PARI II: Molecular Design (45 points total) Find the optimum (minimum energy) geometry for (5)helicene and each of the t

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PARI II: Molecular Design (45 points total) Find the optimum (minimum energy) geometry for (5)helicene and each of the t

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Pari Ii Molecular Design 45 Points Total Find The Optimum Minimum Energy Geometry For 5 Helicene And Each Of The T 1
Pari Ii Molecular Design 45 Points Total Find The Optimum Minimum Energy Geometry For 5 Helicene And Each Of The T 1 (30.93 KiB) Viewed 44 times
Pari Ii Molecular Design 45 Points Total Find The Optimum Minimum Energy Geometry For 5 Helicene And Each Of The T 2
Pari Ii Molecular Design 45 Points Total Find The Optimum Minimum Energy Geometry For 5 Helicene And Each Of The T 2 (20.07 KiB) Viewed 44 times
PARI II: Molecular Design (45 points total) Find the optimum (minimum energy) geometry for (5)helicene and each of the two models, shown below, then measure the geometric parameters bond angles ZL and ZR-these are labeled with red arcs in the diagrams and various torsion angles, these are labeled with green and blue arcs with arrows The optimum central torsion angle for each molecule is given to provide a target value. 5-Helicene e Lokg "H Central torsion angle 40-26.9 Enter the various geometric parameters for 5-helicene, as well as the two ketone models in the full table provided below. Note that for all the systems, one should expect that ZL ZR and Footer
0: Pc 'H B 40-21.5 O 0 D 40-30.91 =
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