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Microelectronics Processing Technology Spring Term, 200. Quiz 1 90 min/90 points total March 19 2003 Note: Be brief and relevant in your answers, and use sketches. Show your work. k=1.3810-23J/K=8.6210-eV/K 40 1. Film deposition, CVD )Discuss briefly what factors affect the microstructure a film grown on a substrate
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Review Conditional pdf Let(Y1,., YN) have joint pdf f(31,.. JN). Let f(3J+1, .. yN)be the marginal pdf of(y+1,……,YN). The conditional pdf of y1,…, Y, given y+1,…, YN is defined by
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2.7.刚体动力学的基本概念(参阅教材§4.4.-§4.9.) 1.刚体是一种特殊的质点系,质点系动力学的研究方法也适用于刚体,把动力学的三大定理 应用到刚体,所得结果就是111页(4.1.)(4.2.)和(4.3.)。由于刚体的自由度是6,三大 定理有七个方程,取其中六个方程就足以决定刚体的运动了。 鉴于刚体内部约束的特点(任意两质点间的距离保持不变),内力所作的功为零(证明见后) 动能定理(4.3)式已经得到化简;内势能一般取决于各对质点间的距离(而与相对的取向无关),因 而内势能也是常数,可以不予考虑(相当于调整计算势能的零点,使内势能为零) 刚体内力所作功为零的证明: F=F,F,是质点j作用于质点i的力,沿这两个质点的连线,满足F=-F 因而可表为F=n(-),(=):于是可计算成对内力所做的元功:
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我向几位好心阅读本书校样,并给我提出勘误和意见的 朋友表示谢意;其中我特别要提到约翰亚当斯教授、J.. 米尔黑德教授、A.沃尔夫博士以及WH.温奇、悉尼·韦 伯、L.皮尔索尔·史密斯和A.E.齐默恩等先生。正是为 了他们的缘故,我要补充说,书中有些见解仍予以保留,对 于这些见解,他们中的一人或多人是会希望删去或换一种表 达方式的。 我已尽力在脚注中标明其著作曾被我引用的各位作者
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From Individual to Market Demand Functions Think of an economy containing n consumers, denoted by= 1, .. ,n. Consumer is' ordinary demand function for commodity j is
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Lecture 17: Drug targeting Last time Intracellular drug de Today Drug targeting Reading T.J. Wickham, 'Ligand-directed targeting of genes to the site of disease, Nat. Med. 9(1) 135-139(2003)
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Lecture 3: Degradable Materials with Biological Recognition Last time: Theory of hydrolytic polymer erosion Enzymatic degradation of polymers Designing Biodegradable Macromolecules Today: Biological recognition in vivo Engineering biological recognition of biomaterials: cell adhesion/migration Reading: S.E. Sakiyama-Elbert and J.A. Hubbell, 'Functional Biomaterials: Design of Novel
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Biodegradable solid polymeric Materials Today course overview and administrative details Intro to concepts covered Chemistry and physical chemistry of biodegradable polymeric solids Hand-outs course syllabus Course administrative details Readin Third-Generation Biomedical Materials. \LL Hench and j M. Polak. Science 295
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Contents Preface 1 Separation processes- an overview S. Grandison and M. J. Lewis 1.1 Foods the raw material 1.2 Separation techniques 1.2.1 Introduction 1.2.2 Separations from solids
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Chapter 5 Microfiltration A. S. GRANDISON, Department of Food Science and Technology, The University of Reading, Reading RG6 6AP and T.J. A FINNIGAN, Marlow Foods, Middlesbrough. 5.1 INTRODUCTION Microfiltration (MF) is the oldest membrane technology, having been used several
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