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COURSE SYLLABUS
ATOMIC AND MOLECULAR PHYSICS
1 Course Title: ATOMIC AND MOLECULAR PHYSICS
2 Course Code: FZK3007
3 Type of Course: Compulsory
4 Level of Course: First Cycle
5 Year of Study: 3
6 Semester: 5
7 ECTS Credits Allocated: 7
8 Theoretical (hour/week): 4
9 Practice (hour/week) : 0
10 Laboratory (hour/week) : 0
11 Prerequisites: -
12 Recommended optional programme components: None
13 Language: Turkish
14 Mode of Delivery: Face to face
15 Course Coordinator: Doç.Dr. AHMET PEKSÖZ
16 Course Lecturers: Doç. Dr. Ahmet PEKSÖZ
Yrd. Doç. Dr. Cengiz AKAY
Yrd. Doç. Dr. Hüseyin OVALIOĞLU
17 Contactinformation of the Course Coordinator: peksoz@uludag.edu.tr, (0224) 29 41 713, UÜ Fen Edebiyat Fakültesi, Fizik Bölümü 16059 Görükle Kampüsü, Bursa.
18 Website:
19 Objective of the Course: To make students aware of basic concepts of atomic and molecular physics in some of historical flow.
20 Contribution of the Course to Professional Development
21 Learning Outcomes:
1 Recognizes atoms and elementary particles, the Planck constant.;
2 Learns equivalents of physical quantities at atomic and molecular level.;
3 Understands atomic energy levels.;
4 Calculates the interaction formats of atoms with photons depending on photon energy.;
5 Calculates and comments material particles, electron diffraction and Compton event.;
6 Applies Heisenberg uncertainty principle to various situations.;
7 Applies Schrödinger's wave mechanics to various obstacle problems.;
8 Interpret and calculate vibrational spectra of molecules.;
9 Interpret and calculate rotation spectra of molecules.;
10 Learns applications of atomic and molecular physics.;
22 Course Content:
Week Theoretical Practical
1 Introduction, Atoms and elementary particles, Photoelectric effect
2 Magnitudes of physical quantities in quantum physics, Determining magnitudes of atomic and molecular physics
3 Energy levels, Spectral terms
4 Finite broadening of energy levels, Doppler broadening
5 Photons, Compton Event, Bremstrahlung
6 Couple formation and Disappearance, Photons can be divided? First Midterm exam
7 Material particles, De Broglie waves
8 The wave equation and the principle of superposition
9 Uncertainty Principle and Theory of Measurements, Heisenberg's uncertainty relations
10 Measurements and statistics communities, Amplitude and violence
11 Schrödinger's wave mechanics, Schrödinger's nonrelativistic wave equation
12 Some simple obstacle problems, Theory of alpha radioactivity Second Midterm exam
13 Theory of stationary states, Quantization as eigenvalue problem
14 Vibration and rotational excitation of molecules
23 Textbooks, References and/or Other Materials: 1. Quantum Physics, E.H. Wichmann, Berkeley, Volume 4, Mc Graw Hill Book,1968.
2. Atomic Physics, Y. Şahin and Y. Kurucu, Pegem Publishing, Ankara, 2005.
24 Assesment
TERM LEARNING ACTIVITIES NUMBER PERCENT
Midterm Exam 1 40
Quiz 0 0
Homeworks, Performances 0 0
Final Exam 1 60
Total 2 100
Contribution of Term (Year) Learning Activities to Success Grade 40
Contribution of Final Exam to Success Grade 60
Total 100
Measurement and Evaluation Techniques Used in the Course
Information
25 ECTS / WORK LOAD TABLE
Activites NUMBER TIME [Hour] Total WorkLoad [Hour]
Theoretical 14 4 56
Practicals/Labs 0 0 0
Self Study and Preparation 18 4 72
Homeworks, Performances 0 4 80
Projects 0 0 0
Field Studies 0 0 0
Midtermexams 1 2 2
Others 0 0 0
Final Exams 1 2 2
Total WorkLoad 212
Total workload/ 30 hr 7,07
ECTS Credit of the Course 7
26 CONTRIBUTION OF LEARNING OUTCOMES TO PROGRAMME QUALIFICATIONS
PQ1 PQ2 PQ3 PQ4 PQ5 PQ6 PQ7 PQ8 PQ9 PQ10 PQ11 PQ12
LO1 5 4 3 3 3 3 0 0 4 3 3 0
LO2 5 4 4 3 4 3 0 0 4 4 4 0
LO3 4 4 3 3 3 3 0 0 3 3 3 0
LO4 4 5 4 4 4 4 0 0 4 4 3 0
LO5 4 5 5 5 4 4 0 0 4 3 3 0
LO6 5 5 5 4 4 3 0 0 4 4 3 0
LO7 4 5 4 5 4 3 0 0 3 4 3 0
LO8 4 4 4 4 3 4 0 0 4 3 3 0
LO9 5 4 4 4 4 4 0 0 4 3 3 0
LO10 4 4 4 5 5 5 0 0 3 4 4 0
LO: Learning Objectives PQ: Program Qualifications
Contribution Level: 1 Very Low 2 Low 3 Medium 4 High 5 Very High
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