The textbook on electromagnetic fields covers essential topics like electrostatic boundary value problems, magnetostatic boundary value problems, eddy currents, and electromagnetic compatibility, with practical applications, illustrations, and solved numerical problems. It is aimed at undergraduate and senior undergraduate students of electrical and electronics engineering. Format: Hardback Length: 786 pages Publication date: 12 October 2020 Publisher: Taylor & Francis Ltd The study of electromagnetic field theory is an essential prerequisite for a comprehensive understanding of any device that utilizes electricity for its operation. The proposed textbook on electromagnetic fields aims to provide a comprehensive coverage of both generic and unconventional topics, encompassing a wide range of subjects. These topics include electrostatic boundary value problems involving two- and three-dimensional Laplacian fields and Poissonion fields, magnetostatic boundary value problems,eddy currents, and electromagnetic compatibility.To support the theoretical concepts, the textbook is accompanied by practical applications, illustrations, solved numerical problems, solutions manual, and Powerpoint slides, including appendices and mathematical relations. This textbook is specifically designed for undergraduate and senior undergraduate students of electrical and electronics engineering, providing them with a solid foundation in electromagnetic field theory.In its simplified manner, the textbook presents fundamental concepts of electromagnetic fields, enabling students to grasp these complex concepts with ease. It delves into one-two- and three-dimensional electrostatic boundary value problems involving Laplacian fields and Poissonion fields, providing detailed explanations and examples to facilitate a deeper understanding.Furthermore, the textbook includes exclusive chapters on eddy currents and electromagnetic compatibility, addressing important aspects of electrical and electronic systems that are crucial in modern technology. These chapters offer practical insights and applications, helping students apply the theoretical knowledge to real-world scenarios.In addition to theoretical discussions, the textbook also emphasizes the importance of vector algebra and vector calculus in understanding electromagnetic field theory. It includes comprehensive explanations and examples of these mathematical concepts, enabling students to develop a strong foundation in mathematical analysis.Furthermore, the textbook presents a range of two- and three-dimensional problems, allowing students to apply their knowledge and skills in a practical context. These problems not only reinforce the theoretical understanding but also enhance problem-solving abilities, which are essential for success in the field of electrical and electronics engineering.In conclusion, the proposed textbook on electromagnetic fields is an invaluable resource for undergraduate and senior undergraduate students of electrical and electronics engineering. It provides a comprehensive coverage of electromagnetic field theory, practical applications, illustrations, solved numerical problems, solutions manual, and Powerpoint slides. With its simplified approach, the textbook enables students to grasp the fundamental concepts of electromagnetic fields with ease, while also offering in-depth discussions of advanced topics. By emphasizing vector algebra and vector calculus, the textbook equips students with the necessary mathematical skills to excel in their studies and future careers. Weight: 1294g Dimension: 163 x 242 x 44 (mm) ISBN-13: 9780367494308