability, p(configuration)/p(apart), for finding the charges in configuration a); configuration b). e) (4 points) Is the interaction energy large enough to stabilize configuration a) against thermal fluctuations at T = 300 K? Is the interaction energy large enough to stabilize configuration b)? Explain your
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