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Introduction
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1.1 1.2 1.3 1.4 1.5 1.6 Electrical Quantities and SI Units Force, Work, and Power Electric Charge and Current Electric Potential Energy and Electrical Power Constant and Variable Functions
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2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8 Passive and Active Elements Sign Conventions Voltage-Current Relations Resistance Inductance Capacitance Circuit Diagrams Nonlinear Resistors
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3.1 3.2 3.3 3.4 3.5 3.6 3.7 Introduction Kirchhoff s Voltage Law Kirchhoff s Current Law Circuit Elements in Series Circuit Elements in Parallel Voltage Division Current Division
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4.1 4.2 4.3 4.4 4.5 4.6 4.7 4.8 4.9 The Branch Current Method The Mesh Current Method Matrices and Determinants The Node Voltage Method Input and Output Resistance Transfer Resistance Network Reduction Superposition Thevenin s and Norton s Theorems
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4.10 Maximum Power Transfer Theorem
Contents
Ampli ers and Operational Ampli er Circuits
5.1 Ampli er Model 5.2 Feedback in Ampli er Circuits 5.3 Operational Ampli ers 5.4 Analysis of Circuits Containing Ideal Op Amps 5.5 Inverting Circuit 5.6 Summing Circuit 5.7 Noninverting Circuit 5.8 Voltage Follower 5.9 Differental and Difference Ampli ers 5.10 Circuits Containing Several Op Amps 5.11 Integrator and Differentiator Circuits 5.12 Analog Computers 5.13 Low-Pass Filter 5.14 Comparator
64 65 66 70 71 71 72 74 75 76 77 80 81 82
Waveforms and Signals
6.1 Introduction 6.2 Periodic Functions 6.3 Sinusoidal Functions 6.4 Time Shift and Phase Shift 6.5 Combinations of Periodic Functions 6.6 The Average and Effective (RMS) Values 6.7 Nonperiodic Functions 6.8 The Unit Step Function 6.9 The Unit Impulse Function 6.10 The Exponential Function 6.11 Damped Sinusoids 6.12 Random Signals
101 101 103 103 106 107 108 109 110 112 114 115
First-Order Circuits
7.1 Introduction 7.2 Capacitor Discharge in a Resistor 7.3 Establishing a DC Voltage Across a Capacitor 7.4 The Source-Free RL Circuit 7.5 Establishing a DC Current in an Inductor 7.6 The Exponential Function Revisited 7.7 Complex First-Order RL and RC Circuits 7.8 DC Steady State in Inductors and Capacitors 7.9 Transitions at Switching Time 7.10 Response of First-Order Circuits to a Pulse 7.11 Impulse Response of RC and RL Circuits 7.12 Summary of Step and Impulse Responses in RC and RL Circuits 7.13 Response of RC and RL Circuits to Sudden Exponential Excitations 7.14 Response of RC and RL Circuits to Sudden Sinusoidal Excitations 7.15 Summary of Forced Response in First-Order Circuits 7.16 First-Order Active Circuits
127 127 129 130 132 132 134 136 136 139 140 141 141 143 143 143
Higher-Order Circuits and Complex Frequency
8.1 Introduction
Contents
8.2 Series RLC Circuit 8.3 Parallel RLC Circuit 8.4 Two-Mesh Circuit 8.5 Complex Frequency 8.6 Generalized Impedance R; L; C in s-Domain 8.7 Network Function and Pole-Zero Plots 8.8 The Forced Response 8.9 The Natural Response 8.10 Magnitude and Frequency Scaling 8.11 Higher-Order Active Circuits
161 164 167 168 169 170 172 173 174 175
Sinusoidal Steady-State Circuit Analysis
9.1 9.2 9.3 9.4 9.5 9.6 9.7 9.8 9.9 Introduction Element Responses Phasors Impedance and Admittance Voltage and Current Division in the Frequency Domain The Mesh Current Method The Node Voltage Method Thevenin s and Norton s Theorems Superposition of AC Sources
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AC Power
10.1 Power in the Time Domain 10.2 Power in Sinusoudal Steady State 10.3 Average or Real Power 10.4 Reactive Power 10.5 Summary of AC Power in R, L, and C 10.6 Exchange of Energy Between an Inductor and a Capacitor 10.7 Complex Power, Apparent Power, and Power Triangle 10.8 Parallel-Connected Networks 10.9 Power Factor Improvement 10.10 Maximum Power Transfer 10.11 Superposition of Average Powers
219 220 221 223 223 224 226 230 231 233 234
Polyphase Circuits
11.1 Introduction 11.2 Two-Phase Systems 11.3 Three-Phase Systems 11.4 Wye and Delta Systems 11.5 Phasor Voltages 11.6 Balanced Delta-Connected Load 11.7 Balanced Four-Wire, Wye-Connected Load 11.8 Equivalent Y and -Connections 11.9 Single-Line Equivalent Circuit for Balanced Three-Phase Loads 11.10 Unbalanced Delta-Connected Load 11.11 Unbalanced Wye-Connected Load 11.12 Three-Phase Power 11.13 Power Measurement and the Two-Wattmeter Method
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