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FCH-MA_KVCHAcad. year: 2024/2025
Basic conceptions of quantum mechanics, operators, wave functions end eigen values, Heisenberg´s principle of uncertainty and its impacts.Simple quantum mechanic models (particle in one and three dimensional potential hole, harmonic oscillator, rigid rotator, hydrogen atom).Chemical bound, Born-Oppenheimer approximation, hydrogen molecular ion, LCAO-MO approximation, hybridization and localization of bounds, VSEPR method, molecular orbitals in solids.
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1. Quantum mechanics necessity. Black body radiation. Caloric capacity of solids. Photoelectric phenomenon. Compton phenomenon. Stability of atoms and electronic spectra interpretation. Spectral lines splitting in the electric and magnetic fields.2. Elementary basis of the quantum mechanics. Operators and their characteristic values. 3. Quantum mechanics postulates. Heisenberg principle of uncertainty. 4. Simple quantum mechanic systems. Particle in the potential hollow. Tunnel effect. 5. Linear harmonic oscillator. 6. Spherical coordinate system. Rigid rotator. 7. Hydrogen atom.8. Moment of movement in the quantum mechanics and its properties. 9. Orbital and spin moments. Combining of the moments.10. Electronic structure of atoms. Many particle problem in quantum mechanics. Permutation operators. Slater determinant. Pauli's exclusion principle. Electronic configuration of atoms and atomic terms.11. Chemical bound. H2+ molecular ion. Heilter-London model of H2 molecule. 12. Born-Oppenheimer approximation. Molecular orbitals. LCAO MO approximation. Localized and delocalized molecular orbitals. Hybridization. 13. VSEPR method and molecular geometry. Crystal field theory. Chemical bound in solids. Semi empiric methods of molecular orbitals.
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