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Engineering
Electrical Engineering
Electromagnetics
1. Foundations of Electromagnetics
2. Electrostatics
3. Magnetostatics
4. Time-Varying Electromagnetic Fields
5. Electromagnetic Wave Propagation
6. Wave Reflection and Transmission
7. Transmission Lines
8. Waveguides and Resonant Structures
9. Antennas and Radiation
10. Advanced Electromagnetic Topics
Time-Varying Electromagnetic Fields
Faraday's Law of Electromagnetic Induction
Electromagnetic Induction Phenomena
Faraday's Experiments
Induced EMF
Mathematical Statement of Faraday's Law
Integral Form
Differential Form
Types of Induced EMF
Transformer EMF
Motional EMF
Lenz's Law
Statement and Physical Meaning
Displacement Current
Inconsistency in Ampere's Law
Capacitor Charging Problem
Maxwell's Displacement Current
Definition and Physical Interpretation
Displacement Current Density
Modified Ampere's Law
Ampere-Maxwell Law
Integral and Differential Forms
Maxwell's Equations
The Complete Set of Maxwell's Equations
Gauss's Law for Electric Fields
Gauss's Law for Magnetic Fields
Faraday's Law
Ampere-Maxwell Law
Integral Form of Maxwell's Equations
Physical Interpretation
Differential Form of Maxwell's Equations
Point Form Equations
Mathematical Relationships
Constitutive Relations
Linear Material Relations
Nonlinear Material Effects
Frequency-Dependent Properties
Boundary Conditions for Time-Varying Fields
General Boundary Conditions
Perfect Conductor Boundaries
Dielectric Boundaries
Conservation Laws
Charge Conservation
Energy Conservation
Momentum Conservation
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5. Electromagnetic Wave Propagation