Physics of Higgs Bosons (T) - physics766 Course Physics of Higgs Bosons (T) Course No. physics766 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT Requirements: Preparation: Theoretical Particle Physics (physics615) Form of Testing and Examination: Requirement for the examination (written or oral): successful participation
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Computational Methods in Condensed Matter Theory (T) - physics767 Course Computational Methods in Condensed Matter Theory (T) Course No. physics767 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT/ST Requirements: Preparation: Quantum Field Theory (physics755)
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General Relativity for Experimentalists (T) - physics768 Course General Relativity for Experimentalists (T) Course No. physics768 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT/ST Requirements: Preparation: Theoretische Physik I & II, Analysis I & II Form of Testing and Examination: Weekly homework sets (50% required), Final exam Length of Course: 1 semester Aims of the Course: The students shall learn the basics of general relativity and be able to apply it to applications such as experimental tests of GR, GPS, astrophysical objects and simple issues in cosmology.
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Random Walks and Diffusion (T) - physics7502 Course Random Walks and Diffusion (T) Course No. physics7502 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 1+1 3 ST Requirements: Preparation: Quantum mechanics and Thermodynamics Form of Testing and Examination: Requirements for the (written or oral) examination: Successful work within the exercises Length of Course: 1 semester Aims of the Course: The aim of the course is to introduce the student to random processes and their application to diffusion phenomena Contents of the Course: Basics of probability theory, Master equation and Langevin equation, Law of large numbers and Central Limit Theorem, First passage problems, Large scale dynamics, Dynamical scaling.
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Selected Topics in Modern Condensed Matter Theory (T) - physics7503 Course Selected Topics in Modern Condensed Matter Theory (T) Course No. physics7503 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 WT Requirements: Preparation: Introductory Condensed Matter Theory
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Theory of Superconductivity and Superfluidity (T) - physics7504 Course Theory of Superconductivity and Superfluidity (T) Course No. physics7504 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 2+1 5 WT/ST Requirements: Preparation: Quantum Mechanics, Thermodynamics and Statistics, Quantum Field Theory Form of Testing and Examination: Requirements for the (written or oral) examination: Successful participation in the exercises Length of Course: 1 semester Aims of the Course: The goal of the course is to introduce students to the theory of superconductivity and superfluidity.
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Lattice QCD (T) - physics769 Course Lattice QCD (T) Course No. physics769 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+2 7 ST/WT Requirements: Preparation: Quantum Mechanics 1+2, Quantum Field Theory 1 Form of Testing and Examination: Written / oral examination Length of Course: 1 semester Aims of the Course: To give an introduction to the quantum field theory on the lattice Contents of the Course: Introduction: Quantum mechanics on the lattice
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Environmental Physics & Energy Physics (A) - physics771 Course Environmental Physics & Energy Physics (A) Course No. physics771 Category Type Language Teaching hours CP Semester Elective Lecture English 2 3 WT Requirements: Preparation: Physik I-V (physik110-physik510) Form of Testing and Examination: Active contributions during term and written examination Length of Course: 1 semester Aims of the Course: A deeper understanding of energy & environmental facts and problems from physics (and, if needed, nature or agricultural science) point of view Contents of the Course: After introduction into related laws of nature and after a review of supply and use of various resources like energy a detailed description on each field of use, use-improvement strategies and constraints and consequences for environment and/or human health & welfare are given.
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Physics in Medicine: Fundamentals of Analyzing Biomedical Signals (A) - physics772 Course Physics in Medicine: Fundamentals of Analyzing Biomedical Signals (A) Course No. physics772 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+1 6 WT Requirements: Preparation: Elementary thermodynamics; principles of quantum mechanics, principles of condensed matter Form of Testing and Examination: Requirements for the examination (written or oral): successful work with the exercises Length of Course: 1 semester Aims of the Course: Understanding of the principles of physics and the analysis of complex systems Contents of the Course: Introduction to the theory of nonlinear dynamical systems; selected phenomena (e.
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Physics in Medicine: Fundamentals of Medical Imaging (A) - physics773 Course Physics in Medicine: Fundamentals of Medical Imaging (A) Course No. physics773 Category Type Language Teaching hours CP Semester Elective Lecture with exercises English 3+1 6 ST Requirements: Preparation: Lectures Experimental Physics I-III (physik111-physik311) respectively Form of Testing and Examination: Requirements for the examination (written or oral): successful work with the exercises Length of Course: 1 semester Aims of the Course: Understanding of the principles of physics of modern imaging techniques in medicine Contents of the Course: Introduction to physical imaging methods and medical imaging; Physical fundamentals of transmission computer tomography (Röntgen-CT), positron emission computer tomography (PET), magnetic resonance imaging (MRI) and functional MRI
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