内容简介
PART 1 DC Circuits
Chapter 1 Basic Concepts
1.1 Introduction
1.2 International Systems of Units
1.3 Scientific and Engineering Notation
1.4 ?Scientific Calculators
1.5 Charge and Current
1.6 Voltage
1.7 Powerand Energy
1.8 ?Applications
1.8.1 TV Picture Tube
1.8.2 Electricity Bills
1.9 Summary
Review Questions
Problems
Comprehensive Problems
Chapter 2 Resistance
2.1 Introduction
2.2 Resistance
2.3 Ohmis Law
2.4 Conductance
2.5 Circular Wires
2.6 Typesof Resistors
2.7 Resistor Color Code
2.8 Standard Resistor Values
2 9 Applications:Measurements
2.10 Electrical Safety Precautions
2.10.1 Electric Shock
2.10.2 Precautions
2.11 Summary
Review Questions
Problems
Chapter 3 Power and Energy
3.1 Introduction
3.2 Power and Energy
3.3 Power in Electric Circuits
3.4 Power Sign Convention
3.5 Resistor Power Ratings
3.6 Efficiency
3.7 Fuses,Circuit Breakers,and GFCls
3.8 ?Applications:Wattmeter and Watt-hour Meter
3.8.1 Wattmeter
3.8.2 Watt-hour Meter
3.9 Summary
Review Questions
Problems
Chapter 4 Series Circuits
4.1 Introduction
4.2 Nodes,Branches,and Loops
4.3 Resistors in Series
4.4 Kirchhoff's Voltage Law
4.5 Voltage Sources in Series
4.6 Voltage Dividers
4.7 Ground Connections
4.8 Computer Analysis
4.8.1 PSpice
4.8.2 Multisim
4.9 Applications
4.10 Summary
Review Questions
Problems
Chapter 5 Parallel Circuits
5.1 Introduction
5.2 Parallel Circuits
5.3 Kirchhoff's Current Law
5.4 Current Sources in Parallel
5.5 Resistors in Parallel
5.6 Current Dividers
5.7 Computer Analysis
5.7.1 PSpice
5.7.2 Multisim
5.8 Troubleshooting
5.9 ?Applications
5.10 Summary
Review Questions
Problems
Chapter 6 Series-Parallel Circuits
6.1 Introduction
6.2 Series-Parallel Circuits
6.3 Ladder Networks
6.4 Dependent Sources
6.5 Loading Effects of Instruments
6.6 Computer Analysis
6.6.1 PSpice
6.6.2 Multisim
6.7 ?Application:Wheatstone Bridge
6.8 Summary
Review Questions
Problems
Chapter 7 Methods of Analysis
7.1 Introduction
7 2 Mesh Analysis
7.3 Mesh Analysis with Current Sources
7.4 Nodal Analysis
7.5 Nodal Analysis with Voltage Sources
7 6 ?Mesh and Nodal Analysis by Inspection
7 7 Mesh Versus Nodal Analysis
7.8 ?Wye-Delta Transformations
7.8.1△-to-Y Conversion
7.8.2 Y-to-A Conversion
7 9 Computer Analysis
7.9 1 PSpice
7 9.2 Multisim
7.10 ?Applications:DC Transistor Circuits
7.11 Summary
Review Questions
Problems
Chapter 8 Circuit Theorems
8.1 Introduction
8.2 Linearity Propety
8.3 Superposition
8.4 Source Transformations
8.5 Thevenin's Theorem
8.6 Norton'S Theorem
8.7 Maximum Power Transfer Theorem
8 8 ?Millman's Theorem
8.9 ?Substitution Theorem
8.10 ?Reciprocity Theorem
8.11 Verifying Circuit Theorems with Computers
8.11.1 PSpice
8.11.2Multisim
8.12 ?Application:Source Modeling
8.13 Summary
Review Questions
Problems
Chapter 9 Capacitance
9.1 Introduction
9.2 Capacitors
9.3 Electric Fields
9.4 Types of Capacitors
9 5 Series and Parallel Capacitors
9.6 Current-Voltage Relationship
9.7 Charging and Discharging a Capacitor
9 7.1 Charging Cycle
9.7.2 Discharging Cycle
9.8 Computer Analysis
9.8.1 PSpice
9.8.2 Multisim
9.9 Troubleshooting
9.10 ?Applications
9.10.1 Delay Circuits
9.10.2 Photoflash Unit
9.11 Summary
Review Questions
Problems
Chapter 10 Inductance
10.1 Introduction
10.2 Electromagnetic Induction
10.3 Inductors
