<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>physics730 on Modulhandbuch Physik/Astronomie der Universität Bonn</title><link>/MHB_test/tags/physics730/</link><description>Recent content in physics730 on Modulhandbuch Physik/Astronomie der Universität Bonn</description><generator>Hugo -- gohugo.io</generator><language>de-de</language><atom:link href="/MHB_test/tags/physics730/index.xml" rel="self" type="application/rss+xml"/><item><title>physics730</title><link>/MHB_test/docs/PO2006/mhb_msphysik/physics730/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/physics730/</guid><description>Theoretical Physics - physics730 Module No. physics730 Category Elective Credit Points (CP) Semester 8. Module: Theoretical Physics Module Elements: Nr Course Course No.</description></item><item><title>physics760</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/physics760/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/physics760/</guid><description>Computational Physics (T) - physics760 Course Computational Physics (T) Course No. physics760 Category Type Language Teaching hours CP Semester Elective Lecture with exercises and project work English 2&amp;#43;2&amp;#43;1 7 WT/ST Requirements: Knowledge of a modern programming language (like C, C++) Preparation: Theoretical courses at the Bachelor degree level Form of Testing and Examination: successful participation in exercises,</description></item><item><title>physics761</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/physics761/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/physics761/</guid><description>Supersymmetry (T) - physics761 Course Supersymmetry (T) Course No. physics761 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3&amp;#43;1 6 WT/ST Requirements: Quantum Field Theory I Preparation: Form of Testing and Examination: Individual Oral Examinations Length of Course: 1 semester Aims of the Course: Teach the students the basics of supersymmetric field theory and how it can be tested at the LHC.</description></item><item><title>StatPhysNE</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/StatPhysNE/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/StatPhysNE/</guid><description>Statistical physics far from equilibrium (T) - StatPhysNE Course Statistical physics far from equilibrium (T) Course No. StatPhysNE Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 4&amp;#43;2 8 ST Requirements: Preparation: Advanced statistical mechanics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding the generic behavior of fluctuation-dominated systems far from equilibrium, and acquaintance with the basic mathematical tools used for their description.</description></item><item><title>Disorder</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Disorder/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Disorder/</guid><description>Disordered systems (T) - Disorder Course Disordered systems (T) Course No. Disorder Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 4&amp;#43;2 8 ST Requirements: Preparation: Advanced statistical mechanics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding the novel types of behaviour that arise in systems with quenched disorder, as well as the specific mathematical challenges associated with their theoretical description.</description></item><item><title>Nonequilibrium</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Nonequilibrium/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Nonequilibrium/</guid><description>Nonequilibrium physics with interdisciplinary applications (T) - Nonequilibrium Course Nonequilibrium physics with interdisciplinary applications (T) Course No. Nonequilibrium Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2&amp;#43;1 4 ST Requirements: Preparation: Statistical mechanics Form of Testing and Examination: Oral examination or term paper Length of Course: 1 semester Aims of the Course: Acquaintance with basic concepts of nonequilibrium physics; ability to apply the basic methods for the investigation of nonequilibrium problems; application of physics-based models to interdisciplinary problems.</description></item><item><title>Probability</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Probability/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Probability/</guid><description>Probability theory and stochastic processes for physicists (T) - Probability Course Probability theory and stochastic processes for physicists (T) Course No. Probability Category Type Language Teaching hours CP Semester Elective Lecture English 3 4 WT Requirements: Preparation: Statistical mechanics on the bachelor level Form of Testing and Examination: Oral examination or term paper Length of Course: 1 semester Aims of the Course: Acquaintance with probabilistic concepts and stochastic methods commonly used in the theory of disordered systems and nonequilibrium phenomena, as well as in interdisciplinary applications of statistical physics.</description></item></channel></rss>