<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>physics710 on Modulhandbuch Physik/Astronomie der Universität Bonn</title><link>/MHB_test/tags/physics710/</link><description>Recent content in physics710 on Modulhandbuch Physik/Astronomie der Universität Bonn</description><generator>Hugo -- gohugo.io</generator><language>de-de</language><atom:link href="/MHB_test/tags/physics710/index.xml" rel="self" type="application/rss+xml"/><item><title>physics710</title><link>/MHB_test/docs/PO2006/mhb_msphysik/physics710/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/physics710/</guid><description>Experimental Physics - physics710 Module No. physics710 Category Elective Credit Points (CP) Semester 8. Module: Experimental Physics Module Elements: Nr Course Course No.</description></item><item><title>Magnetism</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Magnetism/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Magnetism/</guid><description>Magnetism (E/A) - Magnetism Course Magnetism (E/A) Course No. Magnetism Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT Requirements: Preparation: Basic knowledge in condensed matter physics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding of magnetism in condensed matter systems Contents of the Course: The lecture introduces to the magnetism in condensed matter systems.</description></item><item><title>Meth CondMatt</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Meth-CondMatt/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Meth-CondMatt/</guid><description>Experimental methods in condensed matter physics (E/A) - Meth CondMatt Course Experimental methods in condensed matter physics (E/A) Course No. Meth CondMatt Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT Requirements: Preparation: Basic knowledge in condensed matter physics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding of experimental concepts in condensed matter science</description></item><item><title>Surfaces</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Surfaces/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Surfaces/</guid><description>Physics of Surfaces and Nanostructures (E/A) - Surfaces Course Physics of Surfaces and Nanostructures (E/A) Course No. Surfaces Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT Requirements: Preparation: Basic knowledge of solid state physics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding of fundamental concepts in surface and nanostructure science</description></item><item><title>Neutron Scatt.</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Neutron-Scatt./</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Neutron-Scatt./</guid><description>Introduction to neutron scattering (E/A) - Neutron Scatt. Course Introduction to neutron scattering (E/A) Course No. Neutron Scatt. Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 ST Requirements: Preparation: Basic knowledge in condensed matter physics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding of the basic concepts and techniques of elastic and inelastic neutron scattering experiments.</description></item><item><title>Optical Spectr.</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Optical-Spectr./</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Optical-Spectr./</guid><description>Optical Spectroscopy (E/A) - Optical Spectr. Course Optical Spectroscopy (E/A) Course No. Optical Spectr. Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT/ST Requirements: Preparation: Basic knowledge in condensed matter physics Form of Testing and Examination: Oral examination Length of Course: 1 semester Aims of the Course: Understanding of the basic concepts and techniques of optical spectroscopy on solid-state samples.</description></item><item><title>Astrochemistry</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/Astrochemistry/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/Astrochemistry/</guid><description>Astrochemistry (E/A) - Astrochemistry Course Astrochemistry (E/A) Course No. Astrochemistry Category Type Language Teaching hours CP Semester Elective Lecture English 2 4 ST Requirements: Preparation: Atomic Physics, Molecular Physics and Quantum Mechanics at the level of the bachelor courses in physics, Molecular Physics I Form of Testing and Examination: Oral Examination Length of Course: 1 semester Aims of the Course: The lecture introduces to astrochemistry of various astrophysical environments.</description></item><item><title>FundMolSym</title><link>/MHB_test/docs/PO2006/mhb_msphysik/courses/FundMolSym/</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>/MHB_test/docs/PO2006/mhb_msphysik/courses/FundMolSym/</guid><description>Fundamentals of Molecular Symmetry (E/A/T) - FundMolSym Course Fundamentals of Molecular Symmetry (E/A/T) Course No. FundMolSym Category Type Language Teaching hours CP Semester Elective Lecture English 2 4 ST Requirements: Preparation: Basic knowledge of quantum mechanics Form of Testing and Examination: Oral Examination Length of Course: 1 semester Aims of the Course: Understanding the fundamental concepts of representation theory and its application to describe the symmetry of molecules Contents of the Course: The lecture introduces to group theory with special emphasis on representations and their use to describe the symmetry of molecules in high-resolution spectroscopy and in molecular physics generally.</description></item></channel></rss>