Nevşehir Hacı Bektaş Veli University Course Catalogue

Information Of Programmes

INSTITUTE OF SCIENCE / FİZ504 - PHYSICS (MASTER'S DEGREE)

Code: FİZ504 Course Title: ADVANCED ELECTROMAGNETIC THEORY II Theoretical+Practice: 3+0 ECTS: 6
Year/Semester of Study 1 / Spring Semester
Level of Course 2nd Cycle Degree Programme
Type of Course Optional
Department PHYSICS (MASTER'S DEGREE)
Pre-requisities and Co-requisites None
Mode of Delivery Face to Face
Teaching Period 14 Weeks
Name of Lecturer BAYRAM DEVİREN (bayram.deviren@nevsehir.edu.tr)
Name of Lecturer(s)
Language of Instruction Turkish
Work Placement(s) None
Objectives of the Course
Learning the basic principles in electromagnetic theory and understanding advance examples in this field will be teach to get a good concept in electromagnetic interactions and electromagnetic waves.

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

Assessment Methods
Type of Assessment Week Hours Weight(%)
mid-term exam 8 2 40
Other assessment methods
1.Oral Examination
2.Quiz
3.Laboratory exam
4.Presentation
5.Report
6.Workshop
7.Performance Project
8.Term Paper
9.Project
final exam 16 2 60

Student Work Load
Type of Work Weekly Hours Number of Weeks Work Load
Weekly Course Hours (Theoretical+Practice) 3 14 42
Outside Class
       a) Reading 0
       b) Search in internet/Library 3 12 36
       c) Performance Project 0
       d) Prepare a workshop/Presentation/Report 3 12 36
       e) Term paper/Project 0
Oral Examination 0
Quiz 0
Laboratory exam 0
Own study for mid-term exam 4 7 28
mid-term exam 2 1 2
Own study for final exam 5 9 45
final exam 2 1 2
0
0
Total work load; 191