Modules

200 results

Specialization Phase200

Advanced ControlNo ratings for this module yet.Non-Physics ElectiveYou learn how to model real dynamic systems in state-space representation, linearize them, and analyze stability, controllability, and observability. Building on this, you design state-feedback regulators (including LQR), state observers, measures for disturbance rejection, as well as extended 2-DOF regulator structures; you also receive an introduction to input-output linearization for SISO systems.5 ECTSruns this semesterMW1420Advanced Deep Learning for Computer Vision: Visual ComputingNo ratings for this module yet.Non-Physics ElectiveThe module conveys current deep-learning methods for computer vision. You will learn both theoretical foundations of modern neural architectures and practical methods such as generative models (GANs, diffusion models, Large Reconstruction Models) and modern 3D representations (e.g., Neural Radiance Fields, 3D Gaussian Splatting). In the end you will be able to apply, evaluate, and implement state-of-the-art methods in project work.8 ECTSruns this semesterIN2390Advanced ProgrammingNo ratings for this module yet.Non-Physics ElectiveYou will learn to develop scientific software in C++ while balancing performance and maintainability. In the end you will be able to choose appropriate data types and programming structures, apply C++ language facilities for resource management, object- and generic programming, and analyze and optimize performance.5 ECTSruns this semesterIN1503Aerodynamik des Flugzeugs 1No ratings for this module yet.Non-Physics ElectiveIn this module you will learn the fundamentals of calculating and analyzing the aerodynamic forces on aircraft under subsonic conditions. You will acquire knowledge of theoretical models (e.g., potential theory, wing and airfoil theory), airfoil design, and experimental methods, so that you can calculate and evaluate aerodynamic characteristics for airfoils and wings.5 ECTSruns this semesterMW0007Algebra 2No ratings for this module yet.Non-Physics ElectiveYou will learn fundamental concepts of commutative algebra (rings, ideals, prime ideals, modules) as well as important tools such as localization, embeddings, and tensor products. You will also gain insight into affine algebraic varieties and questions on finiteness conditions and dimension theory. In the end you will be able to apply the learned theorems to rings, in particular finitely generated algebras over a field, and transfer the results to the corresponding affine varieties.9 ECTSruns this semesterMA5120
195 more in Specialization PhaseAngewandte CFDNo ratings for this module yet.Non-Physics ElectiveYou receive a practice-oriented introduction to numerical fluid dynamics (CFD). You will learn modeling of turbulent flows, numerical methods for solving the Navier–Stokes equations, boundary conditions, grid generation, as well as visualization and evaluation of simulation results and you will apply this practically with ANSYS CFX/ICEM.5 ECTSruns this semesterMW1628Anwendung strömungsmechanischer Berechnungsverfahren in FlugtriebwerkenNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn flow-mechanical calculation methods specifically for jet propulsion. You will engage with the individual components (inlet, compressor, combustion chamber, turbine, nozzle) and the associated flow models, and you will acquire the ability to treat flows in Meridian (S2) and profile grid surfaces (S1) computationally.3 ECTSruns this semesterMW0147Applied Microbiology and Metabolic EngineeringNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals and techniques of applied microbiology and metabolic engineering. In the end you will be able to understand microbial metabolism, describe fermentation processes quantitatively, and develop strategies for targeted modification of microorganisms for the production of chemicals and biofuels.5 ECTSruns this semesterCS0007Astronautische RaumfahrttechnologieNo ratings for this module yet.Non-Physics ElectiveYou get a comprehensive overview of the history, present and future of astronautical spaceflight as well as the role of space science. In the end you will be able to conduct mission analyses, evaluate station and habitat configurations, and classify and assess the major subsystems (transport, power, thermal, orbit/attitude control, communication, life support) for manned spaceflight missions.5 ECTSruns this semesterED110168Automata and Formal LanguagesNo ratings for this module yet.Non-Physics ElectiveYou learn how different classes of automata (finite, deterministic, nondeterministic, Büchi automata) are used as data structures for the representation and manipulation of (also infinite) sets and relations. You practice building and composing automata, automatic operations (e.g., boolean operations, joins) and the connection between automata and logic as well as their application in pattern matching, program verification and in problems such as Diophantine equations.8 ECTSruns this semesterIN2041BatteriespeicherNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals, operating principles and structure of electrochemical energy storage with a focus on rechargeable systems (e.g., mobile devices, electric vehicles, photovoltaic island systems). In the end you will be able to describe electrochemical relationships, characterize and design batteries, and apply this knowledge to current applications.5 ECTSruns this semesterED180034Bildgebende Verfahren, NuklearmedizinNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn the physical principles and modern methods of medical imaging in radiology and nuclear medicine. By the end you will understand how images are technically generated (detectors, acquisition technology, tomography, reconstruction) and which clinical applications the different systems (MRI, CT, PET, SPECT, X-ray, ultrasound) have.5 ECTSruns this semesterME0156Bio-Nano GrenzflächenverfahrenstechnikNo ratings for this module yet.Non-Physics ElectiveThe module provides interdisciplinary fundamentals and applications of boundary layer and nanofluid processing technology at the interface of chemistry, physics, biology, materials science and process engineering. You will learn to analyze properties and interactions of colloidal and biological systems as well as relevant processes and methods and to evaluate industrial questions.5 ECTSruns this semesterED180020Biologische ChemieNo ratings for this module yet.Non-Physics ElectiveYou will deeply understand the chemical processes on and with biomolecules. The focus is on protein chemistry, modifications of biomolecules, molecular interactions, biopolymers and membranes. In the end you can explain reaction mechanisms, describe application examples of chemical modifications and qualitatively classify and present research results.6 ECTSruns this semesterCH0448BioMEMS and MicrofluidicsNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamental concepts and applications of microfluidic and microelectromechanical systems (BioMEMS) for biological questions. The module combines electrodynamics, surface science and fluid mechanics, shows principles of lab-on-a-chip systems and covers cell-based microfluidic systems as well as chip-based neuroscience applications. In the end you will be able to explain physical mechanisms and assess their application in BioMEMS and microfluidics.5 ECTSruns this semesterEI7473Clinical Applications of Computational MedicineNo ratings for this module yet.Non-Physics ElectiveYou learn how methods of Computational Medicine are applied to concrete clinical problems. The module covers data collection, biostatistical modeling, signal processing, pattern recognition, prediction and validation as well as the development of web-based decision aids. In the end you can apply basic signal processing, explore research questions exploratively and present results in writing as well as orally.6 ECTSruns this semesterEI7585Cluster und Nanopartikel: Grundlagen und Anwendungen in der Katalyse, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn the physical and chemical foundations of nanoscale matter at the transition from atom to solid as well as their applications in catalysis. In the end you will be able to explain manufacturing routes, size-dependent properties and experimental characterization of clusters and nanoparticles and apply this knowledge to catalytic questions.5 ECTSruns this semesterCH3067Computational AcousticsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn numerical methods for solving acoustic problems, in particular the Finite Element Method (FEM) and the Boundary Element Method (BEM). In the end you will be able to explain the fundamental methodology, assess typical problems in outdoor space and fluid-structure interactions, and implement a simple FEM- or BEM-program in MATLAB.5 ECTSruns this semesterMW2323Computational NeuroscienceNo ratings for this module yet.Non-Physics ElectiveYou will learn concepts and implementations of central models and methods of Computational Neuroscience in Python. At the end you will be able to implement single-neuron and network models, analyze their properties, and transfer models to new questions, as well as apply fundamental methods of Machine Learning and information analysis.5 ECTSruns this semesterLS20056Computational Neuroscience: Eine Ringvorlesung von Modellen bis zu AnwendungenNo ratings for this module yet.Non-Physics ElectiveYou will obtain an interdisciplinary overview of fundamentals and models of Computational Neuroscience as well as their applications, for example in neuroprostheses. In the end you will know anatomical and physiological basics, methods for modeling neuronal activity, and how such models can be used for technical applications.3 ECTSruns this semesterEI7646Computational Plasma PhysicsNo ratings for this module yet.Non-Physics ElectiveYou will learn numerical methods for solving and applying models from plasma physics. The focus is on the discretization of partial differential equations (e.g., Poisson, conservation and kinetic equations) and the implementation of these procedures in Python. In the end you will be able to derive an appropriate numerical method for a concrete model, implement it, and test and verify the code.5 ECTSruns this semesterMA4304Convex OptimizationNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals and methods of convex optimization: analysis of convex sets and functions, optimality conditions, duality, and algorithms such as Simplex, gradient/Newton methods, and interior-point methods. In the end you will be able to formulate problems as convex optimization tasks, derive optimality and duality conditions, and apply appropriate solution methods.6 ECTSruns this semesterEI74351Data Mining und Knowledge DiscoveryNo ratings for this module yet.Non-Physics ElectiveYou will learn methods of Data Mining and Knowledge Discovery: from data sources and quality through preprocessing, visualization and feature selection to correlation, regression, forecasting, classification and clustering. In the end you will be able to select appropriate methods, apply them and critically evaluate them, as well as deepen the foundations independently.3 ECTSruns this semesterIN2030DesalinationNo ratings for this module yet.Non-Physics ElectiveYou will learn the physico-chemical fundamentals of seawater and various technical processes for desalination, with a focus on distillation and membrane processes. In the end you will be able to understand, design and optimize desalination plants, as well as weigh the advantages and disadvantages of different concepts.5 ECTSruns this semesterMW1969Designprinzipien in Biomaterialien - die Natur als IngenieurNo ratings for this module yet.Non-Physics ElectiveYou will learn about the construction and operating principles of various biomaterials and investigate how nature designs structures and transport processes. Topics include self-assembly (e.g. DNA origami, protein synthesis, virus replication), diffusion and its regulation, charge screening by electrolytes, the construction of selective structures and production of spatial gradients, as well as electrical signal transmission in neurons. In the end you will be able to analyze design principles of selected biomaterials and compare them with technical solutions.3 ECTSruns this semesterMW1828Differential GeometryNo ratings for this module yet.Non-Physics ElectiveYou learn the basics of smooth manifolds, bundles (tangent, vector, and principal bundles) as well as Riemannian metrics, curvature tensors and geodesics. In addition, symmetric spaces and Lie groups are treated. In the end you can transfer metric properties of Euclidean space to 'curved' spaces and derive properties of such spaces using analytical methods.9 ECTSruns this semesterMA3205EchtzeitsystemeNo ratings for this module yet.Non-Physics ElectiveYou will learn the specific methods, problems and solutions for real-time systems. You will understand how real-time systems differ from general systems, how modelling, scheduling, concurrent programming, real-time capable communication as well as typical hardware for sensing and actuation are used, and you will be able to select and implement suitable solutions. The module closes with an introduction to fault-tolerant systems.6 ECTSruns this semesterIN2060Efficient Algorithms and Data StructuresNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of analyzing algorithms as well as central data structures and fundamental algorithmic problems. The focus is on runtime and space analysis, various search trees, hashing methods, priority queues, union-find structures, as well as maxflow/mincut and matching algorithms. In the end you will be able to analyze algorithms, assess the efficiency of data structures, and design new solutions for problems.8 ECTSruns this semesterIN2003Einführung in die ImmunologieNo ratings for this module yet.Non-Physics ElectiveYou will receive a systematic introduction to immunology: structure and function of innate and adaptive immunity, the involved cell types and organs as well as molecular basics. You will learn how immune responses proceed and how this knowledge is applied to disease contexts and medical applications such as vaccinations or autoimmunity.3 ECTSruns this semesterME510Einführung in Quantum ComputingNo ratings for this module yet.Non-Physics ElectiveYou will learn the mathematical foundations of Quantum Computing as well as the basic concepts of quantum mechanics and quantum circuits. In the end you will be able to analyze simple quantum algorithms, design and assess quantum circuits for fundamental tasks, and understand how quantum computers may be used in the future.5 