FALL 2025
Instructor: | Dr. Ahmed Farghal, Ph.D. Open Door Policy: When my door is open, you are welcome to come in. |
Course Organization: | Lecture: Tuesdays, 11:00 pm – 01:00 pm, @ Lecture Hall 2. 2 hours of tutorial per week Teaching Assistant: Eng. |
| Midterm Exam: | TBD. |
Final Exam: | TBD. |
Required Textbook:
- “Engineering Electromagnetics”, William H. Hayt, and John A. Buck, McGraw-Hill, 8th Edition, 2012.
Optional Reading:
Course Topics:
- Vector Analysis
- Coulomb’s Law and Electric Field Intensity
- Electric Flux Density, Gauss’ Law, & Divergence
- Energy and Potential
- Current & Conductors
- Dielectrics & Capacitance
- The Steady Magnetic Field
- Magnetic Forces, Materials, and Inductance
- Time-Varying Fields and Maxwell’s Equations
Handouts: Fall 2025
Handouts are available as Adobe PDF files through the links below:
- Lecture 1: Vector Analysis. (Video Part1) (Video Part2)
- Lecture 2: Coulomb’s Law and Electric Field Intensity. (Video)
- Lecture 3: Steady Magnetic Field I. (Video Part2)(Solenoid and Toroid)
- Lecture 4: Electric Flux Density and Gauss’s Law (Video1) (Video2) (Video3)
- Lecture 5: Steady Magnetic Field II (Magnetic Forces and Torque video)
- Lecture 6: Energy and Potential I. (Video)
- Lecture 7: Energy and Potential II. (Video)
- Lecture 8: Magnetic Materials and Inductance. (Magnetic Materials)(Magnetic Boundary Conditions)(Inductance)
- Lecture 9: Current, Conductors, and Dielectrics. (Video1) (Video2)
- Lecture 10: Time-Varying Fields and Maxwell’s Equations.
Handouts: Summer 2025 (Old Material)
The handouts are available as Adobe PDF files through the links below.
- Lecture 1: Vector Analysis. (Video Part1) (Video Part2)
- Lecture 2: Coulomb’s Law and Electric Field Intensity. (Video)
- Lecture 3: Steady Magnetic Field I. (Video Part2)
- Lecture 4: Electric Flux Density and Gauss’s Law (Video Part1) (Video Part2)
- Lecture 5: Gauss’s Law, and Divergence. (Video)
- Lecture 6: Steady Magnetic Field II.
- Lecture 7: Steady Magnetic Field III.
- Lecture 8: Energy and Potential I. (Video)
- Lecture 9: Energy and Potential II. (Video)
- Lecture 10: Current, Conductors, and Dielectrics. (Video1) (Video2)
- Lecture 11: Capacitance and Laplace’s Equation. (Video1) (Video2)
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