Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Graduate School of Sciences
  • Department of Advanced Technologies
  • Energy Technology (Doktora) (Interdisciplinary)
  • Course Structure Diagram with Credits
  • Characterization of Materials Used in Energy Applications
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

Course Introduction Information

Code - Course Title İTE607 - Characterization of Materials Used in Energy Applications
Course Type Elective Courses
Language of Instruction Türkçe
Laboratory + Practice 3+0
ECTS 7.5
Course Instructor(s) DOKTOR ÖĞRETİM ÜYESİ ŞÜKRÜ ARDALI
Mode of Delivery This course is taught face-to-face.
Prerequisites There is no prerequisite or co-requisite for this course.
Courses Recomended Condensed Matter Physics I, Condensed Matter Physics II
Required or Recommended Resources Solid State Physics, J. S. Blakemore, Cambridge University Press, 1998. 2. Introduction to solid State Physics, C. Kittel, Wiley, 2004. 3. Principle of the theory of solids “Electrons and Phonons, J. M. Ziman, 1967. 4. Solid State Theory, W. A. Harrison, 5. Solid State Physics Physics, N.W. Ashcraft, N.D. Mermin. 6. Advances of Solid State Physics Series, F. Seits, D. Tumbul, 7. Semiconductor Research Experimental Techniques, N. Balkan, A. Patane, 8. Semiconductor Material and Device Characterization, D. K. Schroder
Recommended Reading List -
Assessment methods and criteria 1 Midterm, 1 Homework, and Final Exam.
Work Placement This is not appropriate for the course.
Sustainability Development Goals

Content

Weeks Topics
Week - 1 Resistance measurements: Two-point method, Four-point method, Six-point method
Week - 2 Resistance measurements: Two-point method, Four-point method, Six-point method
Week - 3 Resistance measurements: Two-point method, Four-point method, Six-point method
Week - 4 Carrier characteristics
Week - 5 Mobility measurements: Hall mobility, Conductivity Mobility
Week - 6 Mobility measurements: Hall mobility, Conductivity Mobility
Week - 7 Capacitance voltage characteristic
Week - 8 Current-voltage characteristic
Week - 9 Contacts: Ohmic contact, Schottky contact
Week - 10 Contacts: Ohmic contact, Schottky contact
Week - 11 Magnetic field dependent measurements: Magnetoresistance, Magneto-optics
Week - 12 Magnetic field dependent measurements: Magnetoresistance, Magneto-optics
Week - 13 Photoluminescence
Week - 14 Temperature-dependent measurement techniques

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Question & Answer
  • Team/Group Work
  • Problem Solving
  • Brain Storming
  • Proje Design/Management
  • Competences
  • Productive
  • True to core values
  • Rational
  • Questoning
  • Entrepreneur
  • Creative
  • Follow ethical and moral rules
  • Problem solving
  • Concern for quality
  • Elementary computing skills
  • To work in interdisciplinary projects
  • Project Design and Management
  • Leadership

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 30
Homework 1 20
Final Exam 1 50
Toplam (%) 100
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