FY522: Introductory quantum mechanics II (5 ECTS)

STADS: 07003901

Level
Bachelor course

Teaching period
The course is offered in the spring semester.
4th quarter.

Teacher responsible
Email: mlomholt@memphys.sdu.dk

Timetable
Group Type Day Time Classroom Weeks Comment
Common I Wednesday 10-12 U49 15-18,20-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 10-12 U49 15-21
Common I Wednesday 08-10 U49 19
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Monday 14-16 U49 16-21
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 U49e 18
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 18
S1 TE Tuesday 12-14 18
S1 TE Thursday 12-14 U49 21
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 10-12 U49 15-16
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 08-10 U49 15-17
S1 TE Friday 12-14 U49 17
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-20
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-21
S1 TE Friday 08-10 U49 19-21
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Revison of timetable:
: Skemaændringer pga skemaoverlap på retning uden garanti.

Prerequisites:
None

Academic preconditions:
FY521 Introductory quantum mechanics I must have been followed, with at least a 0 received at the exam.

Course introduction
To achieve an operational knowledge of quantum mechanics of simple systems

Expected learning outcome
After completing the course the student is expected to be able to:
  • be able to carry out mathematical calculations on simple quantum systems
  • achieve an ability to use the Dirac formalism and the abstract formalism of quantum mechanics
  • work with angular moments and perform perturbation calculations of spherical symmetric systems
  • explain the energy spectrum of Hydrogen
Subject overview
1. Analytic solutions of the harmonic oscillator, with and without ladder operators
2. The formalism of quantum mechanics
3. Spherical symmetric systems, the Hydrogen atom
4. Angular moments and coupling of angular moments
5. Time dependent perturbation theory, Fermi’s golden rule


Literature
  • David J. Griffiths: Introduction to Quantum Mechanics, 2nd edition, Pearson Education International .


Syllabus
See syllabus.

Website
This course uses e-learn (blackboard).

Prerequisites for participating in the exam
None

Assessment and marking:
4 hours written exam, marks according to the Danish 7-point scale, external examiner.

Re-examination after 2nd quarter. The mode of exam at the re-examination may differ from the mode of exam at the ordinary exam.

Expected working hours
The teaching method is based on three phase model.

Forelæsninger: 14 timer.
Eksaminatorietimer/opgaveregning: 28 timer .
Educational activities

Language
This course is taught in Danish.

Course enrollment
See deadline of enrolment.

Tuition fees for single courses
See fees for single courses.