ECTSruns this semesterIN2381Faser-, Matrix-, und Verbundwerkstoffe mit ihren EigenschaftenNo ratings for this module yet.Non-Physics ElectiveYou will learn about the structure, properties and potential applications of fiber, matrix and composite materials. In the end you will be able to differentiate starting materials and their processing into components, evaluate material and manufacturing processes, and assess and design potentials and manufacturing concepts for fiber-reinforced components.5 ECTSruns this semesterMW1394Flight GuidanceNo ratings for this module yet.Non-Physics ElectiveYou learn the technical fundamentals of flight guidance in civil aviation: structure of the cockpit, the functioning of onboard instruments as well as ground facilities and air traffic control technology. In the end you will be able to describe the measurement and navigation systems in use, assess their reliability and accuracy, and evaluate the operational aspects of these facilities.5 ECTSruns this semesterMW2237Fortgeschrittene Programmierwerkzeuge in der HochenergiephysikNo ratings for this module yet.Non-Physics ElectiveYou learn advanced tools and practices used in high-energy physics for software development and maintenance. In the end you will be able to explain and apply central concepts such as regular expressions, version control systems, and the use of Makefiles to automate compilation processes.3 ECTSruns this semesterNAT3054FunktionalanalysisNo ratings for this module yet.Non-Physics ElectiveYou will learn the basics of functional analysis in Banach and Hilbert spaces. In the end you will be able to analyze linear functionals and bounded as well as compact self-adjoint operators, understand duality, and apply concepts such as weak and weak* convergence.9 ECTSruns this semesterMA3001GrenzschichttheorieNo ratings for this module yet.Non-Physics ElectiveYou deepen the theory of boundary layers based on the Navier–Stokes equations. You learn derivations, analytical solutions and models for incompressible, compressible, two-dimensional and three-dimensional boundary layers as well as temperature boundary layers, stability and turbulence and experimental methods. In the end you can estimate boundary layer problems, derive approximate solutions and describe the transition to turbulence.5 ECTSruns this semesterMW0798Grundlagen der Elektrochemie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou receive a compact introduction to electrochemical fundamentals and common electroanalytical methods. You will learn thermodynamics and electrode potentials, ion transport, electrode kinetics as well as mass transport and you will be able to apply this knowledge to methods such as cyclic voltammetry, rotating disk, microelectrodes and electrochemical impedance spectroscopy. In addition, solid-state conductivities and thermoelectric materials as well as complementary spectroscopic methods are covered.5 ECTSruns this semesterCH3065Grundlagen der Katalyse, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamental concepts of catalysis in the areas of homogeneous catalysis, heterogeneous catalysis, and biocatalysis. Thermodynamics and kinetics, surface chemistry, various types of catalysis (e.g., metal, acid/base, photocatalysis, electrocatalysis), and reactions in porous catalysts are covered. By the end you will be able to apply these concepts to fundamental questions of catalysis.5 ECTSruns this semesterCH3241Grundlagen und Methoden der Physiologie, Biochemie und MolekularbiologieNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of human physiology as well as the underlying biochemical and molecular biological principles. Topics include nutrition and metabolism, blood and transport of substances, immune system, musculoskeletal system, sensory physiology, as well as proteins, carbohydrates and lipids. You will also gain insights into laboratory techniques for protein purification and analysis, as well as selected aspects of molecular cell biology.5 ECTSruns this semesterPH2110Grundlegende Algorithmen (CSE)No ratings for this module yet.Non-Physics ElectiveYou receive an introduction to fundamental sequential and simple parallel algorithms as well as the methods for their analysis. By the end you will be able to apply typical algorithms (sorting, searching, graph algorithms, some parallel arithmetic procedures), analyze their complexity and parallelism, and formally justify correctness and performance statements.5 ECTSruns this semesterIN2157Grundlegende Einführung in konventionelle MRT und Analysetechniken für Neuro-AnwendungenNo ratings for this module yet.Non-Physics ElectiveThe module conveys the physical fundamentals of conventional magnetic resonance tomography (MRT) and typical analysis techniques for neuroanatomical and neuroscientific applications. You will learn how MR signals arise, which image contrasts are formed, how common pulse sequences and artifacts work, and how BOLD-based functional MRT is built and analyzed. At the end you will be able to assess MR examinations, explain typical image contrasts and artifacts, and apply simple fMRI analysis procedures.2 ECTSruns this semesterME701High Voltage Technology - FundamentalsNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of generating and measuring high AC, DC and impulse voltages as well as calculating electric field distributions. You understand breakdown and discharge processes in gases, liquids and solids, partial discharges, and transients on transmission lines, and you can design and test HV insulation systems and test setups.5 ECTSruns this semesterEI8030High-Performance Computing for Cyber-Physical SystemsNo ratings for this module yet.Non-Physics ElectiveYou will learn advanced techniques of High-Performance Computing (HPC) with Python to develop efficient and scalable programs for Cyber-Physical Systems (e.g., transportation networks, energy systems, manufacturing). By the end you will be able to parallelize Python code for multicore and multiprocessor systems, design efficient database access, and apply HPC methods to embedded multi-core boards as well as accelerators.3 ECTSruns this semesterED160021Information TheoryNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamental concepts of information theory (e.g., entropy, mutual information, divergence) and how to apply them to the analysis of data compression and channel transmission. In the end you can explain the central quantities and their properties as well as use information measures to evaluate coding and transmission systems.5 ECTSruns this semesterEI70350Instrumentelle Methoden der Anorganischen Chemie, mündliche PrüfungNo ratings for this module yet.Non-Physics ElectiveYou will learn physical fundamentals, application and evaluation of central instrumental methods in inorganic chemistry (e.g., X-ray powder and single-crystal diffractometry, solid-state NMR, EPR, UV-Vis, vibrational spectroscopy, density functional methods). In the end you will be able to critically assess these methods in the context of current research and perform and evaluate simple to moderate measurements as well as theoretical calculations yourself.10 ECTSruns this semesterCH3000Integration of Renewable EnergiesNo ratings for this module yet.Non-Physics ElectiveYou will learn what challenges the integration of renewable energy into existing power systems poses and which technical, systemic, and market solutions exist for them. By the end you will be able to classify properties of fluctuating generation, analyze options to improve integration, and evaluate effects on system services, conventional power plants, and electricity markets.5 ECTSruns this semesterEI70860Introduction to Deep LearningNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn the fundamentals and current methods of Deep Learning, with a special focus on neural networks and Convolutional Neural Networks. You understand theory (e.g. backpropagation, SGD, regularization) and acquire practical experience in training and optimizing network architectures, so you can solve simple applications such as digit recognition or image classification.6 ECTSruns this semesterIN2346Machine LearningNo ratings for this module yet.Non-Physics ElectiveYou will learn the probabilistic foundations of machine learning and central learning algorithms — from simple neighborhood and clustering methods to linear models and support vector machines up to neural networks and the EM method. By the end you will be able to select, describe and derive suitable algorithms for given problems.8 ECTSruns this semesterIN2064Machine Learning for 3D GeometryNo ratings for this module yet.Non-Physics ElectiveYou will learn theoretical foundations and modern machine‑learning methods for 3D geometric data. The module covers representations of shapes and scenes as well as deep‑learning architectures for discriminative and generative tasks such as classification, segmentation, reconstruction and synthesis. In the end you will be able to understand and practically apply common approaches to point clouds, volumetric data, multi‑view inputs and graphs.6 ECTSruns this semesterIN2392Mathematical Models in BiologyNo ratings for this module yet.Non-Physics ElectiveYou learn how dynamic and stochastic models are constructed and applied in biology. The module covers, among other things, linear compartment models, Markov chains, birth–death and branching processes, as well as age- and space-structured populations. In the end you will be able to compare different modeling approaches and choose the appropriate model level for a biological system.9 ECTSruns this semesterMA3601Mathematik der Klima- und ErdsystemwissenschaftenNo ratings for this module yet.Non-Physics ElectiveYou will learn mathematical methods for the analysis and modeling of nonlinear processes in the climate and Earth system. In the end you will be able to explain the basics of energy balance modeling, nonlinear and stochastic dynamics as well as fundamental equations of fluid mechanics, and mathematically analyze time series from climate and Earth system processes.9 ECTSruns this semesterED110088Medizintechnik 1 - ein organsystembasierter AnsatzNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of therapeutic and diagnostic medical technology based on selected organ systems (skin, sense organs especially the eye, cardiovascular system, musculoskeletal and movement system). You will understand the relevant anatomical-physiological fundamentals, typical disease patterns and common medical-technical diagnostic and therapeutic approaches and you will be able to apply this knowledge to medical-technical questions.5 ECTSruns this semesterMW0056Modeling, Control and Design of Wind Energy SystemsNo ratings for this module yet.Non-Physics ElectiveYou will receive a comprehensive introduction to the physical and engineering fundamentals of wind energy plants (aerodynamics, dynamics, control and design). By the end you will be able to analyze wind turbine performance and dynamic behavior, explain typical control strategies and assess design decisions with regard to cost and performance.5 ECTSruns this semesterMW2152Molekulare OnkologieNo ratings for this module yet.Non-Physics ElectiveYou will explore the molecular foundations of tumorigenesis, progression and metastasis. You will become familiar with oncogenes, tumor suppressor genes, epigenetic changes, the tumor microenvironment, proteolytic networks, and the experimental methods of molecular oncology, and you will be able to apply this knowledge to current research questions.5 ECTSruns this semesterWZ3213Nanomechanical SystemsNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of nanomechanical systems: construction of freely suspended nanostructures, their vibrational behavior in the linear and nonlinear regime, drive and detection mechanisms as well as damping and quality factor. Classical as well as quantum mechanical aspects are addressed and modern applications in sensing and quantum technologies are discussed. In the end you will critically assess developments in this field.5 ECTSruns this semesterEI71092NanosystemsNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of nanofabrication and nanotechnology as well as requirements for nanoscale systems. Using current examples (e.g. logic, storage, hard drives) and measurement methods you will learn how nanosystems are characterized, fabricated and scaled. In the laboratory project you will apply measurement techniques (e.g. VNA, lock‑in) and link theory and practice.5 ECTSruns this semesterEI7355Nichtlineare OptimierungNo ratings for this module yet.Non-Physics ElectiveYou engage with theory and numerical methods of nonlinear optimization. You will learn advanced methods for unconstrained and, in particular, constrained optimization problems (e.g., SQP, barrier and interior-point methods) and you will be able to assess and apply convergence properties of such methods in the end.5 ECTSruns this semesterMA3503Numerische Programmierung 1 (CSE)No ratings for this module yet.Non-Physics ElectiveIn this module you learn fundamental methods of numerical analysis: analysis of rounding errors and stability, methods for solving linear systems and eigenvalue problems, interpolation, numerical integration, as well as iterative and time integration procedures. By the end you will be able to understand the mathematical principles of these algorithms, explain their properties, and apply them to concrete examples.8 ECTSruns this semesterMA3305Organische Photochemie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn about photochemical reactions that proceed through direct excitation, triplet sensitization, or single-electron transfer (photoredox catalysis). The focus is on transformations that are not accessible by thermal methods; typical substrates are alkenes, enones, carbonyl compounds and arenes. In the end you will be able to describe the mechanisms and the most important photochemical transformations and relate their application to concrete synthetic targets as well as the stereochemical course.5 ECTSruns this semesterCH3038Organische Umweltchemie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou learn how organic substances react in the environment, distribute themselves and occur in different media (water, soil, air, organisms). You will be able to predict their behavior at the end based on chemical properties and simple models, for example persistence, bioaccumulation and transformation.3 ECTSruns this semesterCH0141Photonic Quantum TechnologiesNo ratings for this module yet.Non-Physics ElectiveYou learn the basics of photonic quantum technologies: how photons are used as information carriers over long distances and how semiconductor elements