Course Description |
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Course Name |
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Thesis Work |
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Course Code |
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YLJMT-302 |
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Course Type |
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Compulsory |
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Level of Course |
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Second Cycle |
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Year of Study |
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2 |
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Course Semester |
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Spring (16 Weeks) |
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ECTS |
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24 |
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Name of Lecturer(s) |
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Prof.Dr. OSMAN PARLAK Prof.Dr. ATİKE NAZİK Prof.Dr. ÜMİT ŞAFAK Prof.Dr. ULVİCAN ÜNLÜGENÇ Prof.Dr. ŞAZİYE BOZDAĞ Prof.Dr. HASAN ÇETİN Instructor HATİCE KARAKILÇIK Assoc.Prof.Dr. SEDAT TÜRKMEN Asst.Prof.Dr. HAKAN GÜNEYLİ Prof.Dr. NİYAZİ AVŞAR Prof.Dr. KEMAL GÜRBÜZ Asst.Prof.Dr. MUSTAFA AKYILDIZ |
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Learning Outcomes of the Course |
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Knows the ethical guidelines followed in a research.
Solves a specific problem in a scientifically sound, thorough and precise manner in the course of a given period of time. Knows how to deal with te data sets or information gathered to reach a solution for the problem being tackled and how to present the thoughts and findings in a convincing way.
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Mode of Delivery |
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Face-to-Face |
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Prerequisites and Co-Prerequisites |
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None |
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Recommended Optional Programme Components |
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None |
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Aim(s) of Course |
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To enable students with the ability to conduct a research independently in a selected area; to teach how to perform a scientific, ethic, accurate and detailed study for the solution of specific problems in a definite time; to teach how to discuss and publish the findings in a convincing manner.
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Course Contents |
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The Master Thesis consists of a report based on an independent piece of research to be completed following the completion of the thought courses. The thesis is based on a pre-defined set of problems and lead by a supervisor in the same academic unit. The supervision ensures that the student gets advice regarding literature, approaches towards solving the problems being dealt with, the acquisition and treatment of data, and ethical guidelines in research. The final exam consists of the thesis and an oral exam. |
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Language of Instruction |
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Turkish |
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Work Place |
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Classroom at the Department of Geological Engineering |
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Course Outline /Schedule (Weekly) Planned Learning Activities |
| Week | Subject | Student's Preliminary Work | Learning Activities and Teaching Methods |
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1 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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2 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
3 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
4 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
5 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
6 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
7 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
8 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
9 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
10 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
11 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
|
12 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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13 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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14 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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15 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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16/17 |
Studies towards solving the problem being studied for the master´s thesis |
Advisor request |
Face to face training |
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| Contribution of the Course to Key Learning Outcomes |
| # | Key Learning Outcome | Contribution* |
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1 |
Know how to use mathematics, science and engineering knowledge gained at undergraduate level to solve advanced geological engineering problems |
5 |
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2 |
Have the ability to define the problems of geological engineering in advanced level, formulate and solve them |
5 |
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3 |
Have advanced hypothetical and applied knowledge in geological engineering fields |
5 |
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4 |
Have the ability to prepare and evaluate projects in geological engineering |
5 |
|
5 |
Have the ability to evaluate scientific and social values for societies and to transfer them to others at every level |
5 |
|
6 |
Have the ability to do research independently in his/her field as well as in other fields and present the results effectively |
5 |
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7 |
Have the ability to be aware of life-long learning and follow the innovations in his/her field and to be able to use them efficiently |
5 |
|
8 |
Have the ability to work individually, in a team, and in multidisciplinary fields. |
5 |
|
9 |
Have the ability to use modern technologies and computer simulation to develop new projects and solve advanced engineering problems |
5 |
|
10 |
Have the ability to use advanced knowledge in geological engineering field to think systematically and solve problems in multidisciplinary approaches |
5 |
|
11 |
Have ethical responsibility to understand universal and social effects for applications of geological engineering and efficient usage of natural resources |
5 |
| * Contribution levels are between 0 (not) and 5 (maximum). |
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