
Introductory Circuit Analysis
by Robert L. Boylestad, Brian A. Olivari
14th Edition
Publisher: Pearson
Book Details
| Print ISBN | 9780137594115 |
| eText ISBN | 9780137283484 |
| Publisher | Pearson |
| Publishing Year | 2023 |
| Edition | 14th Edition |
| Language | English |
Introductory Circuit Analysis, 14th Edition, provides structured instruction in direct-current and alternating-current circuit analysis. The textbook introduces foundational concepts of voltage, current, resistance, power, and energy before moving into network theorems and passive components.
The volume covers series, parallel, and series-parallel circuit configurations, as well as methods of analysis for both dc and ac systems. Additional topics include capacitors, inductors, magnetic circuits, sinusoidal alternating waveforms, resonance, and polyphase systems.
Review questions at the end of each chapter provide opportunities for practice. For this 2023 edition, the authors also expanded coverage of concepts involving power factor, lead, and lag.
Table of Contents
Chapter 1: Introduction
Chapter 2: Voltage and Current
Chapter 3: Resistance
Chapter 4: Ohm's Law, Power, and Energy
Chapter 5: Series dc Circuits
Chapter 6: Parallel dc Circuits
Chapter 7: Series-Parallel Circuits
Chapter 8: Methods of Analysis and Selected Topics (dc)
Chapter 9: Network Theorems
Chapter 10: Capacitors
Chapter 11: Inductors
Chapter 12: Magnetic Circuits
Chapter 13: Sinusoidal Alternating Waveforms
Chapter 14: The Basic Elements and Phasors
Chapter 15: Series ac Circuits
Chapter 16: Parallel ac Circuits
Chapter 17: Series-Parallel ac Networks
Chapter 18: Methods of Analysis and Selected Topics (ac)
Chapter 19: Network Theorems (ac)
Chapter 20: Power (ac)
Chapter 21: Resonance
Chapter 22: Decibels, Filters, and Bode Plots
Chapter 23: Transformers
Chapter 24: Polyphase Systems
Chapter 25: Pulse Waveforms and the R-C Response
Chapter 26: Nonsinusoidal Circuits
Chapter APPENDICES: APPENDICES
- • 1. Conversion Factors
- • 2. Determinants
- • 3. Greek Alphabet
- • 4. Magnetic Parameter Conversions
- • 5. Maximum Power Transfer Conditions
- • 6. Answers to Selected Odd-Numbered Problems
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