| Title | ΘΕΜΑΤΑ ΠΥΡΗΝΙΚΗΣ ΘΕΩΡΙΑΣ / Topics in Nuclear Theory |
| Code | ΠΣΕ101 |
| Faculty | Sciences |
| School | Physics |
| Cycle / Level | 1st / Undergraduate |
| Teaching Period | Spring |
| Coordinator | Theodoros Gaitanos |
| Common | No |
| Status | Active |
| Course ID | 40003072 |
Programme of Study: PROGRAMMA SPOUDŌN 2022
Registered students: 0
| Orientation | Attendance Type | Semester | Year | ECTS |
|---|---|---|---|---|
| KORMOS | Elective Courses | 8 | 4 | 5 |
| Academic Year | 2017 – 2018 |
| Class Period | Spring |
| Faculty Instructors |
|
| Weekly Hours | 3 |
| Class ID | 600100262
|
Course Type 2016-2020
- Scientific Area
Course Type 2011-2015
Specific Foundation / Core
Mode of Delivery
- Face to face
Digital Course Content
- e-Study Guide https://qa.auth.gr/en/class/1/600100262
Language of Instruction
- Greek (Instruction, Examination)
Learning Outcomes
the student understand how a theoretical nuclear structure model is derived and they are able to make their own very simple models
General Competences
- Apply knowledge in practice
- Work autonomously
- Generate new research ideas
Course Content (Syllabus)
Liquid drop model-Semi empirical mass formula-Saturation of nuclear forces-Basic principles of nuclear scattering
T-matrix, electron scattering from nuclei, nuclear mass distribution, nuclear charge distribution. Electromagnetic moments and transitions.
Collective excitations in liquid drop model: vibrations, rotations, nuclear fission.
Properties of the fundamental nuclear interaction. Deuterium. Nuclear effective interactions.
Nuclear models: Fermi gas model, nuclear shell model, nuclear mean field model.
Pairing correlation. BCS approximation. RPA model and collective vibrations.
Educational Material Types
- Notes
Course Organization
| Activities | Workload | ECTS | Individual | Teamwork | Erasmus |
|---|---|---|---|---|---|
| Lectures | 87 | 2.9 | |||
| Written assigments | 30 | 1 | |||
| Exams | 3 | 0.1 | |||
| Total | 120 | 4 |
Last Update
30-06-2016