University:

Email Address:

Phone Number:

Fundamentals of Electromagnetic Theory University of Galway - Full Curriculum Program Spring 2022 Semester - Galway

Flight Credit Get a Flight Credit worth up to $350 when you apply with code* by May 6, 2024

Fundamentals of Electromagnetic Theory

Fundamentals of Electromagnetic Theory Course Overview

OVERVIEW

CEA CAPA Partner Institution: University of Galway
Location: Galway, Ireland
Primary Subject Area: Electrical Engineering
Instruction in: English
Course Code: EE232
Transcript Source: Partner Institution
Course Details: Level 200
Recommended Semester Credits: 2.5
Contact Hours: 36

DESCRIPTION

This module is an introductory module in Electromagnetics which covers the following topics:
1. Review of Coordinate systems and vector notation.
2. Electrostatic Concepts: Charge. Coulomb's law and electrostatic forces. Electric field. Field due to point charge. Superposition of charges.
3. Electrostatic Calculations Derivation of field due to line and sheet charges. Calculation of field in more complex charge distributions through integration and superposition. Electric dipoles.
4. Electric Flux and Energy Gauss's Law. Application to field computations in symmetric structures. Divergence theorem. Electric flux and permittivity. Voltage. Conservative fields and gradient. Computation of voltage from field. Computation of field from voltage. Electric energy storage.
5. Capacitance and Dielectrics Capacitance. Calculation of capacitance for simple structures and design of simple capacitors. Stray capacitance and effect on practical circuits. Dielectric materials. Solution of field and capacitance problems involving inhomogeneous dielectrics.
6. Current, Conducting Materials, and Resistance: Current and current density. Continuity equation. Perfect conductors, good conductors, and semiconductors. Resistance. Computation of resistance.
7. Magnetic Fields and Forces Magnetic force and magnetic field. Biot Savart Law. Magnetic flux density, magnetic flux, and permeability.
8. Computations with Magnetic Fields Derivation of field due to line and sheet currents. Computation of magnetic field due to more complex current distributions. Ampere?s law with application to symmetric distributions. Computation of current from field. Stoke's theorem.
9. Time Varying Fields and Inductance Faraday?s law. Induced voltage. Effect of induced voltage on electronic circuits and noise pickup. Inductors and inductance. Computation of inductance for simple structures, and design of inductors. Mutual inductance.
10. Magnetic Circuits Magnetic materials, saturation and hysteresis. Analysis of magnetic circuits. Transformer design.
11. Maxwell's Equations Displacement current. Combination of equations studied into Maxwell's equation in point and integral form.

Receive a $350 Flight Credit when you apply by May 06, 2024

Get your flight credit code and access to Passbook in two easy steps. With Passbook, you can track your favorite programs and courses, save flight credits, and watch videos on the destination you're interested in.

Apply Now

Step 1 of 2

Step 2 of 2


*By providing your mobile number, you agree to receive recurring text messages from CEA CAPA Education Abroad notifying you of important program deadlines. Message and data rates may apply.

Privacy Policy   |   Mobile Terms   |   Flight Credit Rules

Your flight credit has been added to your Passbook. Apply now or view your Passbook to begin the next step in your journey.

Speak with an
Admissions Advisor

Schedule an appointment to speak with a study abroad expert.

Book Appointment
LET'S CHAT