ACADEMICS
Course Details

ELE698 - Special Topics

2025-2026 Fall term information
The course is open this term
ELE698 - Special Topics
Program Theoretıcal hours Practical hours Local credit ECTS credit
MS 4 0 0 30
Obligation : Must
Prerequisite courses : -
Concurrent courses : -
Delivery modes : Face-to-Face
Learning and teaching strategies : Other: Thesis Work
Course objective : To prepare a thesis
Learning outcomes : To gain the capability to prepare a thesis at the masters level
Course content : Thesis work
References : Related literature
Course Outline Weekly
Weeks Topics
1 Thesis work
2 Thesis work
3 Thesis work
4 Thesis work
5 Thesis work
6 Thesis work
7 Thesis work
8 Thesis work
9 Thesis work
10 Thesis work
11 Thesis work
12 Thesis work
13 Thesis work
14 Thesis work
15 Final Exam
16 Final Exam
Assessment Methods
Course activities Number Percentage
Attendance 0 0
Laboratory 0 0
Application 0 0
Field activities 0 0
Specific practical training 0 0
Assignments 0 0
Presentation 0 0
Project 0 0
Seminar 0 0
Quiz 0 0
Midterms 0 0
Final exam 1 100
Total 100
Percentage of semester activities contributing grade success 0
Percentage of final exam contributing grade success 100
Total 100
Workload and ECTS Calculation
Course activities Number Duration (hours) Total workload
Course Duration 14 4 56
Laboratory 0 0 0
Application 0 0 0
Specific practical training 0 0 0
Field activities 0 0 0
Study Hours Out of Class (Preliminary work, reinforcement, etc.) 14 50 700
Presentation / Seminar Preparation 0 0 0
Project 0 0 0
Homework assignment 0 0 0
Quiz 0 0 0
Midterms (Study duration) 0 0 0
Final Exam (Study duration) 0 0 0
Total workload 28 54 756
Matrix Of The Course Learning Outcomes Versus Program Outcomes
Key learning outcomes Contribution level
1 2 3 4 5
1. Has general and detailed knowledge in certain areas of Electrical and Electronics Engineering in addition to the required fundamental knowledge.
2. Solves complex engineering problems which require high level of analysis and synthesis skills using theoretical and experimental knowledge in mathematics, sciences and Electrical and Electronics Engineering.
3. Follows and interprets scientific literature and uses them efficiently for the solution of engineering problems.
4. Designs and runs research projects, analyzes and interprets the results.
5. Designs, plans, and manages high level research projects; leads multidiciplinary projects.
6. Produces novel solutions for problems.
7. Can analyze and interpret complex or missing data and use this skill in multidiciplinary projects.
8. Follows technological developments, improves him/herself , easily adapts to new conditions.
9. Is aware of ethical, social and environmental impacts of his/her work.
10. Can present his/her ideas and works in written and oral form effectively; uses English effectively.
1: Lowest, 2: Low, 3: Average, 4: High, 5: Highest