physics730

Theoretical Physics - physics730

Module No.physics730
CategoryElective
Credit Points (CP)
Semester8.

Module: Theoretical Physics

Module Elements:
NrCourseCourse No.CPTypeTeaching hoursSemester
1Ultracold Atomic Gases (E/T)physics7426Lect. + ex.3+1WT
2Group Theory (T)physics7517Lect. + ex.3+2WT
3Superstring Theory (T)physics7527Lect. + ex.3+2WT
4Theoretical Particle Astrophysics (T)physics7537Lect. + ex.3+2ST
5General Relativity and Cosmology (T)physics7547Lect. + ex.3+2ST
6Quantum Field Theory (T)physics7557Lect. + ex.3+2ST
7Critical Phenomena (T)physics7567Lect. + ex.3+2ST
8Effective Field Theory (T)physics7577Lect. + ex.3+2WT/ST
9Quantum Chromodynamics (T)physics7587Lect. + ex.3+2WT/ST
10Quantum Field Theory for Condensed Matter Physics (T)physics7595Lect. + ex.2+1WT/ST
11Computational Physics (T)physics7607Lect. + ex. + proj.2+2+1WT/ST
12Supersymmetry (T)physics7616Lect. + ex.3+1WT/ST
13Transport in mesoscopic systems (T)physics7625Lect. + ex.2+1WT/ST
14Advanced Topics in String Theory (T)physics7637Lect. + ex.3+2ST
15Advanced Topics in Field and String Theory (T)physics7647Lect. + ex.3+2ST
16Advanced Topics in Quantum Field Theory (T)physics7657Lect. + ex.3+2ST
17Physics of Higgs Bosons (T)physics7667Lect. + ex.3+2WT
18Computational Methods in Condensed Matter Theory (T)physics7677Lect. + ex.3+2WT/ST
19General Relativity for Experimentalists (T)physics7687Lect. + ex.3+2WT/ST
20Lattice QCD (T)physics7697Lect. + ex.3+2ST/WT
21Random Walks and Diffusion (T)physics75023Lect. + ex.1+1ST
22Selected Topics in Modern Condensed Matter Theory (T)physics75037Lect. + ex.3+2WT
23Theory of Superconductivity and Superfluidity (T)physics75045Lect. + ex.2+1WT/ST
24Relativity and Cosmology I (T)GR I8Lect. + ex.4+2WT
25Relativity and Cosmology II (T)GR II8Lect. + ex.4+2ST
26Quantum Field Theory I (T)QFT I8Lect. + ex.4+2ST
27Quantum Field Theory II (T)QFT II8Lect. + ex.4+2ST
28Geometry in Physics (T)GiP8Lect. + ex.4+2ST
29Topology for Physicists (T)Topology6Lect. + ex.3+1ST
30Fundamentals of Molecular Symmetry (E/A/T)FundMolSym4Lecture2ST
31Physical biology (T/A)PhysBio8Lect. + ex.4+2ST
32Statistical physics of soft matter and biomolecules (T/A)SoftMatter8Lect. + ex.4+2ST
33Statistical physics far from equilibrium (T)StatPhysNE8Lect. + ex.4+2ST
34Disordered systems (T)Disorder8Lect. + ex.4+2ST
35Nonequilibrium physics with interdisciplinary applications (T)Nonequilibrium4Lect. + ex.2+1ST
36Probability theory and stochastic processes for physicists (T)Probability4Lecture3WT
Requirements:

Preparation:

Content: Advanced lectures in theoretical physics from the catalogue of selected courses.

Aims/Skills: Preparation for Master’s Thesis work; broadening of scientific knowledge

Form of Testing and Examination: Requirements for the submodule examination (written examination): successful work with the exercises

Length of Module: 1 semester

Maximum Number of Participants: ca. 100

Registration Procedure: s. https://basis.uni-bonn.de u. http://bamawww.physik.uni-bonn.de

Note: Note: The students must obtain 18 CP in all out of the modules physics700, -710, -720, -730.

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