Mechanical Engineering Department Master's Program
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Program Overview
Mechanical Engineering Department Master's Program
The Mechanical Engineering Department Master's Program is designed to provide students with advanced knowledge and skills in mechanical engineering. The program consists of a combination of fundamental science courses, technical electives, and a master's dissertation.
Program Structure
The program is structured into four semesters, with a total of 120 credits required for graduation. The program includes:
- Fundamental Science Courses
- Technical Electives
- Master's Dissertation
Fundamental Science Courses
The following fundamental science courses are mandatory: | Course Code | Course Name | | --- | --- | | ME5012 | Advanced Numerical Methods in Engineers | | ME5231 | Continuum Mechanics I | | ME5541 | Analytical Mechanics | | ME5781 | Plate and Shell Theories |
Students are required to take and succeed in at least one of the above courses.
Technical Electives
A wide range of technical electives are available, including: | Course Code | Course Name | | --- | --- | | ME5011 | Advanced Fluid Mechanics | | ME5031 | Advanced Dynamics | | ME5041 | Advanced System Dynamics and Optimal Control | | ME5051 | Theory of Plasticity | | ME5061 | Advanced Aerodynamics | | ME5071 | Advanced Strength of Materials | | ME5091 | Powder Metallurgy Production Processes | | ME5101 | Fluid Power Control | | ME5121 | Fracture Mechanics | | ME5141 | Fundamentals and Modelling of Turbulent Flows | | ME5151 | Mathematical Plasticity Theory | | ME5171 | Mechanics of Composite Materials | | ME5191 | Numerical Methods in Fluid Mechanics | | ME5201 | Reliability in Machine Design | | ME5241 | Momentum and Mass Transfer | | ME5271 | Combustion and Combustion Technology | | ME5291 | Composite Materials | | ME5301 | Acoustics and Wave Mechanics | | ME5311 | Applied Elasticity | | ME5321 | Co-Generation Power Plants and District Heating Systems | | ME5331 | Absorption Refrigeration Systems | | ME5341 | Advanced Gas Dynamics | | ME5381 | Advanced Thermodynamics | | ME5391 | Introduction to Fluidized Bed Combustion | | ME5401 | Air Pollution and Control Technologies | | ME5411 | Industrial Ventilation | | ME5421 | Tribology | | ME5431 | Numerical Methods in Heat Transfer | | ME5441 | Advanced Energy Conversion Technologies | | ME5461 | Viscous Flow | | ME5481 | Fundamentals and Applications of Fuel Cells | | ME5491 | Additive Manufacturing Technologies | | ME5501 | Mathematical Theory of Elasticity | | ME5511 | Welding Theory and Technologies | | ME5521 | Nonlinear Systems | | ME5581 | Nontraditional Machining Processes | | ME5601 | Design of Control Systems | | ME5611 | Advanced Robotics | | ME5621 | Modeling and Control of Flexible Manufacturing Systems | | ME5631 | Heat Transfer with Radiation | | ME5641 | Convective Heat Transfer | | ME5671 | Heat Treatment | | ME5691 | Computer Integrated Manufacturing | | ME5751 | Random Vibrations | | ME5761 | Vibrations of Continuous Systems | | ME5771 | Advanced Machine Vibrations | | ME5851 | Reactive Flows | | ME5951 | Applied Computational Fluid Dynamics | | ME5961 | Conduction Heat Transfer |
Master's Dissertation
The master's dissertation is a mandatory component of the program, with 30 credits allocated to it in the third and fourth semesters.
Course Schedule
The course schedule is as follows: 1st Semester:
- Must Course: Scientific Research Methods and Ethics (6 credits)
- Technical Elective 1 (8 credits)
- Technical Elective 2 (8 credits)
2nd Semester:
- Preparation of M.Sc. Dissertation (5 credits)
- Technical Elective 3 (8 credits)
- Technical Elective 4 (8 credits)
- Technical Elective 5 (8 credits)
- M.Sc. Seminar (5 credits)
3rd Semester:
- M.Sc. Dissertation Study (30 credits)
4th Semester:
- M.Sc. Dissertation Study (30 credits)
The categorical sum of the program is:
- Fundamental Science Courses: 0 credits
- Must Courses: 78 credits
- Technical Electives: 40 credits
- Others: 6 credits
The required credits for graduation are 120 ECTS.
