EMÜ692 - SPECIAL PROBLEMS IN INDUSTRIAL ENGINEERING

Course Name Code Semester Theory
(hours/week)
Application
(hours/week)
Credit ECTS
SPECIAL PROBLEMS IN INDUSTRIAL ENGINEERING EMÜ692 Any Semester/Year 3 0 3 10
Prequisites
Course languageTurkish
Course typeElective 
Mode of DeliveryFace-to-Face 
Learning and teaching strategiesLecture
Question and Answer
Problem Solving
Project Design/Management
Other: Lecture, question and answer, problem solving, project and case studies, individual work  
Instructor (s)To be determined by the department  
Course objectiveDevelop knowledge of theoretical fundamentals and practical methods of the recent problems of industrial engineering research Develop student?s skills to solve related real-world industrial engineering problems 
Learning outcomes
  1. Identify the related problems on the topic of interest
  2. Develop mathematical models on the problems of interest
  3. Explain and implement methodologies on the problems of interest
Course ContentResearch in various areas of industial engineering (on the topics that the Master of Science course catalogue does not contain) with the intention of solving a practical problem using industrial engineering tools and techniques under the guidance of a faculty member 
ReferencesBooks and research articles that vary according to the problem of interest. 

Course outline weekly

WeeksTopics
Week 1Outline varies according to the problem of interest
Week 2Outline varies according to the problem of interest
Week 3Outline varies according to the problem of interest
Week 4Outline varies according to the problem of interest
Week 5Outline varies according to the problem of interest
Week 6Outline varies according to the problem of interest
Week 7Outline varies according to the problem of interest
Week 8Outline varies according to the problem of interest
Week 9Midterm Exam
Week 10Outline varies according to the problem of interest
Week 11Outline varies according to the problem of interest
Week 12Outline varies according to the problem of interest
Week 13Outline varies according to the problem of interest
Week 14Outline varies according to the problem of interest
Week 15Study for the Final exam
Week 16Final exam

Assesment methods

Course activitiesNumberPercentage
Attendance00
Laboratory00
Application00
Field activities00
Specific practical training00
Assignments510
Presentation00
Project120
Seminar00
Midterms120
Final exam150
Total100
Percentage of semester activities contributing grade succes750
Percentage of final exam contributing grade succes150
Total100

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)13791
Presentation / Seminar Preparation000
Project14242
Homework assignment51050
Midterms (Study duration)13030
Final Exam (Study duration) 14545
Total Workload35137300

Matrix Of The Course Learning Outcomes Versus Program Outcomes

D.9. Key Learning OutcomesContrubition level*
12345
1. Reach the necessary knowledge and methods in engineering within the scope of advanced industrial engineering studies through scientific research and evaluate knowledge and methods and implement them.     X
2. Implement advanced analytical methods and modeling techniques to design processes, products and systems in an innovative and original way and improve them   X 
3. Have the competency to plan, manage and monitor processes, products and systems.  X  
4. Evaluate the data obtained from analysis of the processes, products and systems, complete limited or missing data through scientific methods, develop data driven solution approaches.    X
5. Develop original methods for the efficient integration of the scarce resources such as man, machine, and material, energy, capital and time to the systems and implement these.    X
6. Effectively utilize computer programming languages, computer software, information and communication technology to solve problems in the field of industrial engineering.    X
7. Report and present advanced studies, outcomes/results and the evaluations on the design, analysis, planning, monitoring and improvement of processes, products and systems.    X
8. Are aware of the professional responsibility, describe the technological, economic and environmental effects of the industrial engineering applications, work as an individual independently and as a team member having an understanding of the scientific ethical values, take responsibility and lead the team.   X 
9. Are aware of the up-to-date engineering applications, follow the necessary literature for advanced researches, have the competency to reach knowledge in a foreign language, to quote and implement them.    X

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