Docsity
Docsity

Prepare for your exams
Prepare for your exams

Study with the several resources on Docsity


Earn points to download
Earn points to download

Earn points by helping other students or get them with a premium plan


Guidelines and tips
Guidelines and tips

Course Outline-Electromagnetic Theory-Handout, Exercises of Digital Signal Processing

This is overview for Electromagnetic Theory course by Ashwin Subramaniam at Alagappa University. It includes: Course, Outline, Objectives, Static, Electric, Field, Steady, State, Magnetic, Time, Varying, Propagation

Typology: Exercises

2011/2012

Uploaded on 07/11/2012

digant
digant 🇮🇳

4.6

(15)

96 documents

Partial preview of the text

Download Course Outline-Electromagnetic Theory-Handout and more Exercises Digital Signal Processing in PDF only on Docsity! Muhammad Ali Jinnah University, Islamabad Department of Electronic Engineering Course Title: Electromagnetic Fields and Waves Course Code: EE 3513 Pre-requisite(s): Applied Differential Equations Credit Hours: 3 Text Book: Title: Engineering Electromagnetics Authors: William Hayt and Buck Publisher: McGraw Hill Ed: 7th Ref. Book(s): Digital Signal Processing by Paul A Lynn Digital Signal Processing by Emmauel C. Ifeachor and Barrie W. Jervis Course Objectives: • The goal of this course is to prepare the student to move into the profession with a rigorous formulation of electromagnetic fields in hand. • Students can apply fundamental electromagnetic theory to solution of practical problems • Students understand the fundamentals of Electrostatics. • Students understand the fundamentals of Magnetostatics. • Students understand the characteristics of materials and their interactions with electric and magnetic fields. • Students recognize Maxwell’s equations. • Students understand electromagnetic wave concepts, regarding propagation characterisitics, polarization, reflection, etc. Course Contents: 1. Review of Vectors and Coordinate Systems 2. Static Electric Field • Coulomb’s law and Electric Field • Gauss’ law and Divergence of Electric Flux Density • Work, Potential, Potential Gradient and Energy in Electrostatic Field • Current and Current Density, Conductor, Dielectrics, Boundary Conditions, Capacitance • Laplace’s and Poisson’s Equations Docsity.com
Docsity logo



Copyright © 2024 Ladybird Srl - Via Leonardo da Vinci 16, 10126, Torino, Italy - VAT 10816460017 - All rights reserved