ACADEMICS
Course Detail

ELE 639 Special Topics in Communications
2016-2017 Summer term information

The course is not open this term

Timing data are obtained using weekly schedule program tables. To make sure whether the course is cancelled or time-shifted for a specific week one should consult the supervisor and/or follow the announcements.

Course definition tables are extracted from the ECTS Course Catalog web site of Hacettepe University (http://ects.hacettepe.edu.tr) in real-time and displayed here. Please check the appropriate page on the original site against any technical problems.

ELE639 - SPECIAL TOPICS IN COMMUNICATIONS

Course Name Code Semester Theory
(hours/week)
Application
(hours/week)
Credit ECTS
SPECIAL TOPICS IN COMMUNICATIONS ELE639 Any Semester/Year 3 0 3 8
Prerequisite(s)
Course languageTurkish
Course typeElective 
Mode of DeliveryFace-to-Face 
Learning and teaching strategiesLecture
Question and Answer
Problem Solving
 
Instructor (s)Department Faculty  
Course objectiveTeaching the up-to-date topics in the Communications Field of Electrical and Electronics Engineering to the postgraduate level students. 
Learning outcomes
  1. A student who completes the course successfully L.O.1. is aware of the up-to-date advances in the Communications Field of Electrical and Electronics Engineering,
  2. L.O.2. understands and follows the up-to-date literature in this field, discusses his/her learnings, learns and develops method, algorithm etc. related to this topic,
  3. L.O.3. If necessary performs literature search about this topic, represents his/her findings and develops a project.
Course ContentContent of the course is determined by the member of faculty in charge. 
ReferencesDetermined by the member of faculty in charge. 

Course outline weekly

WeeksTopics
Week 1Determined by the member of faculty in charge
Week 2Determined by the member of faculty in charge
Week 3Determined by the member of faculty in charge
Week 4Determined by the member of faculty in charge
Week 5Determined by the member of faculty in charge
Week 6Determined by the member of faculty in charge
Week 7Determined by the member of faculty in charge
Week 8Determined by the member of faculty in charge
Week 9Determined by the member of faculty in charge
Week 10Determined by the member of faculty in charge
Week 11Determined by the member of faculty in charge
Week 12Determined by the member of faculty in charge
Week 13Determined by the member of faculty in charge
Week 14Determined by the member of faculty in charge
Week 15Preparation to Final exam
Week 16Final exam

Assesment methods

Course activitiesNumberPercentage
Attendance
Laboratory
Application
Field activities
Specific practical training
Assignments
Presentation
Project
Seminar
Midterms
Final exam
Total
Percentage of semester activities contributing grade succes
Percentage of final exam contributing grade succes
Total

Workload and ECTS calculation

Activities Number Duration (hour) Total Work Load
Course Duration (x14) 14 3 42
Laboratory 0 0 0
Application000
Specific practical training000
Field activities000
Study Hours Out of Class (Preliminary work, reinforcement, ect)000
Presentation / Seminar Preparation000
Project000
Homework assignment000
Midterms (Study duration)000
Final Exam (Study duration) 000
Total Workload14342

Matrix Of The Course Learning Outcomes Versus Program Outcomes

D.9. Key Learning OutcomesContrubition level*
12345
1. Has general and detailed knowledge in certain areas of Electrical and Electronics Engineering in addition to the required fundamental knowledge.    X
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.    X
3. Follows and interprets scientific literature and uses them efficiently for the solution of engineering problems.    X
4. Designs and runs research projects, analyzes and interprets the results.    X
5. Designs, plans, and manages high level research projects; leads multidiciplinary projects.    X
6. Produces novel solutions for problems.    X
7. Can analyze and interpret complex or missing data and use this skill in multidiciplinary projects.    X
8. Follows technological developments, improves him/herself , easily adapts to new conditions.     X
9. Is aware of ethical, social and environmental impacts of his/her work.    X
10. Can present his/her ideas and works in written and oral form effectively; uses English effectively    X

*1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest

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