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Electrodynamics: The Field-Free Approach [electronic resource] : Electrostatics, Magnetism, Induction, Relativity and Field Theory / by Kjell Prytz.

By: Contributor(s): Series: Undergraduate Lecture Notes in PhysicsPublisher: Cham : Springer International Publishing : Imprint: Springer, 2015Description: XXV, 361 p. 204 illus., 4 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783319131719
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 535.2 23
  • 537.6 23
LOC classification:
  • QC350-467
  • QC630-648
Online resources:
Contents:
Preface -- List of Symbols -- Formulae -- Basic Principles -- Electrodynamic Force -- Electrodynamic Energy -- Macroscopic Systems -- Conductors and Resistive Effects -- Electric Circuits -- Electric and Magnetic Dipoles -- Material Properties -- Motional Consequences -- Field Theory -- Antenna Theory – the Loop and the Dipole -- Appendix A Electric Multipoles -- Appendix B Magnetic Multipoles -- Appendix C Magnetic Energy in the Presence of a Material -- Appendix D Solutions to Exercises -- Appendix E General Magnetic Force Formulae -- Index.
In: Springer eBooksSummary: This book is intended as an undergraduate textbook in electrodynamics at basic or advanced level. The objective is to attain a general understanding of the electrodynamic theory and its basic experiments and phenomena in order to form a foundation for further studies in the engineering sciences as well as in modern quantum physics. The outline of the book is obtained from the following principles: •         Base the theory on the concept of force and mutual interaction •         Connect the theory to experiments and observations accessible to the student •         Treat the electric, magnetic and inductive phenomena cohesively with respect to force, energy, dipoles and material •         Present electrodynamics using the same principles as in the preceding mechanics course •         Aim at explaining that theory of relativity is based on the magnetic effect •         Introduce field theory after the basic phenomena have been explored in terms of force Although electrodynamics is described in this book from its 1st principles, prior knowledge of about one semester of university studies in mathematics and physics is required, including vector algebra, integral and differential calculus as well as a course in mechanics, treating Newton’s laws and the energy principle. The target groups are physics and engineering students, as well as professionals in the field, such as high school teachers and employees in the telecom industry. Chemistry and computer science students may also benefit from the book.
Item type: eBooks
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Preface -- List of Symbols -- Formulae -- Basic Principles -- Electrodynamic Force -- Electrodynamic Energy -- Macroscopic Systems -- Conductors and Resistive Effects -- Electric Circuits -- Electric and Magnetic Dipoles -- Material Properties -- Motional Consequences -- Field Theory -- Antenna Theory – the Loop and the Dipole -- Appendix A Electric Multipoles -- Appendix B Magnetic Multipoles -- Appendix C Magnetic Energy in the Presence of a Material -- Appendix D Solutions to Exercises -- Appendix E General Magnetic Force Formulae -- Index.

This book is intended as an undergraduate textbook in electrodynamics at basic or advanced level. The objective is to attain a general understanding of the electrodynamic theory and its basic experiments and phenomena in order to form a foundation for further studies in the engineering sciences as well as in modern quantum physics. The outline of the book is obtained from the following principles: •         Base the theory on the concept of force and mutual interaction •         Connect the theory to experiments and observations accessible to the student •         Treat the electric, magnetic and inductive phenomena cohesively with respect to force, energy, dipoles and material •         Present electrodynamics using the same principles as in the preceding mechanics course •         Aim at explaining that theory of relativity is based on the magnetic effect •         Introduce field theory after the basic phenomena have been explored in terms of force Although electrodynamics is described in this book from its 1st principles, prior knowledge of about one semester of university studies in mathematics and physics is required, including vector algebra, integral and differential calculus as well as a course in mechanics, treating Newton’s laws and the energy principle. The target groups are physics and engineering students, as well as professionals in the field, such as high school teachers and employees in the telecom industry. Chemistry and computer science students may also benefit from the book.

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