Course Information

Course Information
Course Title Code Semester L+U Hour Credits ECTS
Atomic And Molecular Physics FIZ711 3 + 0 3.0 7.5
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 structure of atoms and molecules and their interaction with the environment in terms of physical laws.
Course Content Electrons, photon and atoms, Atoms with single electron; interaction of atoms with single electrons with electromagnetic field,Hyperfine structure interaction and interaction with electrical and magnetic field,Two –electron atoms, excited energy levels of two-electron atoms,Many –electron atoms,Interaction of many –electron atoms with electromagnetic field,Interaction of many –electron atoms with electromagnetic field,Structure of molecules,Spectrum of molecules
Learning Outcomes
Weekly Topics (Content)
Week Topics Learning Methods
1. Week Electrons, photon and atoms. Verbal Expression
2. Week Electrons, photon and atoms. Verbal Expression
3. Week Atoms with single electron; interaction of atoms with single electrons with electromagnetic field. Verbal Expression
4. Week Atoms with single electron; interaction of atoms with single electrons with electromagnetic field. Verbal Expression
5. Week Hyperfine structure interaction and interaction with electrical and magnetic field. Verbal Expression
6. Week Hyperfine structure interaction and interaction with electrical and magnetic field. Verbal Expression
7. Week Two –electron atoms, excited energy levels of two-electron atoms Verbal Expression
8. Week MIDTERM EXAM
9. Week Many –electron atoms Verbal Expression
10. Week Many –electron atoms Verbal Expression
11. Week Interaction of many –electron atoms with electromagnetic field. Verbal Expression
12. Week Interaction of many –electron atoms with electromagnetic field. Verbal Expression
13. Week Structure of molecules. Verbal Expression
14. Week Structure of molecules Verbal Expression
Recommended Sources
• B.H. Bransden, C.J. Joachain, Physics of Atoms and Molecules, Longman, 1983. • E.U. Condon, G.H. Shortley, The Theory of Atomic Spectra, Cambridge, 1967.
Relations with Education Attainment Program Course Competencies
Program Requirements Contribution Level Measurement Method
PY1 5 40,60
PY2 4 40,60
PY3 5 40,60
PY4 5 40,60
PY5 4 40,60
PY6 4 40,60
PY7 4 40,60
PY8 4 40,60
PY9 5 40,60
PY10 4 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 2 28
Research 14 3 42
Other Activities 14 3 42
Midterm 1 1 2 2
Homework 1 14 2.5 35
Final 1 2 2
Total Workload 193
ECTS Credit of the Course 7.5