generate quantum light, realize qubits and route or couple photons. In the end you can apply the fundamentals of single- and two-qubit states as well as light–matter interaction and assess various system-related advantages and disadvantages.5 ECTSruns this semesterCIT4430005Physik der MagnetresonanzbildgebungNo ratings for this module yet.Non-Physics ElectiveYou will learn the physical fundamentals of magnetic resonance imaging (MRI). The focus of this first part is how MR signals arise, how they are detected and manipulated, and how images are generated from these signals. In the end you will be able to explain and analyze MR signals and basic image formation processes as well as simple pulse sequences.5 ECTSruns this semesterME703Probability TheoryNo ratings for this module yet.Non-Physics ElectiveYou will learn the measure-theoretic probability theory for sequences of random variables and martingales. By the end you will be able to understand and apply central results such as the law of large numbers, central limit theorems, and fundamental martingale results.9 ECTSruns this semesterMA2409Protein Prediction II for BioinformaticiansNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn modern methods for predicting protein function from sequence and structure and applying them. You understand which aspects of function can be predicted, which data and ML strategies are required for that, and how to avoid overfitting through data leakage and bias. In the end you can design, evaluate, and implement your own prediction approaches down to pseudocode level.8 ECTSruns this semesterIN2230Protein Prediction II for Computer ScientistsNo ratings for this module yet.Non-Physics ElectiveYou will learn methods for predicting protein functions from sequence and structure information, as well as approaches for predicting interactions, subcellular localization, and effects of individual amino acid variants. By the end, you will be able to critically evaluate ML/AI-based prediction methods, design your own solutions, and implement them in pseudocode or programs.8 ECTSruns this semesterIN2291Quantenmechanische Grundlagen der NMR-Spektroskopie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou learn the quantum mechanical foundations required for understanding and designing modern NMR experiments. In the end you will be able to describe spin systems with different formalisms, calculate their time evolution, and analyze experimental observables of interest as well as evaluate NMR experiments and design new experiments.5 ECTSruns this semesterCH3034Regenerative Energiesysteme 1No ratings for this module yet.Non-Physics ElectiveYou gain a concise overview of the most important renewable energies, their technologies as well as political, social and ecological framework conditions from a global perspective. In the end you will be able to explain the basic principles, applications and limits of the technologies covered and select suitable solutions for typical use cases.3 ECTSruns this semesterMW1475RoboticsNo ratings for this module yet.Non-Physics ElectiveYou learn how mechanical systems — in particular robotic manipulators — are translated into mathematical models to describe motion and dynamics. On this basis you derive control parameters (for example for PID controllers) to compensate deviations along predefined trajectories and to regulate position or force.6 ECTSruns this semesterIN2067Scientific Computing INo ratings for this module yet.Non-Physics ElectiveYou will learn the steps of the scientific computing pipeline in scientific data processing, with a focus on model development and discretization. In the end you will be able to derive and classify simple mathematical models and apply suitable discretization and time integration methods, and assess their accuracy and suitability.5 ECTSruns this semesterIN2005Simulation of Quantum DevicesNo ratings for this module yet.Non-Physics ElectiveYou learn how quantum effects in nanoscale devices are described and how to apply suitable numerical methods to simulate such systems. Topics range from the Schrödinger equation and its numerical treatment to quantum transport simulations. In the end you can formulate physical models and solve them numerically as well as develop simple own simulation codes.5 ECTSruns this semesterEI70760Statistical LearningNo ratings for this module yet.Non-Physics ElectiveYou learn the basics and advanced methods of supervised and unsupervised statistical learning. In the end you will be able to understand and apply models for regression and classification, use techniques for dimensionality reduction and cluster analysis, and follow probabilistic formulations of learning problems while designing new algorithms.6 ECTSruns this semesterMA4802Sustainable MobilityNo ratings for this module yet.Non-Physics ElectiveIn the module Sustainable Mobility you will learn concepts and assessment methods for sustainability in the mobility sector. You will be able to categorize sustainability questions of mobility systems and perform and interpret life cycle analyses as well as life cycle cost analyses.5 ECTSruns this semesterEI80004Symmetrie und Gruppentheorie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of group theory and its application to symmetry questions in molecules and solids. In the end you will be able to apply group-theoretical tools to simplify and solve problems in chemistry and quantum mechanics and you will know the most important examples from inorganic, organic and solid-state chemistry.5 ECTSruns this semesterCH3337System-on-Chip TechnologiesNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals, current trends and challenges in the development of digital system-on-chip (SoC). You understand the structure and function of the most important SoC building blocks — processors, memory and interconnects — as well as implementation methods (FPGA, standard-cell, full-custom) and energy-saving approaches in embedded systems.5 ECTSruns this semesterEI7384Säugetierzelltechnologie, KlausurNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn central concepts and methods of mammalian cell technology, in particular how synthetic biology is applied to mammalian cells. You will gain knowledge on molecular fundamentals, gene editing, genetic circuits, sensors and actuators, as well as applications in cell theranostics and regenerative medicine, and you will be able to explain and practically apply the relevant methods and concepts at the end.5 ECTSruns this semesterCH0170Thermodynamics for Energy ConversionNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of thermodynamics and their application to real energy conversion processes. In the end you will be able to apply energy and mass balances as well as the first and second laws, evaluate processes (including cycle processes), and analyze exergy losses. You will also know the essential thermodynamic concepts for steam and ORC cycles, gas turbines, refrigerating machines, fuel cells, electrolysis, as well as selected renewable technologies such as geothermal and solar thermal energy.5 ECTSruns this semesterMW1419Tissue Engineering and Regenerative Medicine: Grundlagen und AnwendungenNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn the fundamentals and applications of tissue engineering and regenerative medicine. You will understand how materials, cells, biomanufacturing and bioreactors are combined to develop tissues, and you will be able to evaluate strategies for (re)generation of tissues and organs and apply them to clinical questions.5 ECTSruns this semesterED160004Tractor Engineering FundamentalsNo ratings for this module yet.Non-Physics ElectiveYou receive a broad insight into the construction fundamentals of modern tractors with a strong practical focus. You will learn historical development, overall structure and individual assemblies (e.g. transmission, axles, hydraulics) and apply technical basics to calculations. In the end you can describe the function, limits and design requirements of tractors and solve simple design problems.5 ECTSruns this semesterWZ1309Trends in der Medizintechnik 1No ratings for this module yet.Non-Physics ElectiveIn this module you will engage with current developments and research topics in medical technology. You will learn to analyze scientific publications, extract the key content, and present it in a didactic form as a presentation. In the end you will be able to assess the state of the research and critically evaluate interdisciplinary innovations.3 ECTSruns this semesterMW0715Virtuelle Physik: Moderne Modellierungstechnik und ihr Einsatz in der ComputersimulationNo ratings for this module yet.Non-Physics ElectiveYou learn how physical systems are modeled equation-based with modern, object-oriented languages such as Modelica, and how these models are used in computer simulations. In the end you will be able to model electrical and mechanical systems, build model libraries, and select suitable time integration methods for simulations.4 ECTSruns this semesterIN2236Visual Data AnalyticsNo ratings for this module yet.Non-Physics ElectiveYou will learn the entire visualization pipeline — from data acquisition and preprocessing over interpolation and filtering to presentation. You understand methods of information and scientific visualization for 2D/3D scalar and vector fields as well as terrain rendering and can evaluate and apply suitable techniques.5 ECTSruns this semesterIN2026Zeitabhängige Spektroskopie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou learn how time-resolved spectroscopy observes reaction pathways on time scales from milli- to femtoseconds and which methods are used for this. By the end you will be able to classify methods of time-resolved spectroscopy, select suitable methods for analytical or mechanistic questions, and critically discuss experimental results.5 ECTSruns this semesterCH3070Advanced Deep Learning for Computer Vision: Dynamic VisionNo ratings for this module yet.Non-Physics ElectiveYou will learn advanced deep-learning methods with a clear focus on video analysis for computer-vision tasks. Beyond the theoretical foundations, you will train and implement neural networks yourself and work on a semester-long project on current research topics of the group.8 ECTSno date this semesterIN2389Advanced Deep Learning for PhysicsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn deep-learning methods and numerical simulation algorithms for physical materials such as fluids and deformable bodies. By the end you will be able to apply concepts such as generative models, time-series prediction, and numerical methods for partial differential equations, and select suitable network architectures and solvers for concrete tasks.6 ECTSno date this semesterIN2298Advanced Finite ElementsNo ratings for this module yet.Non-Physics ElectiveYou will learn advanced finite element techniques and apply them to concrete applications. In the end, you will be able to independently explore current research topics, work on Fachliteratur, and use modern open-source frameworks to solve complex PDE problems.7 ECTSno date this semesterMA5337Advanced Parallel Computing and Solvers for Large Problems in EngineeringNo ratings for this module yet.Non-Physics ElectiveYou learn how parallel computers are used for large-scale simulations of structure and fluid mechanics. You will gain an overview of methods, algorithms and software for multi-processor architectures and, in the end, you will be able to assess and design basic parallel solution approaches for very large systems of equations.5 ECTSno date this semesterMW1746Advances in Electric AircraftNo ratings for this module yet.Non-Physics ElectiveThe module introduces electric aviation. You will learn the architecture and main components of electric and hybrid aircraft (in particular propulsion and energy storage systems), design concepts as well as operational and regulatory aspects and you can apply basic performance evaluation methods.5 ECTSno date this semesterED110052Algorithmic Game TheoryNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of algorithmic game theory at the intersection of computer science, mathematics, and economics. In this module you will deal with algorithmic aspects of game-theoretic solution concepts such as Nash equilibria and with the design of economic mechanisms; in the end you will be able to analyze these concepts algorithmically and in terms of complexity theory.5 ECTSno date this semesterIN2239Algorithms for Scientific ComputingNo ratings for this module yet.Non-Physics ElectiveYou will learn efficient, hierarchical algorithms and data structures for scientific computing and how to implement them. The focus is on fast discrete Fourier and related transforms (FFT, DCT/DST), space-filling curves (Peano, Hilbert) for organizing multi-dimensional data, as well as hierarchical methods such as Sparse Grids and adaptive representations. In the end you will be able to explain such procedures, analyze them, and implement them if needed.8 ECTSno date this semesterIN2001Analytische und Organische Umweltchemie, KlausurNo ratings for this module yet.Non-Physics Elective5 ECTSno date this semesterCH3121Angewandte Elektrochemie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn the electrochemical fundamentals of important energy conversion and storage technologies (e.g., fuel cells, electrolysis, batteries, supercapacitors, redox-flow systems). By the end you will be able to explain operating principles, electrochemical and thermodynamic processes, assess applications, and formulate research questions related to these technologies.5 ECTSno date this semesterCH3063Anwendungen Wissenbasierter MethodenNo ratings for this module yet.Non-Physics ElectiveYou will learn modern techniques for the design and implementation of knowledge-based systems and their application to real-world problems, in particular on the World Wide Web and for the control of intelligent software systems. In the end you will be able to design central components of such systems and select and apply suitable methods.5 ECTSno date this semesterIN2058Applications of Mathematical BiologyNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamental mathematical methods of biology, including nonlinear dynamics, bifurcation and singular perturbation theory, as well as fundamental stochastic processes. These methods will be applied to important models from ecology, biochemistry, regulatory pathways, neuroscience and population genetics, so that you can understand research articles and adapt standard models to problems in the end.9 ECTSno date this semesterMA3602Applikation von Radioaktivität in Industrie, Forschung und MedizinNo