Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS CreditsLast Updated Date
2EEE579PHYSİCS OF DELECTRIC3+0+03619.06.2026

 
Course Details
Language of Instruction English
Level of Course Unit Master's Degree
Department / Program ELECTRICAL AND ELECTRONICS ENGINEERING
Type of Program Formal Education
Type of Course Unit Elective
Course Delivery Method Face To Face
Objectives of the Course The object of this course is to provide information about the potential of a group of charges, dipoles induced in an applied field, statistical theories of dipole orientation in an applied field, theories relating molecular quantities to the macroscopic ones, the complex permittivity, relaxations, resonance, insulators and wide-gap semiconductors, space-charge limited and injection-controlled conduction, field induced intrinsic conduction, and dielectric strength
Course Content The potential of a group of charges
dipoles induced in an applied field
statistical theories of dipole orientation in an applied field
Theories relating molecular quantities to the macroscopic ones
The complex permittivity, relaxations, resonance.
Insulators and wide-gap semiconductors.
Space-charge limited and injection-controlled conduction.
Field induced intrinsic conduction.
Dielectric strength
Course Methods and Techniques
Prerequisites and co-requisities None
Course Coordinator Prof.Dr. AHMET METE VURAL https://eee.gantep.edu.tr/pages.php?url=akademik-personel-2 mvural@gantep.edu.tr
Name of Lecturers Prof.Dr. UĞUR CEM HASAR
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources Dielectric Materials for Electrical Engineering, Juan Martinez-Vega, 2013, Wiley
Course Notes -
Documents ders kitabı
Assignments ödevler verilebilmektedir.
Exams sınavlar klasik yapılmaktadır.

Course Category
Mathematics and Basic Sciences %70
Engineering %20
Engineering Design %0
Social Sciences %0
Education %0
Science %10
Health %0
Field %0

Planned Learning Activities and Teaching Methods
Activities are given in detail in the section of "Assessment Methods and Criteria" and "Workload Calculation"

Assessment Methods and Criteria
In-Term Studies Quantity Percentage
Mid-terms 2 % 60
Final examination 1 % 40
Total
3
% 100

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Weekly lecture hours 14 3 42
Weekly practical lecture hours 14 3 42
Reading Activities 14 2 28
Midterm and midterm exam preparation 2 20 40
Final exam and preparation for the final exam 1 20 20
Total Work Load   Number of ECTS Credits 6 172

 
Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 To understand dipoles
2 To understand complex permittivity, relaxations, and resonance.
3 To understand insulators and wide-gap semiconductors.
4 To understand dielectric strength

 
Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 The potential of a group of charges The related section from the lectures notes will be read
2 dipoles induced in an applied field The related section from the lectures notes will be read
3 statistical theories of dipole orientation in an applied field The related section from the lectures notes will be read
4 statistical theories of dipole orientation in an applied field The related section from the lectures notes will be read
5 Theories relating molecular quantities to the macroscopic ones The related section from the lectures notes will be read
6 Theories relating molecular quantities to the macroscopic ones The related section from the lectures notes will be read
7 The complex permittivity, relaxations, resonance. The related section from the lectures notes will be read
8 The complex permittivity, relaxations, resonance. The related section from the lectures notes will be read
9 Insulators and wide-gap semiconductors. The related section from the lectures notes will be read
10 Space-charge limited and injection-controlled conduction. The related section from the lectures notes will be read
11 The complex permittivity, relaxations, resonance. The related section from the lectures notes will be read
12 Field induced intrinsic conduction. The related section from the lectures notes will be read
13 Dielectric strength The related section from the lectures notes will be read
14 Dielectric strength The related section from the lectures notes will be read

 
Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4
All 5 4 4 2
C1 4 3 3 1
C2 4 4 3 2
C3 5 3 4 2
C4 5 4 4 2

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  https://obs.gantep.edu.tr/oibs/bologna/progCourseDetails.aspx?curCourse=147978&lang=en