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第二章小测验 1.根据氢原子的ls轨道的波函数表达式,证明它是归一化波函 数,并据此写出氦离子(He)的ls轨道波函数
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8.1 The metallic bond and the general properties of metals 8.2 Close packing of spheres and the structure of pure metals 8.3 The structures and properties of alloys
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7.1 periodicity and lattices of crystal structure 7.2 Symmetry in crystal structures 7.3 X-ray diffraction of crystals
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6.1 Electron-deficient multi-center bonds 6.2 Chemical bonds in the coordination compounds 6.3 Prediction of structural features of inorganic iono-covalent compounds with tetrahedral anion complexes 6.4 Transition-metal cluster compounds 6.5 Carbon clusters and nanotubes 6.6 Hydrogen Bonding
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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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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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济南大学:《结构化学基础》(第三版) 第二章 习题解答
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6.1 Electron-deficient multi-center bonds and electron-deficient molecules 6.2 Chemical bonds in the coordination compounds 6.3 Ligand Field Theory (LFT) 6.4 π- back Bonding (π-馈键) 6.5 Metal cluster 6.6 Carbon clusters 6.7 Hydrogen Bonding
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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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