ratings for this module yet.Non-Physics ElectiveYou will learn the physical and mathematical fundamentals for the application of radioactivity in industry, research and medicine. In the end you will be able to describe and apply concepts of radiation protection, detection and shielding as well as typical medical, industrial and research-related applications of radioactive sources in simple practical tasks.5 ECTSno date this semesterMW0892Asteroiden auf erdnahen BahnenNo ratings for this module yet.Non-Physics ElectiveYou learn theories, methods and tools for the discovery, tracking, cataloguing and characterization of near-Earth objects (NEOs). You also engage with technologies and approaches for mitigation, distraction or destruction of such objects as well as relevant data sources and institutions. In the end you can assess the threat potential of NEOs and evaluate design processes for distraction missions.3 ECTSno date this semesterMW1790Basic Mathematical Methods for Imaging and VisualizationNo ratings for this module yet.Non-Physics ElectiveYou learn fundamental mathematical methods that are applied in imaging and visualization, and you can subsequently use them to formulate, analyze and solve concrete problems. Topics include, among others, linear algebra, analysis, optimization and probability theory and their applications in image processing and computer vision. In the end you will be able to select appropriate methods, optimize them and transfer them to related engineering disciplines.5 ECTSno date this semesterIN2124Bildverstehen II: Robot VisionNo ratings for this module yet.Non-Physics ElectiveYou learn practice-relevant methods and algorithms of robot vision and machine vision. The lecture explains fundamentals, data structures and implementation aspects of central procedures and shows typical applications, so that you can analyze, evaluate and develop practical applications for image processing tasks.4 ECTSno date this semesterIN2016Biologische Festkörper-NMRNo ratings for this module yet.Non-Physics ElectiveIn this module you will receive an introduction to the fundamentals of solid-state NMR spectroscopy with a focus on quantum mechanical principles and anisotropic interactions. You will learn theories for decoupling and recoupling experiments as well as strategies for assigning spin systems and determining structures in the solid state. In the end you will be able to understand the basic methods and independently interpret NMR experiments.3 ECTSno date this semesterCH5174Biomolecular ElectronicsNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamentals and current concepts of biomolecular electronics: from electronic structure and basic device components to electronic transport in biomolecules, surface functionalization, experimental test systems and applications such as electronic biosensors and organic electronics. By the end you will be able to explain the key mechanisms and structures and combine concepts for the development of simple biomolecular systems.5 ECTSno date this semesterEI70210Biophysikalische ChemieNo ratings for this module yet.Non-Physics ElectiveYou will learn modern methods of biophysical chemistry and their theoretical foundations. With spectroscopic methods, light scattering, as well as methods for diffusion and sedimentation, you can characterize biomolecules in solution. In the end you will be able to quantitatively describe thermodynamic and kinetic processes such as binding and protein folding and to analyze and interpret correlating measurement data.5 ECTSno date this semesterCH0263Bioprinting: Fundamentals and ApplicationsNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals and applications of bioprinting: from technologies and bioinks to 3D in vitro models and regulatory aspects. In the end you will be able to evaluate bioprinting processes and their advantages and disadvantages, formulate design criteria for bioinks, and describe methods to assess cell viability.5 ECTSno date this semesterMW2479Chemie der Wirkstoffkunde, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will get an overview of the origin and treatment of tumors and infections as well as the action and clinical application of cytostatics, antibiotics, virostatics and antiprotozoa. You will learn how chemical structure, pharmacokinetic properties, side effects and resistance mechanisms determine the action of drugs, and you will gain insights into drug targets, current trends and computer-aided drug design (CADD) methods. In the end you will be able to analyze drug–target interactions and apply CADD methods to study and optimize drug candidates.5 ECTSno date this semesterCH0156Climate ChangeNo ratings for this module yet.Non-Physics ElectiveYou engage with the theoretical foundations and the impacts of climate change as well as with methods for capturing and analyzing climate-related data. In the end you will be able to reproduce relevant theories, evaluate impacts, and apply data collection and analysis methods to present reasoned conclusions.6 ECTSno date this semesterWZ8088Cloud-Based Data ProcessingNo ratings for this module yet.Non-Physics ElectiveYou will learn how large-scale, cloud-based systems are designed, implemented and operated. The module conveys foundations of distributed systems, data center infrastructure and current cloud technologies as well as methods for scaling, resource management and identifying bottlenecks.6 ECTSno date this semesterCIT323005Cognitive NeuroscienceNo ratings for this module yet.Non-Physics ElectiveYou learn how information is processed in the cortex of mammals: structure of the cortex, typical circuits, principles of cortical processing and models of their function. By the end you can sketch cortical processes, derive their neurobiological prerequisites, and explain their relevance for behavior, diseases and technical interventions.3 ECTSno date this semesterWZ2693Cognitive SystemsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn fundamental concepts of human cognition (perception, cognition, action) and how these abilities can be transferred to technical systems, especially in robotics. In the end you will be able to apply mathematical and algorithmic methods as well as architectures for cognitive systems to realize perception, planning and action execution in technical systems.5 ECTSno date this semesterIN2222Complexity TheoryNo ratings for this module yet.Non-Physics ElectiveYou learn formal computational models (in particular Turing machines and circuits) as well as the most important complexity classes (e.g. L, NL, P, NP, PSPACE, EXP, NEXP, PH). By the end you will be able to analyze problems with respect to time and space complexity, apply reductions and completeness proofs, and classify advanced concepts such as alternation, randomized methods, and interactive proof systems.8 ECTSno date this semesterIN2007Computational Methods for Nanoelectronics: Quantum ModelsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn quantum mechanical methods for describing and simulating nanoscale building elements. The focus is on transfer-matrix methods, density functional theory and quantum mechanical transport approaches (Green's functions). In the end you will be able to apply these methods to analyze and investigate numerically different nano-structured architectures (e.g., heterostructures, molecular structures).5 ECTSno date this semesterEI71101Computational Physiology for Medical Image ComputingNo ratings for this module yet.Non-Physics ElectiveYou learn how computational models are used to derive physiological and diagnostic information from clinical image data. By the end you can deploy and evaluate models that, for example, extract blood flow, metabolism, tissue microstructure, or disease progression from modalities such as MRI, CT, or PET.6 ECTSno date this semesterIN2319Computer Architecture and NetworksNo ratings for this module yet.Non-Physics ElectiveYou learn how computers are internally constructed and how their components work together. In the end you can name the most important building blocks of microprocessors and computers and analyze their interaction as well as classify and use different levels of parallelism in hardware and software.5 ECTSno date this semesterIN2189Computer Vision I: Variational MethodsNo ratings for this module yet.Non-Physics ElectiveYou learn how many tasks of image processing (e.g. denoising, desmearing, segmentation, optical flow, stereo depth estimation, 3D reconstruction) are formulated and solved as variational problems. In the end you know the Euler–Lagrange approach and PDEs, efficient solution methods as well as convex formulations and relaxations and you can implement central concepts in Matlab.8 ECTSno date this semesterIN2246Computer Vision II: Multiple View Geometry (3D Computer Vision)No ratings for this module yet.Non-Physics ElectiveYou will learn the mathematical foundations of multiple-view geometry in order to reconstruct camera motion and 3D geometry from several images. In the end you will understand image formation, epipolar geometry, camera calibration, rank conditions and bundle adjustment and you will be able to implement central algorithms in Matlab.8 ECTSno date this semesterIN2228Database Systems on Modern CPU ArchitecturesNo ratings for this module yet.Non-Physics ElectiveYou learn how modern CPU architectures (CPU, cache, TLB, memory hierarchy, branch prediction) influence the behavior and performance of database systems. In the end you will be able to analyze memory access patterns, adapt database internals so that they use CPU/cache efficiently, and assess cache-aware algorithms as well as compression methods for throughput improvement.6 ECTSno date this semesterIN2118Datenanalyse und VersuchsplanungNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamentals of statistics and probability theory as well as methods of experimental design. Building on this, procedures of data analysis (e.g., cluster methods, principal component analysis, exploratory factor analysis) and model types for structure optimization such as Bayesian networks are covered. In the end you can analyze data from large data sets and create simple model structures for parameter identification in biomechanical/biochemical networks.5 ECTSno date this semesterMW2248Differential FormsNo ratings for this module yet.Non-Physics ElectiveYou learn the foundations and tools of differential forms on smooth manifolds: construction, exterior product, exterior derivative, integration and Stokes’ theorem. In the end you can differentiate, integrate and apply differential forms in contexts of geometry, topology, analysis and physics.5 ECTSno date this semesterCIT4130022Dynamische SystemeNo ratings for this module yet.Non-Physics ElectiveYou learn the theory of dynamical systems for ordinary differential equations and mappings in finite-dimensional phase spaces. The module provides tools for analyzing stable and unstable solutions, bifurcations, chaos and ergodic properties; at the end you can analyze geometric and topological properties of trajectories and attractors and transfer the methods to differentiable manifolds and infinite-dimensional spaces.9 ECTSno date this semesterMA3081Einführung in die digitale SignalverarbeitungNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of digital signal processing: signals and systems in the time and frequency domain, discretization, filter operations, frequency transformations, compression techniques and initial aspects of digital image processing. You also learn how the algorithms are implemented on a digital signal processor (DSP) and apply these implementations in the lab. In the end you can analyze theoretical concepts and practically implement suitable algorithms.7 ECTSno date this semesterIN2061Einführung in die KernenergieNo ratings for this module yet.Non-Physics ElectiveYou will learn the technical and physical foundations of electricity generation with nuclear reactors, including fission, energy conversion, and reactor designs. You will also gain an overview of radiation, radiation protection, the nuclear fuel cycle, nuclear waste, and the principles of nuclear safety, as well as historical and economic aspects of nuclear energy.5 ECTSno date this semesterMW0799Einführung in the Theranostic: Konzepte, Implementierung, klinische AnwendungNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals and clinical applications of the theranostic approach in nuclear medicine. After the module you will understand the radiopharmaceuticals used, the measurement techniques of PET and SPECT as well as their dosimetry and typical applications in neuroendocrine tumors and prostate cancer.5 ECTSno date this semesterME56795ErdsystemmodellierungNo ratings for this module yet.Non-Physics ElectiveYou deepen your methods of Earth system modelling and learn how the atmosphere, oceans, biosphere and cryosphere are simulated together. You acquire the ability to develop simple to complex climate and Earth system models, to understand nonlinear feedbacks, and to validate models with observational data. In the end you can select suitable Earth system models for specific questions and critically evaluate their results.5 ECTSno date this semesterED110011Farbzentren in FestkörpernNo ratings for this module yet.Non-Physics ElectiveYou will receive a compact overview of colour centers in solids, primarily in diamond, SiC and 2D materials. You will learn defect formation, incorporation of foreign atoms and the use of atomic or molecular defects for sensor and photonic applications as well as practical application in a laboratory setup.5 ECTSno date this semesterNAT0110Festkörpermaterialien: Vom Design über die Chemie bis zu funktionalen Bauelementen, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn design, chemistry and technology of solid-state materials for applications in energy, information and catalysis. The module covers synthesis and processing routes of ceramic solids, glasses and thin films up to production processes such as 3D printing. In the end you will be able to independently address problems in synthesis, structure–property design and engineering for components such as batteries, fuel cells, sensors or memristive elements.5 ECTSno date this semesterCH3009Financial Mathematics 2No ratings for this module yet.Non-Physics ElectiveYou learn stochastic processes and Ito calculus for modeling financial markets and understand the concepts of arbitrage, completeness and risk-neutral valuation. You can price derivatives (including exotic options) in continuous models, especially Black-Scholes and its generalizations, and implement various numerical methods.9 ECTSno date this semesterMA3408Fortgeschrittene