CANKIRI KARATEKIN UNIVERSITY Bologna Information System


  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Semiconductor Physics FİZ532 FALL-SPRING 3+0 E 6
    Learning Outcomes
    1-Determines the crystal structures of semiconductors and classifies them according to their technological usage areas.
    2-Explains the similarities and differences between conductors, semiconductors and insulators.
    3-Interprets band structures of semiconductors according to quantum theory.
    4-Defines doped and undoped semiconductors.
    5-Explains the working principles of pn junctions and diodes.
  • ECTS / WORKLOAD
  • ActivityPercentage

    (100)

    NumberTime (Hours)Total Workload (hours)
    Course Duration (Weeks x Course Hours)14342
    Classroom study (Pre-study, practice)14342
    Assignments1011010
    Short-Term Exams (exam + preparation) 0000
    Midterm exams (exam + preparation)4013535
    Project0000
    Laboratory 0000
    Final exam (exam + preparation) 5014545
    0000
    Total Workload (hours)   174
    Total Workload (hours) / 30 (s)     5,8 ---- (6)
    ECTS Credit   6
  • Course Content
  • Week Topics Study Metarials
    1 The Crystal of Solids R1.Page 1
    2 Growth of Semiconductor Materials R1.Page 14
    3 Introduction to Quantum Mechanics R1.Page 25
    4 Introduction to the Quantum Theory of Solids R1.Page 58
    5 Electrical Conduction in Solids R1.Page 72
    6 The Semiconductor in Equilibrium 1 R1.Page 106
    7 The Semiconductor in Equilibrium 2 R1.Page 106
    8 The Semiconductor in Equilibrium 1 R1.Page 156
    9 The Semiconductor in Equilibrium 2 R1.Page 156
    10 Nonequilibrium Exess Carriers in Semiconductors 1 R1.Page 192
    11 Nonequilibrium Exess Carriers in Semiconductors 2 R1.Page 192
    12 The pn Junction R1.Page 241
    13 The pn Junction Diode 1 R1.Page 276
    14 The pn Junction Diode 2 R1.Page 276
    Prerequisites -
    Language of Instruction Turkish
    Responsible Prof.Dr. Sebahaddin ALPTEKİN
    Instructors

    1-)Profesör Dr. Sebahaddin Alptekin

    Assistants
    Resources R1. Neamen, D., ( 2003) Semiconductor Physics and Devices: Basic Principles, Tsinghua University Press, China. R2. Sağlam, M.,(2007) Yarıiletken Fiziğine Giriş, Aktif Yayınevi, İstanbul.
    Supplementary Book -
    Goals To provide information about the structural properties and usage areas of semiconductors.
    Content Crystal structure of solids, amplification of semiconductor materials, introduction to quantum mechanics, introduction to quantum theory of solids, electrical conductivity in solids, semiconductors in equilibrium , carrier conduction event, unbalanced excess carriers in semiconductors, pn junction, pn junction diode.
  • Program Learning Outcomes
  • Program Learning Outcomes Level of Contribution
    1 To be able to use undergraduate information efficiently at the graduate level. 2
    2 To be able to search the literature related to the field of study. 1
    3 To have the ability to read, understand and interpret the sources in the literature. -
    4 To be able to apply the knowledge of physics to the problems encountered in studies related to the field. 3
    5 To be able to use experimental systems related to the study area and to design when necessary. -
    6 To be able to work within and between disciplines. -
    7 To be able to use computer programs related to the work area and to make program software when necessary. -
    8 Being able to write articles about her/his work and present it in scientific meetings -
    9 To know a foreign language at a level to communicate and exchange ideas with international scientists. -
    10 To have professional and scientific ethical awareness. -
    11 To have the ability to work individually, to take initiative when necessary. -
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