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The Development of Novel Antibiotics Using ... - Jacobs University

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Molecular modelling data for the computed structure (14a)<br />

Geometry optimization, SemiEmpirical, PM3<br />

Polak-Ribiere optimizer<br />

Convergence limit = 0.0100000 Iteration limit = 50<br />

Accelerate convergence = YES<br />

Optimization algorithm = Polak-Ribiere<br />

Criterion <strong>of</strong> RMS gradient = 0.0100 kcal/(A mol) Maximum cycles = 3000<br />

RHF Calculation:<br />

Singlet state calculation<br />

Number <strong>of</strong> electrons = 340<br />

Number <strong>of</strong> Double Occupied Levels = 170<br />

Charge on the System = 0<br />

Total Orbitals = 314<br />

ENERGIES AND GRADIENT<br />

Total Energy = -242937.5595208 (kcal/mol)<br />

Total Energy = -387.145596287 (a.u.)<br />

Binding Energy = -12294.3055588 (kcal/mol)<br />

Isolated Atomic Energy = -230643.2539620 (kcal/mol)<br />

Electronic Energy = -2903965.4422912 (kcal/mol)<br />

Core-Core Interaction = 2661027.8827704 (kcal/mol)<br />

Heat <strong>of</strong> Formation = 44.9504412 (kcal/mol)<br />

Gradient = 0.0079269 (kcal/mol/Ang)<br />

Molecular modelling data for the computed structure (14b)<br />

Single Point, MolecularMechanics, AMBER<br />

Total Energy = 119.979437 kcal/mol Gradient = 27.619543.<br />

Bond = 50.4237 Angle = 16.5468 Dihedral = 61.4234 Vdw = 4.53074 Electrostatic = -12.9453.<br />

Polak-Ribiere optimizer<br />

Energy=37.585088 kcal/mol Gradient=0.009352 Converged=YES (864 cycles 1777 points).<br />

Bond = 1.98755 Angle = 8.78296 Dihedral = 41.8076 Vdw = 4.14276 Electrostatic = -19.1358.<br />

S40

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