Circuit Principles

Author: Fan Chengzhi
Publisher:
Publish Date: 2004-08-01
Features: The book is divided into twelve chapters, covering fundamental concepts and laws of DC circuits, basic calculation methods and theorems of networks, AC circuits, resonance, mutual inductance, and three-phase AC circuits, two-port networks, non-sinusoidal circuit analysis, matrix equations of networks, classical solutions of transient processes, Laplace transforms, convolution integrals, and state equations, nonlinear circuits, distributed parameter circuits, and circuit calculations using MATLAB. Each chapter includes exercises, and answers to the exercises are provided at the end of the book. This book can be used as a textbook for undergraduate students in electrical engineering disciplines of universities, as well as a reference for senior undergraduate students, graduate students, and teachers in non-electrical engineering disciplines. It is a national-level planning textbook for general higher education under the "Fifteenth Five-Year Plan," and its content aligns with the "Teaching Syllabus for Circuit Principles" formulated by the "Circuit, Signal Systems, and Electromagnetic Fields Teaching Guidance Group" of the Ministry of Education. Focusing on broadening the professional scope of electrical and information engineering students, the book aims to meet the common needs of both strong and weak electrical engineering disciplines. The book comprehensively introduces classical circuit theory knowledge and relevant modern circuit theory content, emphasizing seamless integration with subsequent courses while showcasing practical applications of circuits. The main contents of the book include: Circuit Overview; Basic Methods and Theorems of Circuit Analysis; Sinusoidal AC Circuits; Resonance, Mutual Inductance, and Three-Phase AC Circuits; Two-Port Networks; Analysis of Non-Sinusoidal Periodic Circuits; Network Matrix Equations; Classical Solutions of Transient Processes; Laplace Transforms, Integration Methods, and State Variable Methods; Distributed Parameter Circuits; Nonlinear Circuits; Introduction to Filter Design. This book is suitable for faculty and students in electrical and information engineering disciplines (strong and weak electrical) of universities, as well as for senior undergraduate students, graduate students, and teachers in related engineering disciplines.

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