Konzepte des Quantum ComputingNo ratings for this module yet.Non-Physics ElectiveYou will learn advanced concepts and algorithms of Quantum Computing, with a focus on the quantum Fourier transform, the Shor algorithm and quantum error correction. In the end you will be able to distinguish these techniques, apply the quantum Fourier transform in new scenarios and understand the mathematical formalism of error correction, including the stabilizer formalism.5 ECTSno date this semesterIN2400Foundations of Data AnalysisNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn mathematical methods of data analysis, in particular linear and nonlinear procedures for data dimensionality reduction as well as techniques for reconstructive restoration of structured signals. By the end you will be able to apply and assess singular value decomposition, random matrices, compressive methods and manifold-based procedures.8 ECTSno date this semesterMA4800FourieranalysisNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of Fourier analysis on Euclidean spaces: Fourier series on period intervals and the Fourier transform on R^n, including generalizations to L^2 and distributions. In the end you will be able to assess convergence and regularity questions and apply Fourier techniques to applications such as PDEs, signal processing and sampling.5 ECTSno date this semesterMA4064Fraktale GeometrieNo ratings for this module yet.Non-Physics ElectiveYou will learn how to construct fractal sets with iterated function systems, analyze their fundamental properties and dimensions, and relate them to dynamical systems. You will also learn how to create approximation models with fractal functions and fractal surfaces.5 ECTSno date this semesterMA5207Fundamentals of Climate ChangeNo ratings for this module yet.Non-Physics ElectiveYou will gain an overview of the physical foundations of climate change, observed changes in physical, biological and biogeochemical systems, and the attribution of anthropogenic causes. In addition, measures for mitigation will be introduced. At the end you will be able to explain causes and impacts of climate change and to recognize and evaluate observations in natural systems.3 ECTSno date this semesterWZ8100Funktionelle NanomaterialienNo ratings for this module yet.Non-Physics ElectiveYou will learn the chemical and physical properties as well as the functionalities of nanoscale materials. The module covers the production of nanoparticles and colloids, special interfacial properties, and experimental characterisation methods such as microscopy and spectroscopy. In the end you will be able to apply relevant concepts for the generation and experimental analysis of such materials and to read and discuss current Fachpublikationen (specialist publications).5 ECTSno date this semesterCH3218GasdynamikNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of compressible flow theory: from the compressible Navier–Stokes equations and thermodynamic principles through stationary flow line theory and shock relations to linear and nonlinear wave dynamics. In the end you will be able to treat stationary and unsteady gas-dynamic problems in sub- and supersonic regimes with analytical methods and to estimate simple multidimensional effects in supersonic flows.5 ECTSno date this semesterMW0357Geometric Continuum MechanicsNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals of a differential-geometric approach to continuum mechanics. With the help of differential forms and integration on manifolds you will formulate and apply laws such as balance principles and stress theory in a metric- and coordinate-free language.6 ECTSno date this semesterMA5339Geometric Methods for Physics of Magnetized PlasmasNo ratings for this module yet.Non-Physics ElectiveYou will learn to apply geometric methods (Hamiltonian and Lagrangian formalism) for the systematic reduction of complex multi-scale dynamical systems based on magnetized plasmas. You understand perturbative Lie-Transform methods, the derivation of field and kinetic equations from variational principles as well as the associated conservation laws; in addition you will see how continuous variational descriptions can be transferred to discrete formulations and implemented numerically, e.g. in Particle-In-Cell Monte-Carlo simulations.5 ECTSno date this semesterMA5333Geometric Numerical Integration 1No ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of geometric (structure-preserving) numerical integration for ordinary differential equations. In the end you can recognize different geometric structures in differential equations and select and apply suitable numerical methods that preserve these structures.5 ECTSno date this semesterMA5341Geometry ProcessingNo ratings for this module yet.Non-Physics ElectiveYou will learn mathematical foundations and practical representations of curves and surfaces, as well as methods for modeling, analysis, and presentation of geometric shapes. In the end you can assess various representations (parametric, implicit, splines, subdivision, CSG, voxel, neural), reconstruction from point sets, and level-of-detail strategies, and independently develop and implement suitable approaches.6 ECTSno date this semesterIN2297Grundlagen der Immunologie I & IINo ratings for this module yet.Non-Physics ElectiveIn this module you will receive a systematic introduction to the fundamentals of immunology (Adaptive and Innate Immunity) as well as their relevance for diseases and research. At the end you will be able to explain central concepts, key experiments and methods of immunology and assess their relevance for disease mechanisms and immunological research.6 ECTSno date this semesterMH4L68571Grundlagen der molekularen Biologie für PhysikerNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of molecular biology with a practical focus: from computational principles to the use of biological materials. By the end you can understand and apply elementary molecular biological techniques, e.g., DNA replication, cloning, protein expression, and handling cells for protein production.3 ECTSno date this semesterPH2236Grundlagen der NukleartechnikNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamental physical concepts and mathematical models of nuclear engineering. In the end you will be able to understand neutron behavior, the thermo-hydraulic fundamentals, radiation protection principles as well as the structure and operating principles of modern light-water reactors and to technically assess simple safety-related questions.5 ECTSno date this semesterMW0884Grundlagen und Methoden der Biochemie und MolekularbiologieNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals and methods of molecular genetics, biochemistry and molecular cell biology. By the end you will be able to understand the chemical basis of DNA/RNA, principles of recombinant DNA techniques, cloning, recombinant protein expression and purification methods, as well as basics of microbial manipulations and molecular evolution, and follow the functioning of relevant analysis software.5 ECTSno date this semesterPH2139Grundlagen und thermohydraulische Analyse von KraftwerkenNo ratings for this module yet.Non-Physics ElectiveYou will learn the fundamentals and the thermal-hydraulic analysis of nuclear energy systems, with a focus on light-water reactor technology. In the end you will understand how the heat generated in reactors reaches the electrical generator and how mathematical models for heat and flow processes can be used for the development and safety analysis of nuclear systems.5 ECTSno date this semesterMW0964Grundlegende Einführung in fortgeschrittene MRT und Analysetechniken für Neuro-AnwendungenNo ratings for this module yet.Non-Physics ElectiveYou will receive a fundamental, interactive introduction to advanced MRI and MR spectroscopy methods with a focus on neuro-applicable examples. By the end you will be able to explain the most important principles of quantitative, structural and physiological MRI methods as well as basic analysis techniques for investigating connectivity and metabolism and to recognize suitable applications along with their limitations.2 ECTSno date this semesterME702Informatikanwendungen in der Medizin IINo ratings for this module yet.Non-Physics ElectiveYou will learn advanced methods of medical image processing, segmentation and registration as well as the fundamentals of machine learning and 3D volume visualization. In the end you will be able to distinguish the most important algorithm types, assess when they are applied, implement central procedures in Python, and apply them to clinical questions.5 ECTSno date this semesterIN2022Introduction to BioengineeringNo ratings for this module yet.Non-Physics ElectiveThe module provides fundamental knowledge about the structure and function of cells and tissues, as well as methods used to measure, analyze and model biological systems. You will learn how to modify cellular functions, produce tissues and organs, and apply modern tools such as microfluidics, organoids and biochips. By the end you will be able to understand biological measurement data, process it in silico, and assess the relevance of these concepts for bio- and biomedical engineering.5 ECTSno date this semesterME25666Introduction to Biological ImagingNo ratings for this module yet.Non-Physics ElectiveYou will learn the engineering fundamentals of modern biological imaging with a focus on image reconstruction (tomography). You will gain insight into hardware, physical principles and algorithmic implementation of common and emerging imaging methods (e.g. microscopy, MRI, optical/optoacoustic methods) as well as applications in biology and medicine.6 ECTSno date this semesterME562Introduction to Micro Air VehiclesNo ratings for this module yet.Non-Physics ElectiveYou learn the basics of small flight systems (drones): structure, aerodynamics, modeling, control, navigation, perception and planning. In the end you will be able to understand mechanical and mathematical models of these systems and apply fundamental methods for regulation and navigation.3 ECTSno date this semesterLRG6302Introduction to Stochastic Differential Equations: Theory and NumericsNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of stochastic differential equations (SDEs) as well as their numerical treatment. By the end you will know the most important stochastic processes, the construction of stochastic integrals, and solution methods for SDEs, and you can analytically solve simple SDEs and apply numerical schemes to approximate general SDEs.3 ECTSno date this semesterMA5950Kernfusion - ReaktortechnikNo ratings for this module yet.Non-Physics ElectiveYou will receive an introduction to the fundamentals of nuclear fusion reactor technology and fusion technology, focusing on the Tokamak. After the module you will know the most important fusion reactions, the physical basics summarized briefly, the operating principles of existing and planned fusion reactors, as well as the main components of a tokamak and the state of the art, including safety and socio-economic aspects.3 ECTSno date this semesterMW1112Machine Learning and OptimizationNo ratings for this module yet.Non-Physics ElectiveYou will learn advanced concepts and methods of machine learning as well as common optimization procedures for their training. In the end you will be able to apply and further develop modern learning methods (e.g. deep neural networks), design optimization algorithms and analyze their behavior theoretically and empirically.5 ECTSno date this semesterEI70360Machine Learning for Regulatory GenomicsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn biological fundamentals of gene regulation and modern deep learning methods for modeling sequence-based regulatory processes. After completion you will be able to apply genome-wide experimental procedures and deep learning models for different stages of gene expression and biologically interpret the model predictions.6 ECTSno date this semesterIN2393Maschinelles Lernen für ComputersehenNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamental machine learning methods that are frequently used in computer vision (e.g., object classification, segmentation, denoising, camera calibration). In the end you will be able to explain the mathematical formulation of central procedures, create simple implementations, and apply them to concrete datasets from the field of computer vision.5 ECTSno date this semesterIN2357Mathematical Introduction to Quantum Information ProcessingNo ratings for this module yet.Non-Physics ElectiveYou will learn the mathematical foundations of quantum information theory. The module covers abstract foundations of quantum mechanics, measurement and development theory, quantum statistics and tomography, as well as fundamental concepts regarding limits and resources of quantum information processing.9 ECTSno date this semesterMA5057Mathematische Einführung in die MagnetohydrodynamikNo ratings for this module yet.Non-Physics ElectiveYou will receive a mathematically focused introduction to magnetohydrodynamics (MHD) — the theory of electrically conducting fluids in a magnetic field. By the end you will be able to understand the fundamental MHD equations, their derivation from multi-fluid models, central conservation laws, as well as reduced and variational/Hamiltonian formulations, and place them in the scholarly literature.3 ECTSno date this semesterMA5902Medicine in the Tropics and Global HealthNo ratings for this module yet.Non-Physics ElectiveYou will learn the basics of tropical medicine and global health, gain insights into important and neglected diseases of the tropics as well as their socio-economic impacts and climate factors. In the end you will be able to place diseases and vectors in resource-limited tropical settings more accurately and practically apply simple diagnostic methods.3 ECTSno date this semesterMH160035MehrkörpersimulationNo ratings for this module yet.Non-Physics ElectiveYou learn to describe and numerically simulate mechanical multibody systems consisting of rigid and flexible bodies. In the end you will derive motion differential equations for planar and spatial systems, embed flexible FEM bodies into multibody systems, and apply numerical time integration methods for linear and nonlinear systems with constraints.3 ECTSno date this semesterMW0866Meromorphic Functions on the Riemann SphereNo ratings for this module yet.Non-Physics ElectiveYou deal with meromorphic functions on the Riemann sphere, with covering mappings and Möbius transformations as well as with elliptic functions and their topology. In the end you will be able to