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电路分析CIRCUIT ANALYSIS

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  分類: 图书,进口原版书,科学与技术 Science & Techology ,

作者: Leonard J. Tung等著

出 版 社:

出版时间: 2001-12-1字数:版次: 1页数: 256印刷时间: 2002/01/01开本:印次: 1纸张: 胶版纸I S B N : 9789810240516包装: 精装内容简介

This volume is intended as a texlbook for a first course in electrical engineering It is divided into two parts, for a two-semester coverage.

The first part deals with circuit elements, resistive circuits, circuit theorems, circuit topology, and the state-variable method. The presentation of the state-variable method is a special feature. The authors believe that the natural way to analyze RLC circuits is to use the state-variable method rather than second- or high-order ordinary differential equations. By choosing capacitor voltages and inductor currents in an RLC circuit as state variables, the so-called state equations can be systematically obtained through network topology. Of particular interest is the approach employing Thevenin's theorem and Norton's theorem to find state equations without using circuit topology.

目录

Preface

Chapter 1 Circuit Elements

1.1 Circuit Quantities

1.1.1 Charge and Current

1.1.2 Energy and Voltage

1.1.3 Power and Passive Sign Convention

1.2 Element Classifications

1.2.1 Passive versus Active Element

1.2.2 Linear versus Nonlinear Element

1.2.3 Resistive versus Energy-Storage Element

1.2.4 Voltage Sources versus Current Sources

1.2.5 Dependent versus Independent Sources

1.3 Resistors and Ohm's Law

1.3.10hm's Law

1.3.2 Symbol and Power Consumption

1.3.3 Special Cases

1.4 Energy-Storage Elements

1.4.1 Capacitors

1.4.2 Inductors

Chapter 2 Resistive Circuits

2.1 Circuit Laws

2.1.1 Kirchhoff's Current Law

2.1.2 Kirchhoff's Voltage Law

2.2 Equivalent Resistors

2.2.1 Equivalence

2.2.2 Resisters in Series

2.2.3 Resisters in Parallel

2.2.4 Equivalent Resistor via Series and Parallel Combinations.

2.3 Node-Voltage Method

2.3.1 Circuits with No Voltage Source

2.3.2 Circuits Containing Voltage Sources ..

2.4 Loop-Current Method

2.4.l Circuits with No Current Source

2.4.2 Circuits Containing Current Sources.

2.5 Operational Amplifiers

2.5.1 The Ideal Op-Amp

2.5.2 The Inverting Op-Amp

2.5.3 The Non-Inverting Op-Amp

2.5.4 The Difference Amplifier

2.5.5 The Summing Amplifier

2.5.6 The Current to Voltage Converter

Chapter 3 Circuit Theorems

3.1 Linearity and Superposition

3.1.1 Linearity

3.1.2 Superposition

3.2 Thevenin's Theorem

3.3 Norton's Theorem

3.4 Maximum Power Transfer

Chapter 4 Network Equations through Topology

4.1 Graph

4.1.1 Tree, Co-Tree, and Links

4.1.2 Cut-Sets and Cut-Set Equations

4.1.3 Fundamental Loops

4.2 General Nodal Analysis

4.3 General Loop Analysis

Chapter 5 State Variable Method for RLC Circuits..

5.1 First Order Circuits

5.1.1 RC Circuits

5.1.2 RL Circuits

5.2 Higher Order Circuits

5.2.1 Topological Method

5.2.2 Generalized Thevenin's Approach

……

Chapter 6 Sinusoidal Steady-State Analysis

Chapter 7 Three-Phase Circuits

Chapter 8 Two-Port Networds

Chapter 9 Fourier Analysis and Frequency Response

Chapter 10 Laplace Transform

 
 
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