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上海交通大学:《药物化学》课程教学资源(教案讲义)第3讲 1.3 Structure-Activity Relationships 1.4 Quantitative Structure-Activity Relationship
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A VNi atomic model for 3D periodic structure is posed based on T polyhedrons which are introduced. The fourier transform patterns of the atomic model may explain the 12-fold symmetry in electron diffraction patterns of V60Ni40 alloy. This is the first satisfactory explanation since the V60Ni40 alloy has been reported
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一、物质的组成(Substance Construction) 物质由无数微粒(Particles)聚集而成 分子(Molecule):单独存在保存物质化学特性 d20=0.2nmm(2)为2M(protein)为百万 原子(Atom):化学变化中最小微粒
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Heat treatment changes the structure of the cobalt binder phase and the properties of the WC-Co hardmetals. The higher the cobalt content in the alloy is, the more effective the heat treatment is. The present work has found that the transformation of α-Co to ε-Co can be depressed by quenching the specimens in oil from 1000℃ and hence the transverse rupture strength of these specimens can be increased. During tempering the quenched specimens, new precipitated phases which have dispersion hardening effect on the cobalt binder phase have been observed
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Using sand moulds for step-shape casting tests and different silicon percentage of nodular cast iron it was possible to separate structural variations produced during freezing from those occurring at Ac1 transformation temperature. The results show that an increase in silicon content leading to different variation in the matrix structure> leads to a changing mechanical properties of nodular cast irons. Tensile strength and elongation of obtained as-cast nodular cast iron with the composition of 3.9%C, 3.2%Si, 0.5%Mn are maximum of about 524.5N/mm2 and 19.8% accordingly. In the same nodular cast iron, but only with 0.1% Mn the silicon addition first increases after decreases elongation, impact toughness and hardness. But tensile strength changes to the opposite side
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1晶体学基础 (Basis Fundamentals of crystallography) 晶体结构的基本特征:原子(或分子、离子)在三维空间
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6.001 Structure and Interpretation of Computer Programs. Copyright o 2004 by Massachusetts Institute of Technology 6.001 Notes: Section 4.1 Slide 4.1.1 Today ' s topics In this lecture, we are going to take a careful look at the kinds
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7.认识分子间作用力和氢键的本质,会解释其对物质性质的影响。1.认识化学键的本质;2.掌握离子键的形成及其特点;3.掌握离子的特征,离子极化概念;4.掌握价键理论的内容;会用价键理论解释共价键的特征,会用价电子对互斥理论和杂化轨道理论解释简单的分子结构;5.初步认识分子轨道,掌握第二周期元素的分子轨道特点;6.理解金属键理论,特别是能带理论,会用能带理论解释固体分类; 2.1 化学键的定义 Definition of chemical bond 2.2 离子键理论 Ionic bond theory 2.3 共价键的概念与路易斯结构式 Concept of the covalent bond theory and Lewis’ structure formula 2.7 金属键理论Metallic bond theory 2.8 分子间作用力和氢键 Intermolecular forces and hydrogen bond 2.4 用以判断共价分子几何形状的价层电子对互斥理论 VSEPR for judging the configuration of the covalence molecular 2.5 原子轨道的重叠— 价键理论 Superposition of atomic orbital —valence bond theory 2.6 分子轨道理论Molecular orbital theory
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6.001 Structure and Interpretation of Computer Programs. Copyright o 2004 by Massachusetts Institute of Technology 6.001 Notes: Section 3.1 Slide 3.1.1 This Lecture In this lecture, we are going to put together the basic pieces of Scheme that we introduced in the previous lecture, in order to
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❖基本结构 Basic Structure ❖模具类型 Mould Type ❖分型面 Parting Line ❖浇注系统 Feeding System ❖模具等级 Mould Grade
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