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Physics, 04.10.2019 23:30 willijav000

As discussed during the lecture, the enzyme hiv-1 reverse transcriptae (hiv-rt) plays a significant role for the hiv virus and is an important drug target. assume a concentration [e] of 2.00 hm (ie. 2.00 x 10-6 mol) for hiv-rt. two potential drug molecules, d1 and d2. were identified, which form stable complexes with the hivrt the dissociation constant of the complex ed, formed by hiv-rt and the drug dy is 1.00 nm (i. e. 1.00x 10). the dissociation constant of the complex ed2 formed by hiv-rt and the drug d2 is 100 nm (i. e. 1.00 x 10). part a - difference in binding free eenergies compute the difference in binding free energy (at a physiological temperature t-310 k) for the complexes. provide the difference as a positive numerical expression with three significant figures in kj/mol. the margin of error is 2%. the difference in binding free energy between both complexes is kjmol submit previous answers request answer incorrect; try again; 2 attempts remaining part b compare diference in free energy to the thermal energy divide the difference beween the binding free energies of the ed the margin of error is 2%. and ed2 complexes by the thermal energy (at the physiological temperature 310k). provide a numerical expression with 3 significant figures

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As discussed during the lecture, the enzyme hiv-1 reverse transcriptae (hiv-rt) plays a significant...
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