construct meromorphic continuations, specify coverings and you will know the fundamentals of Riemann surfaces.5 ECTSno date this semesterMA5942Methoden der DatenwissenschaftNo ratings for this module yet.Non-Physics ElectiveYou will learn central methods of Frequentist and Bayesian data analysis: estimation theory, hypothesis testing, confidence intervals as well as Bayesian inference with MCMC, variational inference and ABC. In the end you will be able to perform statistical inference, fit simple models, compute error estimates and use standard statistics packages (e.g. scipy) for analysis.5 ECTSno date this semesterNAT3041Methoden der molekularen Simulation, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn fundamental methods of molecular simulation and apply them practically. In the end you will be able to qualitatively describe various algorithms (e.g., geometry optimization, molecular dynamics, Monte Carlo, free energy methods, kinetic Monte Carlo), assess their application areas, and carry out simple simulations yourself.5 ECTSno date this semesterCH3334Modellierung und Maschinelles Lernen von dynamischen SystemenNo ratings for this module yet.Non-Physics ElectiveYou will learn to use the Julia programming language for the analysis and simulation of nonlinear and chaotic dynamical systems. In the end you can implement simple nonlinear models in Julia, analyze time series of dynamical systems, and apply data-driven modeling approaches — with examples from Earth system and climate modeling.5 ECTSno date this semesterED110068Modelling and SimulationNo ratings for this module yet.Non-Physics ElectiveYou learn how to transfer real problems into formal models (mathematical or computational) and to process these models with suitable simulation strategies computationally. By the end of the module you will be able to distinguish model classes, develop simple solution procedures and select and apply simulation methods.8 ECTSno date this semesterIN2010Moderne Massenspektrometrie: Instrumente und AnwendungenNo ratings for this module yet.Non-Physics ElectiveThe module provides fundamentals, instrumentation and applications of modern mass spectrometry. You will learn various ionisation methods, mass analyzers, tandem MS and coupling with separation techniques as well as current applications such as isotope analysis and mass spectrometry imaging.5 ECTSno date this semesterCH3127Molekulare Biotechnologie, KlausurNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn fundamental concepts and techniques of molecular biotechnology, e.g. recombinant protein production, antibody technology, bioreactors and biotechnological production processes in different organisms. At the end you will be able to distinguish areas of biotechnology, describe production processes and bioreactors, and analyze concrete biotechnological questions and develop solution proposals.5 ECTSno date this semesterCH3037Nano- and MicroroboticsNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals and current concepts of nano- and microrobotics with a focus on biomedical applications. In the end you understand physical principles in the submillimeter range, materials and fabrication methods, as well as actuation and control mechanisms, and you can critically assess design decisions for small robotic systems and their integration into biological environments.5 ECTSno date this semesterEI71091Numerical Methods for Partial Differential EquationsNo ratings for this module yet.Non-Physics ElectiveYou will learn numerical solution methods for partial differential equations, in particular finite element methods for multi-dimensional elliptic boundary value problems. You will also learn error estimates, adaptive mesh refinement, fast solvers and an introduction to numerical methods for time-dependent problems. In the end you will be able to understand the methods, apply them and use the associated software.9 ECTSno date this semesterMA3303Numerik der DifferentialgleichungenNo ratings for this module yet.Non-Physics ElectiveYou will learn numerical methods for solving ordinary and simple partial differential equations. Topics include stiff and non-stiff initial value problems, fundamentals of boundary value problems, and methods such as finite differences, finite elements, and spectral methods (focus on 1D, elliptic problems partly in 2D). By the end you will be able to understand, assess and apply basic algorithms on the computer as well as estimate discretization errors.9 ECTSno date this semesterMA3301Numerische Programmierung 2 (CSE)No ratings for this module yet.Non-Physics ElectiveYou learn numerical methods for solving stiff ordinary differential equations as well as fundamental methods for the numerical solution of partial differential equations (finite differences, finite elements, finite volumes). In addition, you acquire programming skills in MATLAB to implement the methods on practical examples.8 ECTSno date this semesterMA3306Oberflächenspektroskopie und Mikroskopie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will learn modern spectroscopic and microscopic methods for investigating molecules, surfaces and solids. By the end you will be able to apply fundamental concepts of spectroscopy and surface characterization, critically evaluate relevant experiments and independently propose experimental approaches to solving current questions in surface science and heterogeneous catalysis.5 ECTSno date this semesterCH3068Optimal TransportNo ratings for this module yet.Non-Physics ElectiveYou will learn the foundations of the mathematical theory of Optimal Transport (OT). By the end you will understand central concepts such as Monge and Kantorovich formulations, the Wasserstein distances and their role in analysis, physics, economics and machine learning, as well as methods for handling high-dimensional, multi-criterion problems.9 ECTSno date this semesterMA5934Optimale Steuerung gewöhnlicher Differentialgleichungen 1No ratings for this module yet.Non-Physics ElectiveYou learn fundamental concepts and methods of optimal control for ordinary differential equations. In the end you will be able to formulate necessary optimality conditions (e.g., Euler–Lagrange, Legendre–Clebsch), distinguish different types of constraints and control restrictions, and convert control problems into boundary-value forms suitable for numerical treatment.5 ECTSno date this semesterMA3312OptoelectronicsNo ratings for this module yet.Non-Physics ElectiveYou learn the physical fundamentals and the design of modern semiconductor-based optoelectronics. The topic is electromagnetic waves and their interaction with materials, fundamental semiconductor physics as well as the structure and operating principles of LEDs, lasers (e.g. edge and VCSELs, DFB, quantum- and interband-cascade lasers) as well as photodetectors and solar cells. In the end you will be able to analyze the performance of such optoelectronic devices and assess simple designs.5 ECTSno date this semesterCIT443016Parallel ProgrammingNo ratings for this module yet.Non-Physics ElectiveYou learn concepts and techniques for parallel programming for distributed and shared memory architectures. The focus is on MPI for distributed systems and OpenMP for shared memory; in addition, dependency analysis, program transformations and newer programming models (e.g. PGAS, CUDA, OpenCL, OpenACC) are covered. In the end you will be able to create programs with MPI and OpenMP, assess their performance and analyze and optimize parallelized applications.5 ECTSno date this semesterIN2147Parameterinferenz für Stochastische und Deterministische Dynamische Biologische ProzesseNo ratings for this module yet.Non-Physics ElectiveYou will learn to model, simulate, and estimate parameters for deterministic and stochastic dynamic biological processes. In the end you will be able to implement models in MATLAB, determine parameters using maximum-likelihood and Bayesian methods, and quantify uncertainties of the estimates.5 ECTSno date this semesterMA5603Particle in Cell Methods for the Vlasov-Maxwell EquationsNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn numerical Particle-in-Cell methods for the Vlasov–Maxwell equations. You will understand both deterministic and stochastic particle methods, structure-preserving discretizations with the discrete de-Rham complex, and you will be able to formulate and implement in Python geometric algorithms for Vlasov–Maxwell problems.5 ECTSno date this semesterCIT413049Partielle DifferentialgleichungenNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn fundamental methods for the treatment of partial differential equations (PDEs). You will deal with classical representations of solutions for transport, Laplace, heat and wave equations, with conservation laws, Sobolev spaces, and with weak (variational) solutions of elliptic equations and their properties such as existence, uniqueness and regularity.9 ECTSno date this semesterMA3005Perspektiven hochentwickelter und zukünftiger KernenergieanlagenNo ratings for this module yet.Non-Physics ElectiveYou will learn current and future debated applications of nuclear energy. The focus is on new reactor concepts, alternative fuel cycles (e.g., thorium), as well as special applications such as ship and rocket propulsion, spaceflight, hydrogen and fuel production, desalination and compact reactors. In the end you will understand the construction and operation of today’s and planned nuclear power plants as well as central safety and research questions for future reactor generations.3 ECTSno date this semesterMW0913Physikbasiertes Machine LearningNo ratings for this module yet.Non-Physics ElectiveYou will learn selected methods of machine learning from basic concepts to state of the art. The focus is on classification and regression, clustering and dimensionality reduction, as well as generative models; in the end you will be able to understand the methods, implement them, and apply them to real problems while considering physical boundary conditions and invariances.5 ECTSno date this semesterMW2450Plasma-Material-WechselwirkungNo ratings for this module yet.Non-Physics ElectiveYou will learn the physical and technical foundations of the interaction between plasma and material surfaces. After completing the module you will be able to describe the processes that lead to erosion and modification of plasma-impacted materials, and assess which investigation method is suitable for specific questions. You will also understand the influence of wall materials on the plasma in fusion devices.3 ECTSno date this semesterMW2217Praktische Aspekte der technischen AkustikNo ratings for this module yet.Non-Physics ElectiveYou will learn the physical and practical fundamentals of technical acoustics with a focus on airborne and structure-borne sound, measurement, evaluation, simulation and measures for noise control. In the end you will be able to model acoustic questions, assess measurement procedures and analyze and apply passive and active noise reduction measures – especially in the context of aviation.3 ECTSno date this semesterMW0986Protein PredictionNo ratings for this module yet.Non-Physics ElectiveYou receive an introduction to proteins, their structure and function as well as to methods for predicting protein structures (1D/2D/3D). By the end you will be able to evaluate current technical procedures and design prediction methods in groups and implement them down to pseudocode level.8 ECTSno date this semesterIN2221Protein Prediction I for Computer ScientistsNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals and methods for predicting protein structure and function from sequence data. By the end you will be able to explain the most important 1D/2D/3D prediction methods, select suitable computer-assisted approaches, and design and implement simple ML/AI-based solutions up to the pseudocode level.8 ECTSno date this semesterIN2322Quantitative Risk ManagementNo ratings for this module yet.Non-Physics ElectiveYou learn basic probabilistic and statistical methods for assessing and modeling financial risks. By the end you can understand, derive and practically apply Risk Measures, Extreme-Value Methods and dependency models — especially in quantitative risk analysis scenarios.5 ECTSno date this semesterMA5415Quantum OptomechanicsNo ratings for this module yet.Non-Physics ElectiveYou deal with fundamentals and modern developments of cavity optomechanics in the quantum regime. In the end you will be able to describe optomechanical systems and their quantum mechanical effects, understand optomechanical coupling and ground-state cooling, and assess applications of nanomechanical systems in the quantum regime.5 ECTSno date this semesterEI71093Radioaktive Abfälle – Management, Entsorgung und wissenschaftliche AspekteNo ratings for this module yet.Non-Physics ElectiveThe module provides a systematic overview of radioactive waste, its generation, properties, storage and disposal as well as current research questions. At the end you will be able to classify waste types and origins, evaluate disposal approaches and apply the fundamentals of radiation protection, environmental monitoring and risk assessment.3 ECTSno date this semesterED180019Regenerative Energiesysteme 2No ratings for this module yet.Non-Physics ElectiveIn this module you will gain an overview of central technologies for the use of renewable energies as well as their political, societal and ecological framework conditions from a global perspective. By the end you will be able to explain the fundamental principles of the most important renewable energy forms, name their application areas and limits, and delineate technological solutions for typical use cases.3 ECTSno date this semesterMW1476Scientific Computing IINo ratings for this module yet.Non-Physics ElectiveYou will learn the central steps of the simulation pipeline in Scientific Computing, with a focus on iterative solvers and efficient implementation of numerical methods. This is applied to examples from Computational Fluid Dynamics and to particle-based simulations (e.g., Molecular Dynamics). In the end you will be able to select, analyze and implement suitable iterative methods, as well as design and parallelize efficient algorithms for pairwise interactions.5 ECTSno date this semesterIN2141Sensory NeuroscienceNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn the structure and function of the main sensory systems of vertebrates, with a focus on visual and auditory processing as well as multimodal integration and motor response. You will be able to derive physical and chemical boundary conditions at the end, determine sensory physiology, and place results