§5.1 Theory of hybrid orbital and atomic orbital hybridization §5.2 Valence Shell Electron-Pair Repulsion (VSEPR) Model §5.3 Delocalized molecular orbital theory §5.4 Hückel molecular orbital theory and conjugated system §5 The symmetry of molecular orbital and symmetry rules for molecular reactions
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§1 Treatment of variation method for the H2+ ion §2 Molecular orbital theory and diatomic molecules §3 Valence bond(VB) theory for the hydrogen molecule and the comparison VB theory with Molecular Orbital theory(MO)
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§1 Symmetry elements and symmetry operations §2 Groups and group multiplications §3 Point groups, the symmetry classification of molecules §4 Application of symmetry
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2.1 The Schrödinger equation and its solution for one-electron atoms 2.2 The physical significance of quantum numbers 2.3 The wave function and electron cloud 2.4 The structure of many electron atoms (multi-electron atoms) 2.5 Atomic spectra and spectral term
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1.1 The failures of classical physics 1.2 The characteristic of the motion of microscopic particles 1.3 The basic assumptions (postulates) of quantum mechanics 1.4 Solution of free particle in a box - a simple application of Quantum Mechanics
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厦门大学:《量子化学 Quantum Chemistry》课程电子教案(教学课件)Chapter 9 多原子的半经验方法 Semi-experimental method for polyatomic molecular
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厦门大学:《量子化学 Quantum Chemistry》课程电子教案(教学课件)Chapter 8 共轭分子的结构与性能 Ab initio technique for polyatomic molecular
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厦门大学:《量子化学 Quantum Chemistry》课程电子教案(教学课件)Chapter 7 简单分子轨道理论 Elementary molecular orbital(MO)theory
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厦门大学:《量子化学 Quantum Chemistry》课程电子教案(教学课件)Chapter 6 分子的对称性与对称群 Molecular symmetry and symmetric group
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厦门大学:《量子化学 Quantum Chemistry》课程电子教案(教学课件)Chapter 5 原子结构 Atomic structure
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