Fundamentals of Circuit Analysis, Middle Volume

Author: Li Hansun
Publisher:
Publish Date: 1999-06-01
Features: This book, awarded the National Excellent Teaching Material Award, retains the original system structure and style while making adjustments to some content based on teaching needs. The book consists of fifteen chapters and two appendices, published in three volumes: Upper, Middle, and Lower.
The Upper Volume covers resistive circuit analysis, including the constraints of voltage and current in lumped circuits, analysis methods using independent current and voltage variables, an overview of large-scale circuit analysis methods, decomposition methods, and single-port networks, as well as the analysis of simple nonlinear resistive circuits.
The Middle Volume focuses on dynamic circuit analysis, covering capacitor and inductor elements, first-order circuits, second-order circuits, the application of impulse functions in dynamic circuit analysis, and AC dynamic circuits.
The Lower Volume is dedicated to sinusoidal steady-state analysis, including impedance and admittance, energy and power in sinusoidal steady state, three-phase circuits, frequency response, coupled inductors, ideal transformers, and two-port networks.
Additionally, there are two appendices: the application of Laplace transforms in circuit analysis and magnetic circuits. Accompanying the main text are numerous examples, thought-provoking questions, exercises, and problems, with answers to some problems provided at the end of the book.
This book can serve as a textbook for foundational circuit analysis courses in electronic, communication, and automation-related disciplines, as well as a reference for relevant technical professionals.
This book introduces the fundamentals of circuit analysis.
This book introduces the fundamentals of circuit analysis.

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