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4-1设有一个二维数组A[m][n]),假设A[0][0存放位置在644(1),A[2][2]存放位置在676(10),每个元素 占一个空间,问A[3][3](10)存放在什么位置?脚注(10)表示用10进制表示
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REMINDER: Quiz 1 will be held from 7: 30 to 9: 30 p. m. Tuesday, October 14 The quiz will cover material in Chapters 1-3 of o&w Lectures and Recitations through september 26, Problem Sets 1-3 and that part of Problem Set 4 involving problems from Chapter 3 Reading assignments
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采用粉末渗镀法,研究了黄铜渗铝工艺。获得有效渗铝的工艺条件是:渗镀温度600℃,渗镀时间3h,渗剂组成是Al粉40%、NH4Cl 2%和Al2O3粉58%。渗铝后的黄铜耐蚀性提高1.8倍,硬度增加25.6%,渗层厚度为50μm。通过X射线衍射分析等得出,黄铜渗铝层的结构由表面至基体是Cu0.6108Al0.3892→γ2-Cu9Al4→α-CuZn(含Al)→α-CuZn
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几种水解酶:芳基硫酸酯酶(Arylsulphatase(ec3.1.6.)),葡萄糖苷酶 glucosidase(ec3.2.1.21)和磷酸单酯酶(phosphmonoester(e3.1.3)测定: 这三种酶的测定都是依据人工合成底物(p-nitrophenyl,p- -nitrophenyl glucoside andp- -nitrophenyl phosphate, respectively)裂解后释放的p- -nitrophenol的量来测定 Arylsulphatase(ec3.1.6.1):称取1g土(湿重,与4m1500mM乙酸缓冲液(acetate buffer)(pH5.8)和1ml底物(25mM)混匀
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研究了钛酸锶(SrTiO3a)固化体浸出性能的影响因素.采用MCC-1浸出法,分析了钛酸锶的浸出率.实验结果表明:SrTiO3a中各种元素的浸出率随时间延长而减小,且都小于0.1g·m-2·d-1,比玻璃固化体浸出率要低2~3个数量级;钛酸锶的化学稳定性好,是比较好的高放废物固化体
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对转炉—RH真空处理一连铸生产焊接气瓶钢各个工艺阶段钢中非金属夹杂物的形貌、尺寸、组成及来源等进行了系统的研究.结果发现钢包渣与钢液作用而生成的夹杂物在浇注过程中可以从钢液中上浮去除,尺寸小于40 μm的角状和蔟群状的Al2O3夹杂物则难以完全从钢液中排出而滞留在钢中,从而构成铸坯中非金属夹杂物的主要来源.铸坯中T[O](14-16)×10-6之间,非金属夹杂物含量为0.09-0.15mg/kg,表明所生产的铸坯具有较高的洁净度
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例:图1所示冲裁件,材料为A3,厚度为2m,大批量生产。试制定工件冲压工 艺规程、设计其模具、编制模具零件的加工工艺规程
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1 EM optimization method 1.1 EM algorithm 1.2 Convergence 1.3 Usage in exponential families 1.4 Usage in finite normal mixtures 1.5 Variance estimation 1.5.1 Louis method 1.5.2 SEM algorithm 1.5.3 Bootstrap method 1.5.4 Empirical Information 1.6 EM Variants 1.6.1 Improving the E step 1.6.2 Improving the M step 1.7 Pros and Cons
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Part I Molecular Components of Cells 1 The Facts of Life: Chemistry Is the Logic of Biological Phenomena 2 Water: The Medium of Life 3 Thermodynamics of Biological Systems 4 Amino Acids and the Peptide Bond 5 Proteins: Their Primary Structure and Biological Functions 6 Proteins: Secondary, Tertiary, and Quaternary Structure 7 Carbohydrates and the Glycoconjugates of Cell Surfaces 8 Lipids 9 Membranes and Membrane Transport 10 Nucleotides and Nucleic Acids 11 Structure of Nucleic Acids 12 Recombinant DNA, Cloning, Chimeric Genes, and Synthetic Biology Part II Protein Dynamics 13 Enzymes—Kinetics and Specificity 14 Mechanisms of Enzyme Action 15 Enzyme Regulation 16 Molecular Motors Part III Metabolism and Its Regulation Part IV Information Transfer
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Chapter 2 Water Chapter 3 Amino Acids, Peptides, and Proteins Chapter 4 The Three-Dimensional Structure of Proteins Chapter 5 Protein Function Chapter 6 Enzymes Chapter 8 Nucleotides and Nucleic Acids Chapter 9 DNA-Based Information Technologies Chapter 11 Biological Membranes and Transport Chapter 12 Biosignaling Chapter 13 Bioenergetics and Biochemical Reaction Types Chapter 14 Glycolysis, Gluconeogenesis, and the Pentose Chapter 16 The Citric Acid Cycle Chapter 17 Fatty Acid Catabolism Chapter 18 Amino Acid Oxidation and the Production of Urea Chapter 19 Oxidative Phosphorylation and Photophosphorylation Chapter 20 Carbohydrate Biosynthesis in Plants and Bacteria Chapter 22 Biosynthesis of Amino Acids, Nucleotides, and Related Molecules Chapter 24 Genes and Chromosomes Chapter 25 DNA Metabolism Chapter 26 RNA Metabolism Chapter 28 Regulation of Gene Expression
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