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Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications - Hardcover

 
9783527346875: Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications

Synopsis

Introduction to Electromagnetic Waves with Maxwell's Equations

Discover an innovative and fresh approach to teaching classical electromagnetics at a foundational level

Introduction to Electromagnetic Waves with Maxwell's Equations delivers an accessible and practical approach to teaching the well-known topics all electromagnetics instructors must include in their syllabus. Based on the author's decades of experience teaching the subject, the book is carefully tuned to be relevant to an audience of engineering students who have already been exposed to the basic curricula of linear algebra and multivariate calculus.

Forming the backbone of the book, Maxwell's equations are developed step-by-step in consecutive chapters, while related electromagnetic phenomena are discussed simultaneously. The author presents accompanying mathematical tools alongside the material provided in the book to assist students with retention and comprehension. The book contains over 100 solved problems and examples with stepwise solutions offered alongside them. An accompanying website provides readers with additional problems and solutions. Readers will also benefit from the inclusion of:

  • A thorough introduction to preliminary concepts in the field, including scalar and vector fields, cartesian coordinate systems, basic vector operations, orthogonal coordinate systems, and electrostatics, magnetostatics, and electromagnetics
  • An exploration of Gauss' Law, including integral forms, differential forms, and boundary conditions
  • A discussion of Ampere's Law, including integral and differential forms and Stoke's Theorem
  • An examination of Faraday's Law, including integral and differential forms and the Lorentz Force Law

Perfect for third- and fourth-year undergraduate students in electrical engineering, mechanical engineering, applied maths, physics, and computer science, Introduction to Electromagnetic Waves with Maxwell's Equations will also earn a place in the libraries of graduate and postgraduate students in any STEM program with applications in electromagnetics.

"synopsis" may belong to another edition of this title.

About the Author

Rajender Boddula, PhD, is Research Fellow in the National Center for Nanoscience and Technology at the Chinese Academy of Sciences. He was formerly Senior Research Associate at the Aligarh Muslim University in India.

Anish Khan, PhD, is Assistant Professor in the Center of Excellence for Advanced Materials Research, King Abdulaziz University, Jeddah -21589, Saudi Arabia. He received his doctorate from Aligarh Muslim University in India.

Abdullah M. Asiri, PhD, is Professor in the Chemistry Department, Center of Excellence for Advanced Materials Research at King Abdulaziz University in Saudi Arabia. He received his PhD from University of Walls College of Cardiff in the United Kingdom.

Aleksandr E. Kolosov is Senior Researcher in the Department of Chemical Engineering of the National Technical University in Ukraine. His research focuses on functional nanomaterials and polymer composites.

From the Back Cover

Discover foundational and cutting-edge concepts in the supercapacitor materials industry

Dramatic population growth and the development of lightweight portable electronic devices have accelerated the demand for faster and more sustainable energy storage systems. Supercapacitors promise to revolutionize the field due to their high energy and power density, long cycle life, fast rate of charge-discharge, and excellent safety record.

In Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications, a distinguished team of researchers delivers a comprehensive review of nature-inspired, organic, inorganic, and polymeric materials used in supercapacitor technology. The book explores aspects of synthesis methods, properties, foundational concepts, and the mechanisms of supercapacitor electrode materials.

The distinguished editors also provide resources that focus on supercapacitor performance utilizing electrical double layer electrodes and pseudocapacitor electrodes. State-of-the-art research is discussed in detail and will be extraordinary useful for graduate students, faculty, engineers, and scientists in solid-state chemistry, energy science, and materials science departments.

Readers will also find:

  • Overviews of mussel-inspired materials for electrochemical supercapacitors, bio-inspired active materials for supercapacitors, and self-healing supercapacitors
  • Practical discussions of polysaccharide-derived materials for supercapacitors, bio-derived carbon-based materials for supercapacitors, and metal oxides
  • A thorough introduction to metal chalcogenides and metal hydroxides for supercapacitors
  • An examination of template strategy direction towards conducting polymer for supercapacitors
  • A treatment of the morphology paradigm of conducting polymers
  • Perfect for materials scientists, electrochemists, engineers in power technology, Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications is also a must-have resource for professionals working in the electrotechnical and automobile industries.

    From the Inside Flap

    Discover foundational and cutting-edge concepts in the supercapacitor materials industry

    Dramatic population growth and the development of lightweight portable electronic devices have accelerated the demand for faster and more sustainable energy storage systems. Supercapacitors promise to revolutionize the field due to their high energy and power density, long cycle life, fast rate of charge-discharge, and excellent safety record.

    In Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications, a distinguished team of researchers delivers a comprehensive review of nature-inspired, organic, inorganic, and polymeric materials used in supercapacitor technology. The book explores aspects of synthesis methods, properties, foundational concepts, and the mechanisms of supercapacitor electrode materials.

    The distinguished editors also provide resources that focus on supercapacitor performance utilizing electrical double layer electrodes and pseudocapacitor electrodes. State-of-the-art research is discussed in detail and will be extraordinary useful for graduate students, faculty, engineers, and scientists in solid-state chemistry, energy science, and materials science departments.

    Readers will also find:

    • Overviews of mussel-inspired materials for electrochemical supercapacitors, bio-inspired active materials for supercapacitors, and self-healing supercapacitors
    • Practical discussions of polysaccharide-derived materials for supercapacitors, bio-derived carbon-based materials for supercapacitors, and metal oxides
    • A thorough introduction to metal chalcogenides and metal hydroxides for supercapacitors
    • An examination of template strategy direction towards conducting polymer for supercapacitors
    • A treatment of the morphology paradigm of conducting polymers

    Perfect for materials scientists, electrochemists, engineers in power technology, Handbook of Supercapacitor Materials: Synthesis, Characterization, and Applications is also a must-have resource for professionals working in the electrotechnical and automobile industries.

    "About this title" may belong to another edition of this title.