
- 440 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
A Practical Introduction to Electrical Circuits
About this book
A Practical Introduction to Electrical Circuits represents a fresh approach to the subject which is compact and easy to use, yet offers a comprehensive description of the fundamentals, including Kirchhoff's laws, nodal and mesh analysis, Thevenin and Norton's theorems, and maximum power transfer for both DC and AC circuits, as well as transient analysis of first- and second-order circuits. Advanced topics such as mutual inductance and transformers, operational amplifier circuits, sequential switching, and three-phase systems reinforce the fundamentals. Approximately one hundred solved examples are included within the printed copy. Extra features online include over two hundred additional problems with detailed, step-by-step solutions, and 40 self-service quizzes with solutions and feedback.
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Information
Table of contents
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- Preface
- Author
- Chapter 1 Beginning Concepts and Resistive Circuits
- Chapter 2 Nodal Analysis
- Chapter 3 Operational Amplifier Circuits
- Chapter 4 Mesh Analysis
- Chapter 5 Theveninâs and Nortonâs Theorems
- Chapter 6 First-Order Circuits
- Chapter 7 Second-Order Circuits
- Chapter 8 Sinusoidal Steady-State Analysis
- Chapter 9 Frequency Response
- Appendix A: Resistor Color Code
- Appendix B: Standard Values of 5% Resistors
- Appendix C: Standard Values of 10% Capacitors
- Appendix D: Ceramic Capacitors
- Appendix E: Electrolytic Capacitors
- Appendix F: Complex Numbers
- Appendix G: Cramerâs Method
- Index