第一节 生物氧化概述 第二节 电子传递链 第三节 氧化磷酸化
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第一节 核酸的种类、分布与功能 第二节 核酸的化学组成 第三节 核酸的分子结构 第四节 核酸的理化性质
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第一节 蛋白质合成体系 第二节 蛋白质的合成过程
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《生命的化学》:混合学习在基础生物化学应用中的效果分析(甘肃农业大学:唐勋,张宁,周香艳,吴兵,王旺田,王翠玲,杨德龙)
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9.1 The ionic radii ratio and the coordination polyhedra of ions 9.2 The crystal structures of Some typical ionic compounds 9.3 Lattice energy 9.4 Ionic radii 9.5 The Pauling rule of ionic crystal structure 9.6 Structural chemistry of silicates 9.7 Crystals of Functional Materials
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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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§5.1 Theory of hybrid orbital and atomic orbital hybridization §5.2 Valence Shell Electron-Pair Repulsion (VSEPR) Model §5.3 Hückel molecular orbital theory and conjugated system §5.4 Delocalized molecular orbital theory §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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