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一、导体、绝缘体、半导体 二、制造半导体器件的材料 1-1 半导体物理基础知识 1-2 PN结 1-3 晶体二极管及其基本电路
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§ 1、集成运放的概念与符号 § 2、集成运放的结构、组成及其特点 § 3、集成运放的性能指标 § 4、电流源的作用 § 5、学会读集成运放电路图
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2.1 原子结构的近代概念 2.2 多电子原子的电子分布方式和周期系 2.3 化学键与分子间相互作用力 2.4 晶体结构
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因为课程学时有限,本章作为选学,其内容放在《微波 技术与天线》课程中学习。本章教案后续完成,请谅解
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Introduction A Brief History of CACSD Technological Developments. User Interfaces. CACSD Packages of Note 112. 3 The State of the Art in CACSD Consolidation of CACSD. A critique of Matrix Environments for C. Magnus Rimvall CACSD·“ Open Systems\· Other Desirable Features 112.4 CACSD Block-Diagram Tools Christopher P Jobling Basic Block-Diagram System Representations. Architectures of Block-Diagram Syster
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Man-Machine Systems 105.2 Several Natures of Man-Machine Control-A Catalog of Behavioral Complexities 105.3 Full-Attention Compensatory Operations--The Crossover model Crossover Frequency for Full-Attention Operations. Remnant Duane Mcruer Effects of Changes in the Task Variables. Effects of Divided 105.1 Introduction
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Circuits 1 Passive Components M. Pecht, P Lall,G. Ballou, C Sankaran, N. Angelopoulos esistors. Capacitors and Inductors. Transformers. Electrical Fuses 2 Voltage and Current Sources R.C. Dorf, Z Wan, C.R. Paul J.R. Cogdell tep, Impulse, Ramp, Sinusoidal
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Command, Control, and Communications(C3) G. Clapp Ocean Surveillance Center 103.3 The Technologies of C 103.4 The Dynamics of Encounters D. Sworder 103.5 The Role of the human Decisionmaker in C3 University of California, San Diego 103.6 Summary 103.1 Scope The focus of this chapter is not a detailed profile of a current or planned military C system but it is rather on programmatic reorderings render such express descriptions to become rapidly
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Cartesian Configuration . C Ty A. Lasky Configuration. Articulated Configurati Configuration. Gantry Configuratio 101.2 Dynamics and Control Independent Joint Control of the Robot. Dynamic Models iversity of California, Dav omputed Torque Methods. Adaptive Control. Resolved R Lal tummala Motion Control. Compliant Motion. Flexible Manipulators Justification. Implementation Strategies. Applications in Nicholas G. Drey
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118 Computer Design for pennsylvania State University Biomedical applications The Finite Difference Time Domain(FDTD)[Yee, 1966; Kunz and Luebbers, 1993; Taflove, 1995 is a numerical method for the solution of electromagnetic field interaction problems. It utilizes a geometry mesh, usually of
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