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Ewald F. Fuchs,Heidi A. Fuchs

Introduction to Energy, Renewable Energy and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students

Introduction to Energy, Renewable Energy and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students

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  • More about Introduction to Energy, Renewable Energy and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students


Introduction to Energy,Renewable Energy,and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students is a comprehensive textbook that covers Carnot's laws of thermodynamics, Coulomb's law, electric circuit theory, and semiconductor technology. It is designed for undergraduate students and non-electrical engineering professionals with knowledge of Calculus III, providing a practical and comprehensive overview of the subject.

Format: Hardback
Length: 784 pages
Publication date: 25 February 2021
Publisher: John Wiley and Sons Ltd


A comprehensive resource for beginner students and professionals alike, Introduction to Energy, Renewable Energy, and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students offers a thorough exploration of the fundamental principles of Carnot's laws of thermodynamics, Coulomb's law, electric circuit theory, and semiconductor technology. Designed as an ideal introduction to energy-related fields for undergraduates and non-electrical engineering students, as well as professionals with a foundation in Calculus III, this book seamlessly blends foundational concepts with advanced applications, providing readers with a practical and comprehensive understanding of the subject.

The book is organized into five chapters, each dedicated to a specific aspect of energy, renewable energy, and electrical engineering. In the first chapter, the authors provide a comprehensive overview of Carnot's laws, covering topics such as the first law, the second law, and the efficiency of heat engines. They also introduce the concept of entropy and explain how it relates to the efficiency of energy conversion processes.

The second chapter delves into Coulomb's law, which governs the electric force between charged particles. The authors explain how electric charges are distributed in matter and how they interact with each other, leading to the formation of electric fields and electric currents. They also discuss the concept of capacitance and inductance and their role in electric circuits.

In the third chapter, the authors explore electric circuit theory, covering topics such as voltage, current, resistance, and power. They introduce the concept of Ohm's law and discuss how it relates to the behavior of electric circuits. The chapter also includes examples of simple electric circuits, such as series and parallel circuits, and their analysis using Kirchhoff's laws.

The fourth chapter focuses on semiconductor technology, which plays a crucial role in modern electronics and energy conversion systems. The authors discuss the basic principles of semiconductors, such as their structure, properties, and applications in electronic devices. They also explore the concept of doping and how it affects the electrical properties of semiconductors.

The fifth chapter explores the manufacturing of electric energy in power systems with integrated renewable energy sources. The authors discuss the use of three-phase inverters to supply energy to interconnected, smart power systems. They also discuss the connection between energy-related technology and application discussions with urgent issues of energy conservation and renewable energy, such as photovoltaics and ground-water heat pumps, resulting in a zero-emissions dwelling.

Throughout the book, the authors use a combination of analytical and software solutions to relate aspects of electric circuits at an accessible level. They provide detailed descriptions of compensation of flux weakening (CFW) applied to inverter-fed, variable-speed drives, which is not seen anywhere else in the literature. Numerous application examples of solutions using PSPICE, Mathematica, and finite difference/finite element solutions, such as detailed magnetic flux distributions, are also included.

In addition to its technical content, Introduction to Energy, Renewable Energy, and Electrical Engineering emphasizes the importance of connecting the energy-related technology and application discussions with urgent issues of energy conservation and renewable energy. The authors discuss the role of renewable energy sources in reducing greenhouse gas emissions and promoting sustainable development. They also highlight the importance of energy efficiency and the need for innovative solutions to address the challenges of energy supply and demand in the 21st century.

Overall, Introduction to Energy, Renewable Energy, and Electrical Engineering is a comprehensive and engaging resource for beginner students and professionals alike. Its unique combination of foundational concepts and advanced applications, delivered with focused examples, serves to leave the reader with a practical and comprehensive overview of the subject. Whether you are a student pursuing a degree in engineering or a professional looking to expand your knowledge in the field of energy, this book is an invaluable tool for your academic and professional journey.

Weight: 1038g
Dimension: 238 x 236 x 35 (mm)
ISBN-13: 9781119448334

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