estion 6 In the myoglobin structure, there's a close contact between the NH1 atom (Q = +0.33) of arginine 118 and the OD1 atom (Q = -0.5) of aspartate 20. It can be assumed that the NH1-OD1 contact is taking place in a 2-octanol like environment (Dielectric constant = 10.0). The distance between the two atoms is 2.93 angstroms. Calculate the electrostatic interaction energy (Eelec) of the NH1-OD1 contact. Give your final answer in kJ/mol. Select the best answer. A -7.81 kJ/mol B F 1.87 kcal/mol -7.48 kcal/mol D) -0.24 kcal/mol -9.35 kcal/mol -1.87 kJ/mol

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Question 6
In the myoglobin structure, there's a close contact between the NH1 atom (Q = +0.33) of arginine 118 and the OD1 atom (Q = -0.5) of
aspartate 20. It can be assumed that the NH1-OD1 contact is taking place in a 2-octanol like environment (Dielectric constant =
10.0). The distance between the two atoms is 2.93 angstroms. Calculate the electrostatic interaction energy (Eelec) of the NH1-OD1
contact. Give your final answer in kJ/mol. Select the best answer.
A -7.81 kJ/mol
B
D
E
F
1.87 kcal/mol
-7.48 kcal/mol
-0.24 kcal/mol
-9.35 kcal/mol
-1.87 kJ/mol
Transcribed Image Text:Question 6 In the myoglobin structure, there's a close contact between the NH1 atom (Q = +0.33) of arginine 118 and the OD1 atom (Q = -0.5) of aspartate 20. It can be assumed that the NH1-OD1 contact is taking place in a 2-octanol like environment (Dielectric constant = 10.0). The distance between the two atoms is 2.93 angstroms. Calculate the electrostatic interaction energy (Eelec) of the NH1-OD1 contact. Give your final answer in kJ/mol. Select the best answer. A -7.81 kJ/mol B D E F 1.87 kcal/mol -7.48 kcal/mol -0.24 kcal/mol -9.35 kcal/mol -1.87 kJ/mol
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