physics710

Experimental Physics - physics710

Module No.physics710
CategoryElective
Credit Points (CP)
Semester8.

Module: Experimental Physics

Module Elements:
NrCourseCourse No.CPTypeTeaching hoursSemester
1Particle Astrophysics and Cosmology (E)physics7116Lect. + ex.3+1WT
2Advanced Electronics and Signal Processing (E/A)physics7126Lect. + ex.3+1ST
3Particle Detectors and Instrumentation (E/A)physics7136Lect. + lab.3+1ST
4Advanced Accelerator Physics (E/A)physics7146Lect. + ex.3+1ST/WT
5Experiments on the Structure of Hadrons (E)physics7154Lect. + ex.2+1WT
6Statistical Methods of Data Analysis (E)physics7164Lect. + ex.2+1ST
7High Energy Physics Lab (E)physics7174LaboratoryWT/ST
8Programming in Physics and Astronomy with C++ or Python (E/A)physics7184Lect. + ex.2+1ST
9Physics with Antiprotons (E)physics7203Lecture2WT
10Intensive Week: Advanced Topics in Hadron Physics (E)physics72143WT/ST
11Advanced Gaseous Detectors - Theory and Practice (E)physics72263+1ST
12Low Temperature Physics (E/A)physics7316Lect. + ex.3+1WT/ST
13Optics Lab (E/A)physics7324LaboratoryWT/ST
14Holography (E/A)physics7343Lecture2ST
15Laser Cooling and Matter Waves (E)physics7353Lecture2WT/ST
16Crystal Optics (E/A)physics7366Lect. + ex.3+1WT
17Intensive Week: Advanced Topics in Photonics and Quantum Optics (E)physics7374Lect. + lab. + sem.3WT/ST
18Lecture on Advanced Topics in Quantum Optics (E)physics7384Lect. + ex.2+1WT/ST
19Lecture on Advanced Topics in Photonics (E/A)physics73942+1WT/ST
20Hands-on Seminar: Experimental Optics and Atomic Physics (E/A)physics74032WT/ST
21Modern Spectroscopy (E/A)physics74142+1WT/ST
22Ultracold Atomic Gases (E/T)physics7426Lect. + ex.3+1WT
23Electronics for Physicists (E/A)physics7746Lect. + ex.3+1ST
24Nuclear physics II (E)Nucl. physics II5Lecture3WT
25Physics of Detectors (E/A)Detectors4Lecture3ST
26Particle physics (E)Particles4Lecture3ST
27Groundbreaking experiments in nuclear physics (E)ExpNuclPhys3Lecture2ST
28Condensed Matter Physics II (E)CondMatter II4Lecture3ST
29Semiconductor Physics and Nanoscience (E/A)Semicond. Phys.3Lecture2ST
30Superconductivity (E/A)Supercond3Lecture2ST
31Magnetism (E/A)Magnetism3Lecture2WT
32Experimental methods in condensed matter physics (E/A)Meth CondMatt3Lecture2WT
33Physics of Surfaces and Nanostructures (E/A)Surfaces3Lecture2WT
34Introduction to neutron scattering (E/A)Neutron Scatt.3Lecture2ST
35Optical Spectroscopy (E/A)Optical Spectr.3Lecture2WT/ST
36Astrochemistry (E/A)Astrochemistry4Lecture2ST
37Fundamentals of Molecular Symmetry (E/A/T)FundMolSym4Lecture2ST
Requirements:

Preparation:

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

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

Form of Testing and Examination: If the lecture is offered with exercises: requirements for the submodule examination (written or oral examination): successful work with 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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