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matlab code with explanation 3. Electric Potential of the DNA The two sides of the DNA double helix are cone connected by pairs of bases
matlab code with explanation
3. Electric Potential of the DNA The two sides of the DNA double helix are cone connected by pairs of bases (adenine, thymine, cytosine and guanine). Because of the geometric shape of these molecules, adenine bonds with thymine and cytosine bonds guanine. The figure shows the thymine-adenine bond. Each charge shown is e = 1.610-16 C and the H - N distance is 0.11 nm. 0.280 Thymine (a) Map the electric potential in 3D of the adenine-thymine bond. To keep the calculation simple, yet reasonable consider only the electric potential due to O H-N or the N - H N combination, assuming these two combinations are parallel to each other. Use the following reoriented diagram (see below) 0.280 0.300 nm Thymine Sample Plot Electric Potential for N-H-N -1 04 0 2 04 02 02 04 0 (b) Map the electric potential in 3D of the adenine-thymine bond due to O-H- N and the N-H N combination. 3. Electric Potential of the DNA The two sides of the DNA double helix are cone connected by pairs of bases (adenine, thymine, cytosine and guanine). Because of the geometric shape of these molecules, adenine bonds with thymine and cytosine bonds guanine. The figure shows the thymine-adenine bond. Each charge shown is e = 1.610-16 C and the H - N distance is 0.11 nm. 0.280 Thymine (a) Map the electric potential in 3D of the adenine-thymine bond. To keep the calculation simple, yet reasonable consider only the electric potential due to O H-N or the N - H N combination, assuming these two combinations are parallel to each other. Use the following reoriented diagram (see below) 0.280 0.300 nm Thymine Sample Plot Electric Potential for N-H-N -1 04 0 2 04 02 02 04 0 (b) Map the electric potential in 3D of the adenine-thymine bond due to O-H- N and the N-H N combinationStep by Step Solution
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