within an overarching framework.3 ECTSno date this semesterWZ2458Signalverarbeitung und MikrowellenfernerkundungNo ratings for this module yet.Non-Physics ElectiveYou learn fundamentals and advanced methods of signal processing and microwave remote sensing. After completion you can apply mathematical models and algorithms of signal and system theory and explain the foundations and applications of synthetic aperture radar (SAR).5 ECTSno date this semesterBGU31006Simulation of Semiconductor PropertiesNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn to perform high-precision simulations of semiconductor materials and to analyze the results. You will apply density functional theory (DFT) to calculate electronic properties and use basic machine-learning methods to support and accelerate materials science questions. In the end you will be able to conduct DFT simulations, evaluate electronic properties, and use simple ML models for materials research.5 ECTSno date this semesterEI71066Solving Inverse Problems with Deep LearningNo ratings for this module yet.Non-Physics ElectiveYou will learn modern, evidence-based methods for solving inverse problems in imaging and signal processing. In the end you will be able to apply deep-learning approaches for the reconstruction of signals/images, assess their foundations and limits, and design your own variants of existing methods.6 ECTSno date this semesterEI71068Spezialthemen Computational Design IINo ratings for this module yet.Non-Physics ElectiveYou engage practically with interdisciplinary Computational Design and explore fields of work at the interface to disciplines such as IT, media informatics, or business administration. At the end of the module you will be able to structure complex design requirements, conceive computer-aided design methods, and develop and evaluate mock-ups and prototypes.6 ECTSno date this semesterAR30226Stochastische Finite-Elemente-Methode in der VibroakustikNo ratings for this module yet.Non-Physics ElectiveIn this module you will learn how uncertainties in vibroacoustic systems are modeled and analyzed with stochastic finite element methods (sFEM). You will acquire knowledge on random variables, uncertainty quantification, Karhunen–Loève and Polynomial-Chaos developments as well as intrusive and non-intrusive FEM procedures, and you will be able to evaluate vibroacoustic models with respect to parameter uncertainties.5 ECTSno date this semesterMW2324Strahlung und StrahlenschutzNo ratings for this module yet.Non-Physics ElectiveIn this module you learn the fundamentals of radiation physics and radiation protection: characterization of radiation, its interaction with matter and methods for measuring radiation doses. You will also learn how to design radiation protection equipment and analyze it with deterministic as well as Monte Carlo methods. In the end you will be able to quantify radiation exposure and to design a radiation shield.5 ECTSno date this semesterMW1353Supramolekulare Chemie, KlausurNo ratings for this module yet.Non-Physics ElectiveYou will receive an introduction to supramolecular chemistry, self-assembly, supramolecular materials and molecular machines. By the end you will be able to explain non-covalent interactions and thermodynamic driving forces of assembly as well as molecularly design simple amphiphiles, peptides and liquid crystals and name the functions and mechanisms of supramolecular systems.5 ECTSno date this semesterCH3216Technologie und Entwicklung von Triebwerken der nächsten GenerationNo ratings for this module yet.Non-Physics ElectiveYou will learn methods and processes of integrated product development for aircraft propulsion in an industrial environment. The module covers market and regulatory requirements, concepts for climate-friendly propulsion, iterative component design as well as validation, flight testing and certification. In the end you will be able to describe development processes and name new propulsion concepts as well as technical solution approaches.3 ECTSno date this semesterMW0887Tensor Network MethodsNo ratings for this module yet.Non-Physics ElectiveYou learn modern methods for efficient approximation of high-dimensional functions (large N-tensors). The focus is on Tensor-Train (TT) approximation: its theory, numerical algorithms and applications. In the end you can analyze and simulate simple multidimensional problems with tensor-network methods.5 ECTSno date this semesterCIT413064TensornetzwerkeNo ratings for this module yet.Non-Physics ElectiveYou will learn the mathematical foundations and the graphical notation of tensor networks and their application to the approximation of high-dimensional data. In the end you will be able to assess tensor network methods and apply them to problems such as simulation of strongly correlated quantum systems or probabilistic sampling.5 ECTSno date this semesterIN2388Themen der Quantendynamik: Von der Gruppentheorie zur SystemstheorieNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of the dynamics of closed and open (Markovian) quantum systems in finite dimensions. On the basis of Lie theory and systems theory you will recognize how generators (Hamiltonians and master operators) determine the behavior of entire systems and which questions in quantum engineering follow from this.5 ECTSno date this semesterCH4500Topics in Dynamical SystemsNo ratings for this module yet.Non-Physics ElectiveYou engage with a selected, advanced topic of the theory of dynamical systems (e.g., stochastic systems, multi-scale dynamics, numerical methods, special classes such as one-dimensional maps or infinite-dimensional systems). In the end you will be able to understand, apply, and assess the relevant concepts, methods, or numerical procedures for concrete systems.5 ECTSno date this semesterMA5300TopologyNo ratings for this module yet.Non-Physics ElectiveYou learn the fundamentals of set-theoretic topology and algebraic topology. In the first part you analyze topological and metric spaces as well as concepts such as continuity, compactness and connectedness; in the second part you deal with homotopies, fundamental groups and singular homology. At the end of the module you can assess topological properties as well as determine fundamental groups and homology of simple spaces.9 ECTSno date this semesterMA3241Tracking and Detection in Computer VisionNo ratings for this module yet.Non-Physics ElectiveYou will learn modern methods of object detection and tracking in images and videos. In the end you will be able to understand, implement, and apply central detection and tracking algorithms to more complex practical problems.7 ECTSno date this semesterIN2210Weiterführende Finite-Elemente MethodenNo ratings for this module yet.Non-Physics ElectiveYou will learn about advanced finite element techniques (e.g. Mixed/Hybrid Elements, Discontinuous Galerkin, Non-conforming methods, adaptive procedures, Isogeometric Analysis) as well as modern iterative solvers and preconditioners. In the end you will be able to analyze these methods, apply them to examples from solid mechanics and incompressible flow, and independently access further specialist literature.5 ECTSno date this semesterMA4303Werkzeuge der DatenwissenschaftNo ratings for this module yet.Non-Physics ElectiveYou learn how to handle data sources and data types, load data in Python (Jupyter), process with numpy and pandas, and perform exploratory and visual analyses. You also gain knowledge on powerful data processing (SQL, Dask, Numba, GPUs) as well as open science, versioning with git and publishing Python packages.5 ECTSno date this semesterNAT3042Wissenschaftliches Rechnen in der HochenergiephysikNo ratings for this module yet.Non-Physics Elective3 ECTSno date this semesterPH8124
69 more modules match, but they are taught in German. Show themAerodynamik bodengebundener FahrzeugeNo ratings for this module yet.Non-Physics ElectiveDu erhältst einen Überblick über die Aerodynamik bodengebundener Fahrzeuge und die wichtigsten physikalischen Grundlagen für die aerodynamische Auslegung. Du lernst, wie Strömungs- und Druckfelder entstehen, welche Luftwiderstände und Teilwiderstände am Fahrzeug wirken und wie diese reduziert werden können. Zudem werden Aerodynamikthemen für Hochleistungsfahrzeuge (z. B. Abtriebshilfen), Nutz- und Schienenfahrzeuge sowie Zug-Tunnelsysteme behandelt. Nach dem Modul kannst du aerodynamische Entwicklungsstrategien verfolgen und Ziele in der Fahrzeugentwicklung umsetzen.3 ECTSruns this semesterMW0142Aerodynamik der Raumfahrzeuge - WiedereintrittsaerodynamikNo ratings for this module yet.Non-Physics ElectiveDu lernst die aerodynamischen und aerothermodynamischen Grundlagen des Wiedereintritts rückkehrfähiger Raumflugkörper. Aufbauend auf Kenntnissen aus Fluidmechanik werden Geschwindigkeiten, Kräfte, Hochtemperatur- und chemische Effekte sowie Wärmeschutz- und Prüfverfahren behandelt, sodass Du am Ende Belastungen und Wärmeübergang beim Wiedereintritt abschätzen kannst.3 ECTSno date this semesterMW0143Algebraische Topologie in der PhysikNo ratings for this module yet.Non-Physics ElectiveDu erhältst grundlegende Kenntnisse in Algebra, Topologie und Kategorientheorie und lernst anschließend Methoden der Homotopie- und Homologietheorie sowie deren Anwendungen in der Physik. Außerdem werden Zusammenhänge zur Kohomologie auf differenzierbaren Mannigfaltigkeiten thematisiert. Am Ende kannst du zentrale Konzepte wie Fundamentalgruppe, singuläre Homologie und Poincaré-Dualität verstehen und anwenden.8 ECTSno date this semesterNAT3068AV DynamicsNo ratings for this module yet.Non-Physics ElectiveIm Modul lernst Du die Grundlagen der Fahrdynamik kennen: von fahrdynamischen Kenngrößen über Einspur- und Zweispurmodelle bis hin zu Reifenverhalten, Fahrversuchen und Anwendungen für autonome Fahrzeuge. Am Ende kannst Du Fahrdynamik in unterschiedlichen Modellierungstiefen beschreiben, die Grenzen der Modelle einschätzen und Methoden zur Fahrzeugzustandsschätzung sowie Trajektorienfolgeregelung einordnen.5 ECTSruns this semesterED150046BatteriespeicherNo ratings for this module yet.Non-Physics Elective5 ECTSno date this semesterED180034DBatteriesystemtechnikNo ratings for this module yet.Non-Physics ElectiveDu lernst die Systemtechnik elektrotechnischer Batteriespeicher: von Ladeverfahren und Batteriemanagement über Mess- und Diagnoseverfahren bis zu thermischem Verhalten, Kühl-/Heizkonzepten und Integration in Anwendungen (z. B. Fahrzeuge, stationäre Systeme). Am Ende kannst du grundsätzliche Verschaltungstopologien, Modellierungsansätze und Betriebsführungsfragen beurteilen und die Methoden auf verschiedene Anwendungsfälle übertragen.5 ECTSno date this semesterEI7310Battery StorageNo ratings for this module yet.Non-Physics Elective5 ECTSno date this semesterED180034EBildverstehen - Vertiefte MethodenNo ratings for this module yet.Non-Physics ElectiveDu lernst fortgeschrittene Methoden des Bildverstehens kennen und vertiefst ihre Anwendung. Am Ende kannst du die Potenziale und Grenzen ausgewählter Verfahren einschätzen und ihre Eignung für praktische Aufgaben bewerten.3 ECTSno date this semesterBV310003Bildverstehen I: Methoden der industriellen BildverarbeitungNo ratings for this module yet.Non-Physics ElectiveDu lernst praxisrelevante Methoden und Algorithmen der industriellen Bildverarbeitung kennen. Im Modul werden Verfahren zur Lageerkennung, Form- und Maßprüfung sowie Objekterkennung behandelt. Am Ende kannst du Bildverarbeitungsaufgaben analysieren, bewerten und mit geeigneter Hardware und Algorithmen umsetzen.3 ECTSno date this semesterIN2023Biochemie 3: Biologische Makromoleküle: Struktur und FunktionNo ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterLV0197Biologische Chemie (Vorlesung für Chemiker)No ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterCH1212Biomechanik - Grundlagen und ModellbildungNo ratings for this module yet.Non-Physics ElectiveDu lernst, wie mechanische Prinzipien auf biologische Systeme angewendet werden, um deren Funktion zu verstehen, krankhafte Veränderungen vorherzusagen und mögliche Therapieansätze zu erarbeiten. Anhand von Beispielen (z. B. Lunge, Knochen, kardiovaskuläres System) übst du Modellbildung: von anatomisch-physiologischen Grundlagen über Auswahl relevanter Effekte bis zur einfachen mathematischen Beschreibung. Schwerpunkte sind Gewebemechanik (passiv/aktiv, Wachstum, Remodelling) und Strömungs- bzw. Transportmodelle in Blutgefäßen und Atemwegen (Vergleich 3D/1D/0D).5 ECTSno date this semesterMW1817Biomechanik des OhresNo ratings for this module yet.Non-Physics ElectiveDu lernst Aufbau und Funktion des menschlichen Ohres sowie klinische audiologische Diagnostik und medizintechnische Lösungen für Mittel- und Innenohr kennen. Du kannst am Ende grundlegende biomedizinische Modelle numerisch anwenden, diagnostische Verfahren beurteilen und Ansätze für medizintechnische Produkte entwickeln.3 ECTSno date this semesterME563CFD-Simulation thermischer ProzesseNo ratings for this module yet.Non-Physics ElectiveDu lernst numerische Verfahren zur Simulation strömungs- und wärmeübertragender Prozesse kennen und anzuwenden. Das Modul vermittelt Grundlagen der Diskretisierung und Lösung algebraischer und differentialer Gleichungssysteme, spezifische Methoden der CFD für thermische, mehrphasige und reaktive Strömungen sowie praktische Fertigkeiten im Umgang mit CFD-Software und dem kompletten Simulationsworkflow.3 ECTSruns this semesterMW0210Differentialformen in der PhysikNo ratings for this module yet.Non-Physics ElectiveDu lernst die Grundlagen der Differentialtopologie und Differentialformen kennen und kannst k-Formen auf Mannigfaltigkeiten integrieren. Du verstehst den allgemeinen Satz von Stokes, zentrale Verallgemeinerungen der klassischen Vektoranalysis (z. B. Poincaré-Lemma) und erhältst Einblicke in Anwendungen, etwa zur koordinatenfreien Formulierung der Maxwellgleichungen.5 ECTSno date this semesterNAT3043Differentialgeometrie in der PhysikNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst Du Grundlagen der Differentialgeometrie von Kurven und Flächen und ihre Übertragung auf gekrümmte Mannigfaltigkeiten. Am Ende kannst Du Konzepte wie Krümmung, Torsion, erste Fundamentalform, Riemannsche Metrik und grundlegende Krümmungsgrößen (z. B. Gauss-, Ricci- und Einstein-Tensor) anwenden und einfache Rechnungen dazu durchführen.8 ECTSno date this semesterNAT3020Einsatz und Realisierung von DatenbanksystemenNo ratings for this module yet.Non-Physics ElectiveDu lernst, wie moderne Datenbanksysteme aufgebaut und eingesetzt werden. Am Ende kannst Du wesentliche Komponenten (Transaktionsverwaltung, Recovery, Mehrbenutzersynchronisation, physische Organisation, Anfragebearbeitung) erklären, Algorithmen