Basic Circuit Theory

Author: Zhang Nianfeng
Publisher:
Publish Date: 2004-02-01
Features: This textbook is designed for undergraduate electrical engineering students taking the Circuit Theory course. Based on the fundamental requirements for circuit course teaching in higher education institutions formulated by the National Electrical Engineering Curriculum Teaching Guidance Committee, the textbook slightly expands the basic content while emphasizing the training of learning methods and thinking approaches, aiming for accuracy, conciseness, and efficiency. The book is divided into 13 chapters. Chapters 1–8 cover basic circuit elements, fundamental laws and theorems, general circuit analysis methods, DC circuits, first-order and second-order circuits, sinusoidal steady-state circuits, three-phase circuits, and non-sinusoidal periodic current circuits. Chapters 9–13 include the analysis of dynamic circuits in the complex frequency domain (Laplace transform method), two-port networks, state equations, switched-capacitor networks, and steady-state analysis of distributed parameter circuits. The total teaching hours can be flexibly adjusted between 90 and 110 hours, or even fewer. This book can also serve as a reference for engineering technicians in fields such as power, electronics, automation, and computer communication.
This textbook is designed for undergraduate electrical engineering students taking the Circuit Theory course. Based on the fundamental requirements for circuit course teaching in higher education institutions formulated by the National Electrical Engineering Curriculum Teaching Guidance Committee, the textbook slightly expands the basic content while emphasizing the training of learning methods and thinking approaches, aiming for accuracy, conciseness, and efficiency. The book is divided into 13 chapters. Chapters 1–8 cover basic circuit elements, fundamental laws and theorems, general circuit analysis methods, DC circuits, first-order and second-order circuits, sinusoidal steady-state circuits, three-phase circuits, and non-sinusoidal periodic current circuits. Chapters 9–13 include the analysis of dynamic circuits in the complex frequency domain (Laplace transform method), two-port networks, state equations, switched-capacitor networks, and steady-state analysis of distributed parameter circuits. The total teaching hours can be flexibly adjusted between 90 and 110 hours, or even fewer. This book can also serve as a reference for engineering technicians in fields such as power, electronics, automation, and computer communication.

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