Course Information

Course Information
Course Title Code Language Type Semester L+U Hour Credits ECTS
- FIZ 632 Turkish Compulsory 3 + 0 3.0 8.0
Prerequisite Courses
Course Level Graduate
Mode of delivery Lecturing
Course Coordinator Prof. Dr. Kadir GÖKŞEN
Instructor(s)
Goals Concepts such as wave propagation, elastic waves, lattice vibrations and dispersion relations, specific heat and Debye model will comprehended.
Course Content Wave propagation in one-dimensional lattices and quantization of the lattice.,Elastic constants and elastic waves in three-dimensional lattices,Quantization of lattice vibrations and dispersion relations,Phenomenolojik models,Specific heat and the Debye model,The theory of scattering of slow neutrons in solids.
Lesson Plan (Weekly Topics)
Week Topics/Applications Method
1. Week Wave propagation in one-dimensional lattices and quantization of the lattice.
2. Week Wave propagation in one-dimensional lattices and quantization of the lattice.
3. Week Wave propagation in one-dimensional lattices and quantization of the lattice.
4. Week Elastic constants and elastic waves in three-dimensional lattices.
5. Week Elastic constants and elastic waves in three-dimensional lattices.
6. Week Elastic constants and elastic waves in three-dimensional lattices.
7. Week Quantization of lattice vibrations and dispersion relations.
8. Week MIDTERM EXAM
9. Week Quantization of lattice vibrations and dispersion relations.
10. Week Phenomenolojik models.
11. Week Phenomenolojik models.
12. Week Specific heat and the Debye model.
13. Week Specific heat and the Debye model.
14. Week The theory of scattering of slow neutrons in solids.
*Midterm and final exam dates are not specified in the 14-week course operation plan. Midterm and final exam dates are held on the dates specified in the academic calendar with the decision of the University Senate.
Recommended Sources
Ders Kitabı veya Notu Ders Kitabı veya Ders Notu bulunmamaktadır.
Diğer Kaynaklar
  • • M.T. Dove, Introduction to Lattice Dynamics, Cambridge University Press, 2005. • C. Kittel, Introduction to Solid State Physics, 8th Edition, Wiley, 2004. • G.Burns, Solid State Physics, Academic Press, 1985.