Course Information

Course Information
Course Title Code Semester L+U Hour Credits ECTS
- FIZ 508 3 + 0 3.0 8.0
Prerequisites None
Language of Instruction Turkish
Course Level Graduate
Course Type
Mode of delivery Lecturing
Course Coordinator Prof. Dr. Oğuz KÖYSAL
Instructors
Assistants
Goals Learning the basic principles of quantum mechanics and enlightening the interactions by putting the information about solid, liquid, cluster, molecule, atom, atomic core and main particles together under the principles of quantum mechanics
Course Content Uncertainty principle, Stern Gerlach experiment, mathematical structure Vectors, functionals, observables, wave functions in position and momentum space,Quantum dynamics and its applications,Schrödinger equation, simple harmonic oscillator,Harmonic oscillator in the presentation of free particle position,1-dimensional potential problems,Centripetal Systems Centripetal forces, orbital angular momentum, free particle,3-dimensional harmonic oscillator,Hydrogen atom, mathematical structure of spins and angular momentum,Spin½ systems, sum of angular momentum Tensor processes and symmetry,Conservation rules and degeneration,Steady and discrete symmetry, translation in lattice
Learning Outcomes
Weekly Topics (Content)
Week Topics Learning Methods
1. Week Uncertainty principle, Stern Gerlach experiment, mathematical structure Verbal Expression
2. Week Vectors, functionals, observables, wave functions in position and momentum space Verbal Expression
3. Week Quantum dynamics and its applications Verbal Expression
4. Week Schrödinger equation, simple harmonic oscillator Verbal Expression
5. Week Harmonic oscillator in the presentation of free particle position Verbal Expression
6. Week 1-dimensional potential problems Verbal Expression
7. Week Centripetal Systems,Centripetal forces Verbal Expression
8. Week MIDTERM EXAM Verbal Expression
9. Week Orbital angular momentum, free particle Verbal Expression
10. Week 3-dimensional harmonic oscillator Verbal Expression
11. Week Hydrogen atom, mathematical structure of spins and angular momentum Verbal Expression
12. Week Spin½ systems, sum of angular momentum Verbal Expression
13. Week Tensor processes and symmetry Verbal Expression
14. Week Conservation rules and degeneration Verbal Expression
Recommended Sources
• J.J.Sakurai, Avanced Quantum Mechanics, Addison-Wesley, 1967. • E.Merzbacher, Quantum Mechanics,Wiley&Sons, 1998. • L.D. Landau and E.M. Lifshitz, Quantum Mechanics, Addison-Wesley, 1990
Relations with Education Attainment Program Course Competencies
Program Requirements Contribution Level Measurement Method
PY1 5 40,60
PY2 4 -
PY3 5 40,60
PY4 5 40,60
PY5 4 40,60
PY6 4 40,60
PY7 4 40,60
PY8 4 -
PY9 5 40,60
*DK = Course's Contrubution.
0 1 2 3 4 5
Course's Level of contribution None Very Low Low Fair High Very High
Method of assessment/evaluation Written exam Oral Exams Assignment/Project Laboratory work Presentation/Seminar
ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Course Hours 14 3 42
Preparation, After Class Study 14 3 42
Research 14 3 42
Verbal Expression 14 1 14
Visual Presentation 14 1 14
Midterm 1 1 2 2
Homework 1 1 4 4
Final 1 2 2
Classroom Activities 14 3 42
Total Workload 204
ECTS Credit of the Course 8.0