Postgraduate Certificate in Pharmaceutical Quantum Chemistry
-- ViewingNowThe Postgraduate Certificate in Pharmaceutical Quantum Chemistry is a comprehensive course that bridges the gap between quantum mechanics and pharmaceutical chemistry. This certificate program emphasizes the importance of computational chemistry in drug design and development, meeting the growing industry demand for professionals with expertise in this area.
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โข Quantum Mechanics for Pharmaceutical Chemistry: An introduction to the principles of quantum mechanics and how they apply to the behavior of molecules in the pharmaceutical industry.<br> โข Computational Methods in Quantum Chemistry: An overview of computational methods used in quantum chemistry, including density functional theory and molecular orbital theory.<br> โข Molecular Modeling and Simulation: The use of computational tools to model and simulate the behavior of molecules, including pharmaceutical compounds.<br> โข Quantum Chemistry in Drug Discovery: The application of quantum chemistry to the discovery and development of new pharmaceutical drugs, including the study of drug-receptor interactions.<br> โข Quantum Chemistry of Biomolecules: The application of quantum chemistry to the study of biomolecules, including proteins, nucleic acids, and lipids.<br> โข Quantum Mechanical Methods for Large Systems: Advanced techniques for applying quantum mechanical methods to large systems, including the use of linear scaling algorithms and parallel computing.<br> โข Quantum Chemistry in Materials Science: The application of quantum chemistry to the study of materials, including the design and discovery of new materials for pharmaceutical applications.<br> โข Electronic Structure Theory: A deeper dive into the theory of electronic structure, including the use of wave functions and configuration interaction.<br> โข Quantum Chemistry of Reaction Mechanisms: The application of quantum chemistry to the study of chemical reaction mechanisms, including the calculation of reaction cross sections and rate constants.<br>
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