WS 2024 SS 2024
WS 2023
WS 2022 SS 2023
Department of Physics
open chemistry
KVL / Klausuren / MAP 1st HS: 16.10  2nd HS: 11.12  sem.br.: 19.02  begin SS: 14.04

4020235128 Theoretical Physics II Electrodynamics      VVZ  

VL
Wed 13-15
weekly NEW 14 0'07 (120) Kurt Busch
Thu 11-13
weekly NEW 14 0'07 (120)
UE
Fri 9-11
weekly ZGW 2 1.221 (36) Simon Gabaj
UE
Fri 11-13
weekly ZGW 2 1.121 (36) Francesco Intravaia
UE
Fri 11-13
weekly NEW 14 1'14 (24) Bettina Beverungen
TU
Wed 17-19
weekly NEW 14 1'09 (32) Kurt Busch

Präsenzkurs

classroom language
DE
aims
The students can systematize the theoretical concepts and mathematical methods of electrodynamiocs and are able to apply these to the solution of corresponding problems.
requirements
Knowledge of the content of moduls P0, P1.2, and P2.1
structure / topics / contents
- Maxwell equations in vacuum and linear media
- Mathematical tools
- Electrostatics, Approaches for electrostatic problems
- Magnetostatics
- Time-dependent fields: Electromagnetic waves
- Energy and momentum of the electromagnetic field
- Covariant formulation of electrodynamics
- Lagangian and Hamiltonian formulation of electrodynamics

assigned modules
UeWP P2.2 / Pe2 Pe2 UeFW IMP P
amount, credit points; Exam / major course assessment
6 SWS, 8 SP/ECTS (Arbeitsanteil im Modul für diese Lehrveranstaltung, nicht verbindlich)
Written exam
contact
Prof. Dr. Kurt Busch (New. 15, Raum 3'208), kurt.busch@physik.hu-berlin.de
literature
J.D. Jackson. Klassische Elektrodynamik. de Gruyter
D.J. Griffith. Introduction to Electrodynamics. Prentice Hall
W. Nolting. Grundkurs Theoretische Physik Band 3 bzw. Band 4. Springer
L.D. Landau, E.M. Lifschitz. Lehrbuch der theoretischen Physik, Bd.2, Klassische Feldtheorie . Harry Deutsch
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