Physics
Vertical Tabs
Course Learning Outcomes
Learning Outcomes |
Teaching Methods |
Assessment Methods |
1) Understands oscillations and classical wave theory, their scientific and technological applications. |
1,3 |
B,C |
2) Understands the theory of classical thermodynamics, understand its scientific and technological applications. |
1, 3 |
B,C |
3) has the ability to apply knowledge of physics and mathematics. |
1, 3 |
B,C |
4)can experiment (measurement, research set up etc.), knows design and execution, analyzes and interprets experimental results |
1,3 |
B,C |
5)has ability to work in disciplinary teams. |
1, 3 |
B,C |
6) has ability to define, formulate and solve physical problems. |
1, 3 |
B,C |
7) has ability to use techniques and instruments for physics applications. |
1,3 |
B,C |
Course Flow
Week |
Topics |
Study Materials |
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12 |
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13 |
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14 |
Recommended Sources
Textbook |
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Additional Resources |
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Material Sharing
Documents |
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Assignments |
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Exams |
Assessment
IN-TERM STUDIES |
NUMBER |
PERCENTAGE |
Report |
|
100 |
Total |
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100 |
Total |
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100 |
Course’s Contribution to Program
No |
Program Learning Outcomes |
Contribution |
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1 |
2 |
3 |
4 |
5 |
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1 |
gains the ability to apply the knowledge in physics and mathematics |
X |
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2 |
gains the ability to construct an experimental setup, perform the experiment, analyze and interpret the results |
X |
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3 |
is supposed to have the education required for the measurements in scientific and technological areas |
X |
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4 |
is able to work in an interdisciplinary team |
X |
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5 |
is able to identify, formulate and solve physics problems |
X |
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6 |
is conscious for the professional and ethical responsibility |
X |
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7 |
is able to communicate actively and effectively |
X |
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8 |
is supposed to have the required education for the industrial applications and the social contributions of physics |
X |
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9 |
is conscious about the necessity of lifelong education and can implement it |
X |
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10 |
is supposed to be aware of the current investigations and developments in the field |
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X |
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11 |
makes use of the techniques and the modern equipment required for physical applications. |
X |
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ECTS
Activities |
Quantity |
Duration |
Total Workload |
Course Duration (21 days) |
0 |
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Hours for off-the-classroom study (Pre-study, practice) |
42 |
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Total Work Load/ 25 (s) |
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ECTS Credit of the Course |
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1 |