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Electromagnetic Theory
28 topics across 5 chapters
Chapter 1
Electrostatics and Magnetostatics
1
Electrostatic Potential and Field Calculations
5 subtopics
2
Electrostatic Potential Due to Point Charges
3
Equipotential Surfaces and Their Properties
4
Potential Energy in Electrostatic Systems
5
Electrostatics of Conductors and Dielectrics
6
Capacitance and Energy Stored in Capacitors
7
Gauss's Law and Its Applications in Electrostatics
8
Magnetic Fields Due to Steady Currents
9
Ampère's Circuital Law and Its Applications
10
Magnetic Materials and Their Properties
11
Energy Stored in Electrostatic and Magnetostatic Fields
6 subtopics
12
Energy Density in Electrostatic Fields
13
Energy Density in Magnetostatic Fields
14
Energy Stored in Capacitors
15
Energy Stored in Inductors
16
Applications of Electrostatic Energy Storage
17
Applications of Magnetostatic Energy Storage
Chapter 2
Maxwell's Equations and Electromagnetic Waves
18
Maxwell's Equations in Differential and Integral Forms
19
Derivation of Electromagnetic Wave Equations from Maxwell's Equations
20
Properties of Electromagnetic Waves: Polarization, Reflection, Refraction, and Transmission
21
Energy and Momentum in Electromagnetic Waves: Poynting Vector and Energy Density
22
Electromagnetic Spectrum: Classification and Applications of Different Wave Types
Chapter 3
Electromagnetic Wave Propagation and Transmission Lines
Chapter 4
Waveguides and Antennas
Chapter 5
Electromagnetic Theory in Relativity