10.4 Energy Storage and Steady-State DC
10.5 Types of lnductors
10.6 Series and Parallellnductors
10.7 Transient RL Circuits
10.8 Computer Analysis
10.8.1 PSpice
10.8.2 Multisim
10.9 ?Applications
10.9.1 Relay Circuits
10.9.2 Automobile Ignition Circuits
10.10 Summary
Review Questions
Problems
PART 2 AC Circuits
Chapter 11 AC Voltage and Current
11.1 Introduction
11.2 AC Voltage Generator
11.3 Sinusoids
11.4 Phase Relations
11.5 Average and RMS Values
11.6 Oscilloscopes
11 7 TrueRMSMeters
11.8 Summary
Review Questions
Problems
Chapter 12 Phasors and Impedance
12.1 Introduction
12.2 Phasors and Complex Numbers
12.3 Phasor Relationships for Circuit Elements
12 4 Impedance and Admittance
12.5 Impedance Combinations
12.6 Computer Analysis
12.6.1 MATLAB
12.6.2 PSpice
12.7 ?Applications
12.7.1 Phase-Shifters
12.7.2 AC Bridges
12.8 Summary
Review Questions
Problems
Chapter 13 Sinusoidal Steady-State Analysis
13 1 Introduction
13.2 Mesh Analysis
13.3 Nodal Analysis
13 4 Superposition Theorem
13.5 Source Transformation
13.6 Thevenin and Norton Equivalent Circuits
13.7 Computer Analysis
13.8 Summaty
Review Questions
Problems
Chapter 14 AC Power Analysis
14.1 Introduction
14.2 Instantaneous and Average Power
14.3 Maximum Average Power Transfer
14.4 Apparent Power and Power Factor
14.5 Complex Power
14.6 ?Conservation of AC Power
14.7 Power Factor Correction
14.8 ?Applications
14.8.1 Power Measurement
14.8.2 Electricity Consumption
14.8.3 Power in CPUs
14.9 Summary
Review Questions
Problems
Chapter 15 Resonance
15.1 Introduction
15.2 Series Resonance
15.3 Quality Factor
15.4 Parallel Resonance
15.5 Computer Analysis
15.5.1 PSpice
15.5.2 Multisim
15.6 ?Applications
15.7 Summary
Review Questions
Problems
Chapter 16 Filters and Bode Plots
16.1 Introduction
16.2 The Decibel Scale
16.3 Transfer Function
16.4 Bode Plots
16.5 Filters
16.5.1 Lowpass Filter
16.5.2 Highpass Filter
16.5.3 Bandpass Filter
16.5.4 Bandstop Filter
16.6 Computer Analysis
16.6.1 PSpice
16.6.2 Multisim
16.7 Applications
16.7.1 Touch-Tone Telephone
16.7.2 Crossover Network
16.8 Summary
Review Questions
Problems
Chapter 17 Three-Phase Circuits
17.1 Introduction
17.2 Three-Phase Generator
17.3 Balanced Three-Phase Voltages
17.4 Balanced Wye-Wye Connection
17.5 Balanced Wye-Delta Connection
17.6 Balanced Delta-Delta Connection
17.7 Balanced Deita-Wye Connection
17.8 Power in a Balanced System
17.9 ?Unbalanced Three-Phase Systems
17.10 Computer Analysis
17.11 ?Applications
17.11.1 Three-Phase Power Measurement
17.11.2 Residential Electrical Wiring
17.12 Summary
Review Questions
Problems
Chapter 18 Transformers and Coupled Circuits
18.1 Introduction
18.2 Mutual Inductance
18.3 Energy in a Coupled Circuit
18.4 Linear Transformers
18.5 ldeal Transfomers
18.6 Ideal Autotransformers
18.7 Computer Analysis
18.8 ?Applications
18.8.1 Transformers as Isolation Devices
18.8.2 Transformers as Matching Devices
18.8.3 Power Distribution
18.9 Summary
Review Questions
Problems
Chapter 19 Two-Port Networks
19.1 Introduction
19.2 Impedance Parameters
19.3 Admittance Parameters
19.4 Hybrid Parameters
19.5 ?Relationships Between Parameters
19.6 Interconnection of Networks
19.7 Computer Analysis
19.8 ?Applications
19.9 Summary
Review Questions
Problems