Learning Outcomes |
PO |
MME |
The students who succeeded in this course: |
|
|
LO-1 |
Be able to solve problems involving maxwell’s equatuons, |
PO-3 Obtain new scientific knowledge and gain higher level of skills in field of search
|
Examination |
LO-2 |
Be able to solve problems involving , electromagnetic wave equations. |
PO-3 Obtain new scientific knowledge and gain higher level of skills in field of search
|
Examination |
LO-3 |
Solve the behaviors in different environments of the electromagnetic waves. |
PO-4 Develop a new scientific method in the field or apply a known method to a different problem.
|
Examination |
LO-4 |
Interpret and apply Maxwell equations to the physical and mathematical interpretation. |
PO-2 Comprehend interdisciplinary interactions and relations relevant to physics; analyze, compose, synthesize and evaluate new and complex ideas and to obtain original results by using expertise knowledge of the field
|
Examination |
PO: Programme Outcomes MME:Method of measurement & Evaluation |
Course Contents |
Maxwell’s equatuons, Electromagnetic Wave Equations,Elctrodinamics for Waves, Electromagnatic Waves in Noncunducting Media, Electromagnetic Waves in Conductors |
Weekly Course Content |
Week |
Subject |
Learning Activities and Teaching Methods |
1 |
Introduction to Electrostatics |
Lecture Method, Problem Solving Method |
2 |
Introduction to Electrostatics |
Lecture Method, Problem Solving Method |
3 |
Boundary Value Problems in Electrostatics:1 |
Lecture Method, Problem Solving Method |
4 |
Boundary Value Problems in Electrostatics:2 |
Lecture Method, Problem Solving Method |
5 |
Boundary Value Problems in Electrostatics:2 |
Lecture Method, Problem Solving Method |
6 |
Boundary Value Problems in Electrostatics:2 |
Lecture Method, Problem Solving Method |
7 |
Boundary Value Problems in Electrostatics:2 |
Lecture Method, Problem Solving Method |
8 |
mid-term exam |
|
9 |
Multi-polarity |
Lecture Method, Problem Solving Method |
10 |
Macroscopic Electrostatic Environments |
Lecture Method, Problem Solving Method |
11 |
Macroscopic Electrostatic Environments |
Lecture Method, Problem Solving Method |
12 |
Dielectrics |
Lecture Method, Problem Solving Method |
13 |
Magnetostatic |
Lecture Method, Problem Solving Method |
14 |
Time Varying Fields |
Lecture Method, Problem Solving Method |
15 |
Maxwell's Equations |
Lecture Method, Problem Solving Method |
16 |
final exam |
|
Recommend Course Book / Supplementary Book/Reading |
1 |
G.L. Pollack, D.R. Stump, '' Elektromanyetik Teori'' |
2 |
J.D. Jackson, "Classical Electrodynamics", John & Sons, Inc., |
3 |
D.J. Griffiths, "Elektromagnetik Teori" |
Required Course instruments and materials |
Projection Tool |