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Year/Semester of Study | 1 / Spring Semester | ||||
Level of Course | 2nd Cycle Degree Programme | ||||
Type of Course | Optional | ||||
Department | PHYSICS (MASTER'S DEGREE) | ||||
Pre-requisities and Co-requisites | None | ||||
Mode of Delivery | Face to Face | ||||
Teaching Period | 14 Weeks | ||||
Name of Lecturer | SEZEN AKSÖZ (sezenaksoz@nevsehir.edu.tr) | ||||
Name of Lecturer(s) | |||||
Language of Instruction | Turkish | ||||
Work Placement(s) | None | ||||
Objectives of the Course | |||||
Dielectric properties of materials and applications will be taught. |
Learning Outcomes | PO | MME | |
The students who succeeded in this course: | |||
LO-1 | Understanding the use of dielectric materials |
PO-5 Research, understand, design, adopt and apply an original subject. PO-6 Question, compose, synthesize and evaluate new and complex ideas. |
Examination Presentation Term Paper |
PO: Programme Outcomes MME:Method of measurement & Evaluation |
Course Contents | ||
Electric dipole and multipoles, polarization, and energy, the statistical mechanical theory of dielectric constant, dielectric, physical and mathematical foundations of polar. | ||
Weekly Course Content | ||
Week | Subject | Learning Activities and Teaching Methods |
1 | Electric dipole and multipoles | Explanation, Question- Answer |
2 | Electric dipole and multipoles | Explanation, Question- Answer |
3 | Electric dipole and multipoles | Explanation, Question- Answer |
4 | Polarization and energy | Explanation, Question- Answer |
5 | Polarization and energy | Explanation, Question- Answer |
6 | Polarization and energy | Explanation, Question- Answer |
7 | The statistical mechanical theory of dielectric constant | Explanation, Question- Answer |
8 | mid-term exam | |
9 | The statistical mechanical theory of dielectric constant | Explanation, Question- Answer |
10 | The statistical mechanical theory of dielectric constant | Explanation, Question- Answer |
11 | The statistical mechanical theory of dielectric constant | Explanation, Question- Answer |
12 | Physical and mathematical foundations of polar | Explanation, Question- Answer |
13 | Physical and mathematical foundations of polar | Explanation, Question- Answer |
14 | Physical and mathematical foundations of polar | Explanation, Question- Answer |
15 | Physical and mathematical foundations of polar | Explanation, Question- Answer |
16 | final exam | |
Recommend Course Book / Supplementary Book/Reading | ||
1 | Introduction to Solid State Physics, Charles Kittel, Seventh Edition | |
Required Course instruments and materials | ||
Introduction to Solid State Physics, Charles Kittel, Seventh Edition. |
Assessment Methods | |||
Type of Assessment | Week | Hours | Weight(%) |
mid-term exam | 8 | 2 | 40 |
Other assessment methods | |||
1.Oral Examination | |||
2.Quiz | |||
3.Laboratory exam | |||
4.Presentation | |||
5.Report | |||
6.Workshop | |||
7.Performance Project | |||
8.Term Paper | |||
9.Project | |||
final exam | 16 | 2 | 60 |
Student Work Load | |||
Type of Work | Weekly Hours | Number of Weeks | Work Load |
Weekly Course Hours (Theoretical+Practice) | 3 | 14 | 42 |
Outside Class | |||
a) Reading | 1 | 14 | 14 |
b) Search in internet/Library | 2 | 14 | 28 |
c) Performance Project | 0 | ||
d) Prepare a workshop/Presentation/Report | 2 | 14 | 28 |
e) Term paper/Project | 2 | 14 | 28 |
Oral Examination | 0 | ||
Quiz | 0 | ||
Laboratory exam | 0 | ||
Own study for mid-term exam | 2 | 8 | 16 |
mid-term exam | 2 | 1 | 2 |
Own study for final exam | 2 | 14 | 28 |
final exam | 2 | 1 | 2 |
0 | |||
0 | |||
Total work load; | 188 |