Electromagnetic Fields and Waves
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PREFACE & INTRO
CONTENTS
CHAPTERS
Chapter I: Transient and Harmonic Analysis of Linear Systems
Chapter Overview
Lesson I 1
Chapter II: Transmission Lines - Wave Equations
Chapter Overview
Lesson II 1
Lesson II 2
Lesson II 3
Lesson II 4
Lesson II 5
Lesson II 6
Lesson II 7
Lesson II 8
Lesson II 9
Lesson II 10
Chapter III: Transition to Static Electromagnetics
Chapter Overview
Lesson III 1
Lesson III 2
Chapter IV: Electrostatic Fields – The Electric Flux and Gauss’ Law
Chapter Overview
Lesson IV 1
Lesson IV 2
Lesson IV 3
Chapter V - Electric Force, Field, Energy, and Potential
Chapter Overview
Lesson V 1
Lesson V 2
Lesson V 3
Lesson V 4
Chapter VI - Materials: Conductors and Dielectrics
Chapter Overview
Lesson VI 1
Lesson VI 2
Lesson VI 3
Lesson VI 4
Chapter VII - Poisson's and Laplace's Equations - Uniqueness Theorem - Graphical and Numerical Solutions
Chapter Overview
Lesson VII 1
Lesson VII 2
Lesson VII 3
Chapter VIII - Magnetic Fields and Flux
Chapter Overview
Lesson VIII 1
Lesson VIII 2
Lesson VIII 3
Lesson VIII 4
Chapter IX - Magnetic Materials, Magnetic Circuits, and Inducatnce
Chapter Overview
Lesson IX 1
Lesson IX 2
Lesson IX 3
Lesson IX 4
Chapter X - Time-Varying Fields - Faraday's Law
Chapter Overview
Lesson X 1
Lesson X 2
Lesson X 3
Chapter XI - Wave Propagation
Chapter Overview
Lesson XI 1
Lesson XI 2
Lesson XI 3
Lesson XI 4
Chapter XII - Wave Polarization and Propagation in Multiple Layers
Chapter Overview
Lesson XII 1
Lesson XII 2
Lesson XII 3
Lesson XII 4
Chapter XIII - Waveguides
Chapter Overview
Lesson XIII 1
Lesson XIII 2
Lesson XIII 3
Lesson XIII 4
APPENDICES
A: Symbols and Units
B: Constants, Units & Powers of 10
C: Material Prperties
D: Summary of EM Relationships
E: Vector Identities
F:
Book Index
Conclusion
PROBLEMS
Chapter Outcomes
Complete Chapter
Chapter Overview
Lesson X. 1
Lesson X. 2
Lesson X. 3
  Chapter X - Time-Varying Fields – Faraday's law
Chapter Outcomes
Michael Faraday
Complete Chapter
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Chapter Overview
In this chapter:
Introduction
Charge Trajectory in Magnetic Fields
Hall Effect
Faraday's Law
Faraday's Disk
An Example of a moving conductor in a time-varying magnetic field
The Electric Generator
The Transformer
Faraday's Maxwell's Equation
Integral Form
Differential Form
Revisiting Field and Potential Formulae
Revisiting Ampere's law – The Displacement Current
Revisiting Field and Potential Formulae: The Retarded Potentials
Derivation and justifications for the time-varying modifications of the above field and potential relationships.
Summary of Maxwell's Equations
Addendum A
Inductance under Time-Varying Currents
Current-Voltage relationship:
Inductances in series and parallel
Energy stored and power in inductances
Energy stored in magnetic fields