und Datenstrukturen implementieren sowie Einsatzszenarien kritisch bewerten und skizzieren.6 ECTSno date this semesterIN2031Elektrische Messmethoden in der UmwelttechnikNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst du Messmethoden zur Erfassung luftverunreinigender Stoffe kennen und anzuwenden. Du verstehst Emission, Transmission und Immission, lernst generelle Messverfahren für Stichproben- und Dauermessungen sowie die Auswertung von Messergebnissen und Grenzwerten. Außerdem bewertest du ausgewählte Messgeräte für gas- und partikelförmige Verunreinigungen und den Aufbau sowie Betrieb automatischer Luftüberwachungsnetze.5 ECTSruns this semesterEI7604Energetische Nutzung von Biomasse und ReststoffenNo ratings for this module yet.Non-Physics ElectiveDu lernst Konzepte und technische Grundlagen zur energetischen Nutzung von Biomasse und Reststoffen kennen. Das Modul behandelt konventionelle und innovative Verfahren (z. B. Vergärung, Pyrolyse, Vergasung), Technologien zur Wärme‑ und Stromerzeugung sowie verfahrenstechnische Fragestellungen wie Verbrennung, Vergasung und Brennstofflogistik. Am Ende kannst Du Konzepte zur Bereitstellung und Nutzung von Biomasse hinsichtlich Technik, Wirtschaft und Genehmigung bewerten und eigene Versorgungslösungen entwerfen.3 ECTSruns this semesterMW2238Energieoptimierung für GebäudeNo ratings for this module yet.Non-Physics ElectiveDu lernst, wie sich Energie in der Bundesrepublik und speziell in Gebäuden darstellt und welche Einflüsse (baulich, innerlich, äußerlich) den Energiebedarf bestimmen. Am Ende kannst du Energiebilanzen von Gebäuden bewerten, einfache thermodynamische Abschätzungen durchführen und technische Maßnahmen zur Energieoptimierung (Dämmung, Verglasung, Klima- und Kältetechnik, Lüftung) beurteilen.3 ECTSno date this semesterMW0164Finite ElementeNo ratings for this module yet.Non-Physics ElectiveDu lernst, wie Strukturen des Ingenieurwesens mit der Finite-Elemente-Methode (FEM) modelliert, diskretisiert und numerisch gelöst werden. Am Ende kannst du passende Modell- und Elementtypen auswählen, FEM-Lösungen durchführen und deren Ergebnisse kritisch einschätzen.5 ECTSno date this semesterMW0612Fortgeschrittene Mathematische Physik: Konzepte und AnwendungenNo ratings for this module yet.Non-Physics ElectiveDu lernst fortgeschrittene Methoden der mathematischen Physik: von Wahrscheinlichkeitstheorie und statistischer Mechanik über mathematische Grundlagen der Quanteninformation bis zu grundlegenden Aspekten der Differentialtopologie. Am Ende kannst Du sowohl probabilistische Grenzwertsätze und grundlegende statistische-physikalische Modelle nachvollziehen als auch Quantenmechanische Zustände/Operationen und einfache topologische sowie differenzierbare Mannigfaltigkeiten formell behandeln.8 ECTSno date this semesterNAT3032Gassensorik für biomedizinische AnwendungenNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst du Messverfahren und Sensorprinzipien zur Bestimmung medizinisch relevanter Parameter im Atemgas kennen. Du verstehst die physikalisch-chemischen Grundlagen der Atmosphäre, die Anatomie und Physiologie der Atemwege sowie relevante Krankheitsbilder und kannst Sensoren und Messverfahren für Atemgas-Analysen beurteilen und einordnen.5 ECTSruns this semesterEI7605Grundlagen der experimentellen StrömungsmechanikNo ratings for this module yet.Non-Physics ElectiveDas Modul vermittelt grundlegende Messverfahren und Messprinzipien der experimentellen Strömungsmechanik. Du lernst verschiedene Druck- und Geschwindigkeitsmessverfahren, Wandreibungsmessung, Temperaturmessung sowie Methoden zur Strömungssichtbarmachung und Signalanalyse kennen und kannst am Ende die Qualität und Sensitivitäten experimenteller Messdaten einschätzen.3 ECTSno date this semesterMW0685Grundlagen der Kälteerzeugung und Industrielle TieftemperaturanlagenNo ratings for this module yet.Non-Physics ElectiveDu lernst die thermodynamischen Grundlagen der Tieftemperaturtechnik und analysierst industrielle Großanlagen anhand typischer Tieftemperatursysteme. Klassische Kälteerzeugungsprozesse (z. B. Joule‑Thomson, Brayton, Claude) sowie Anwendungen wie Luft-, Helium‑ und Erdgas‑Verflüssiger werden anhand von Beispielen thermodynamisch analysiert. Am Modulende kannst Du diese Grundlagen anwenden und die klassischen Prozesse zur Kälteerzeugung verstehen.3 ECTSruns this semesterMW1834HochfrequenzmesstechnikNo ratings for this module yet.Non-Physics ElectiveDas Modul vermittelt Grundlagen der Hochfrequenzmesstechnik: wichtige Komponenten, relevante Messgrößen sowie Mess- und Kalibrierverfahren von Basisband bis Mikrowellenbereich. Am Ende kannst Du Messsysteme beurteilen, Messgrößen interpretieren und praktische Messaufgaben unter Berücksichtigung von Fehlerquellen und Schutzmaßnahmen durchführen.5 ECTSruns this semesterEI70420Holomorphe Methoden in der PhysikNo ratings for this module yet.Non-Physics ElectiveDu erweiterst Deine Kenntnisse der Funktionentheorie und lernst, wie holomorphe Funktionenräume (z. B. Bergman, Segal–Bargmann, Hardy) als Banach- bzw. Hilberträume behandelt werden. Du lernst Verbindungen zur Funktionalanalysis und Geometrie sowie Methoden zur Quantisierung klassischer Theorien kennen und wendest Konzepte wie Toeplitz‑Operatoren und meromorphe Funktionen auf der Riemann‑Sphäre an. Am Ende kannst Du reproduzierende Kerne berechnen, Quantisierungsschemata erklären und holomorphe bzw. meromorphe Abbildungen unter geeigneten Voraussetzungen anwenden.5 ECTSno date this semesterNAT3062Hubschrauber-Flugmechanik und -FlugregelungNo ratings for this module yet.Non-Physics ElectiveDu erarbeitest ein flugmechanisches Modell von Hubschraubern und lernst, wie sich die Rotor- und Zellenkräfte auf Stabilität, Steuerbarkeit und Störverhalten auswirken. Aufbauend darauf entwirfst und dimensionierst Du Regelungsstrategien und ein Flugregelungssystem zur Verbesserung der Flugeigenschaften.3 ECTSno date this semesterMW1402Individuelles Anerkennungsmodul Nicht-PhysikNo ratings for this module yet.Non-Physics Electiveno date this semesterPH80001Individuelles Anerkennungsmodul Nicht-PhysikNo ratings for this module yet.Non-Physics Electiveno date this semesterPH80002Individuelles Anerkennungsmodul Nicht-PhysikNo ratings for this module yet.Non-Physics Electiveno date this semesterPH80003Instationäre Aerodynamik 1No ratings for this module yet.Non-Physics ElectiveIn diesem Modul untersuchst Du instationäre Vorgänge in der Aerodynamik von Tragflügeln und lernst, wie strömungs- und bewegungsbedingte zeitabhängige Kräfte entstehen und sich auswirken. Am Ende kannst Du die grundlegenden Ansätze der instationären Tragflügeltheorie anwenden und instationäre aerodynamische Kenngrößen sowie Derivativa für einfache Fragestellungen ermitteln.3 ECTSruns this semesterMW0183Instationäre Aerodynamik 2No ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst Du, die integrale Gleichung der instationären Tragflügeltheorie numerisch anzuwenden und Luftkraftverläufe für zeitabhängige Vorgänge über den gesamten Machzahlbereich zu bestimmen. Du kannst am Ende Druckverteilungen und instationäre Luftkräfte für harmonisch schwingende Profile sowie für instationäre Anströmungen (z. B. Böen) in Inkompressibler-, Unterschall-, Schall-, Überschall- und Hyperschallströmung charakterisieren.3 ECTSno date this semesterMW0415Klima, Klimawandel und LandnutzungNo ratings for this module yet.Non-Physics ElectiveDu erhältst einen Überblick über das Klima- und Klimawandel-System sowie die Wechselwirkungen zwischen Landnutzung und Atmosphäre. Du lernst Ursachen und Folgen des anthropogenen Klimawandels, Energie- und Stoffaustauschprozesse sowie Rückkopplungen kennen und kannst lokale bis regionale Auswirkungen auf Klima und Landnutzung einschätzen. Am Ende kannst du Klimaveränderungen, Mesoklimaeffekte und Anpassungs- bzw. Vermeidungsstrategien in Landnutzungssystemen analysieren.5 ECTSruns this semesterWZ1223Kohlenstoff und Graphit - Hochleistungswerkstoffe für SchlüsselindustrienNo ratings for this module yet.Non-Physics ElectiveDu erhältst einen umfassenden Überblick über industrielle Kohlenstoff- und Graphitwerkstoffe (z. B. Naturgraphit, expandierter Graphit, amorpher Kohlenstoff, synthetischer Graphit, Kohlenstofffaser, CFK, Nukleargraphit) sowie deren Rohstoffe, Herstellungsverfahren und typische Anwendungsfelder. Am Ende kannst Du Werkstoffe gezielt auswählen und verstehst, wie anisotrope Graphitstrukturen in anwendungsgerechte Produkte umgesetzt werden.3 ECTSno date this semesterMW1384LasertechnikNo ratings for this module yet.Non-Physics ElectiveIm Modul lernst Du die physikalischen Grundlagen der Lasertechnik, verschiedene Laserquellen und deren Wirkprinzipien sowie die wichtigsten industriellen Anwendungen wie Laserschweißen, -trennen und laserbasierte additive Fertigung. Am Ende kannst Du die Prozesse theoretisch anwenden, geeignete Verfahren und Strahlquellen für konkrete Aufgabenstellungen auswählen und Aspekte von Lasersicherheit und Prozessüberwachung beurteilen.5 ECTSruns this semesterMW1042Magnetische Felder in der EnergietechnikNo ratings for this module yet.Non-Physics ElectiveDu lernst, mehrdimensionale stationäre und quasistationäre elektromagnetische Felder zu berechnen. Am Ende kannst du analytische und numerische Lösungsverfahren (z. B. FDM, FEM, BEM, Reluktanznetzwerke) für zwei- und dreidimensionale magnetische Feldprobleme beurteilen und anwenden.5 ECTSruns this semesterEI7347Medicine in the Tropics and Global Health (Presentation)No ratings for this module yet.Non-Physics Electiveno date this semesterMHP1600351Mikroskopische BiomechanikNo ratings for this module yet.Non-Physics ElectiveDu lernst mikromechanische Phänomene in Biomaterialien: von der Stabilität chemischer und physikalischer Bindungen über mechanische Eigenschaften einzelner Moleküle bis zu Biomembranen, Biopolymer-Netzwerken und Zellen. Am Ende kannst du mechanische Prinzipien auf mikroskopische Prozesse anwenden und das Verhalten verschiedener Biomaterialien bewerten.5 ECTSno date this semesterMW1827Mikrotechnische Sensoren/AktorenNo ratings for this module yet.Non-Physics ElectiveDu lernst Grundlagen mikrotechnischer Fertigungsverfahren sowie Entwurf und Realisierung von Sensoren und Aktoren kennen. Du verstehst die Bedeutung typischer Werkstoffe (insbesondere Silizium und Piezokeramik) und verschiedene Herstellungsverfahren wie Lithografie, Beschichtungen, Oberflächentechnik, Laser- und Ultrapräzisionsbearbeitung. Am Ende kannst du Anwendungsfälle bewerten und passende Werkstoffe sowie Fertigungsverfahren auswählen.5 ECTSruns this semesterMW0080Moderne Methoden der Regelungstechnik 1No ratings for this module yet.Non-Physics ElectiveDu lernst moderne Zustandsraummethoden zur Auslegung von Mehrgrößenregelsystemen kennen und anzuwenden. Am Ende kannst du lineare Zustandsregler und Zustandsbeobachter entwerfen, Systemeigenschaften wie Stabilität, Steuer- und Beobachtbarkeit beurteilen und Maßnahmen zur Störunterdrückung sowie Ein-/Ausgangs-Linearisierung für ein- bzw. ein-/ausgangslineare Systeme entwerfen.5 ECTSno date this semesterMW0538Molekulare BiotechnologieNo ratings for this module yet.Non-Physics ElectiveDu lernst Methoden kennen, mit denen lebende Organismen zur Herstellung biogener Produkte genutzt werden. Dazu gehören gentechnische Eingriffe in Mikroorganismen, Pflanzen und Tiere, Verfahren zur Detektion genetischer Veränderungen, Grundlagen der Fermentation sowie Ansätze des Metabolic Engineering. Am Ende kannst du Beschaffung, Einsatz und Risiken gentechnisch veränderter Organismen beschreiben und bewerten.4 ECTSno date this semesterWZ5039Molekulare BiotechnologieNo ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterLV0253Molekulare MedizinNo ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterLV0119Molekulare OnkologieNo ratings for this module yet.Non-Physics ElectiveDu lernst die molekularen Mechanismen von Tumorentstehung, -progression und Metastasierung kennen. Am Ende kannst du intrazelluläre und extrazelluläre Regelkreise im Tumor-Umfeld erklären, aktuelle Originalpublikationen kritisch bewerten und das Wissen für forschungsnahe Projekte nutzen.5 ECTSruns this semesterME2648Molekulare Onkologie 1No ratings for this module yet.Non-Physics Elective3 ECTSno date this semesterme550Molekulare Onkologie 2No ratings for this module yet.Non-Physics Elective2 ECTSno date this semesterme552MotorradtechnikNo ratings for this module yet.Non-Physics ElectiveDu lernst motorradspezifische technische Aspekte kennen und verstehst die Unterschiede zum PKW. Am Ende kannst du Markt und Entwicklungsprozess von Motorrädern einordnen sowie die wesentlichen Baugruppen wie Antriebstrang und Fahrwerk analysieren und bewerten.3 ECTSruns this semesterMW0207Multifunktionelle polymerbasierte KompositeNo ratings for this module yet.Non-Physics Elective3 ECTSno date this semesterMW2075Navigation and Data FusionNo ratings for this module yet.Non-Physics ElectiveIn dem Modul lernst du, wie Position, Geschwindigkeit und Orientierung von Flug- und Fahrzeugsystemen aus Sensormessungen hochgenau bestimmt und fortgeschrieben werden. Du verstehst die Grundlagen der Satelliten- und Trägheitsnavigation sowie Techniken zur Fusion verschiedener Sensoren zu integrierten Navigationssystemen und kannst diese Algorithmen praktisch mit Matlab anwenden.3 ECTSruns this semesterMW0836NeurobiologieNo ratings for this module yet.Non-Physics ElectiveDu erhältst einen systematischen Überblick über zentrale Themen der Neurobiologie und erwirbst Kompetenzen, neurobiologische Fragestellungen methodisch und kritisch zu beurteilen. Am Ende kannst du neurobiologische Prozesse aus ihren physikalischen und chemischen Randbedingungen ableiten, ihren Verlauf und ihre Steuerung im Organismus erklären und Befunde in ein Orientierungswissen der gesamten Neurobiologie einordnen.3 ECTSno date this semesterWZ2457Nichtlineare Finite-Element-MethodenNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst du, wie die Finite-Elemente-Methode auf technische Probleme mit geometrischer und materieller Nichtlinearität angewendet wird. Am Ende kannst du geeignete Dehnungs- und Spannungsmaße wählen, nichtlineare Gleichgewichtspfade berechnen und kritische Punkte bzw. Stabilitätsphänomene erkennen.5 ECTSno date this semesterMW0620Nichtlineare KontinuumsmechanikNo ratings for this module yet.Non-Physics ElectiveDu lernst die theoretischen Grundlagen zur Beschreibung des Verhaltens kontinuierlicher Körper unter Kräften. Dazu gehören Tensorrechnung, Kinematik, Bilanzgleichungen und konstitutive Beziehungen; am Ende kannst du quantitative Methoden zur Beschreibung beliebiger kontinuierlicher Systeme anwenden und erkennst, wie technische Mechanik und Fluidmechanik als Spezialfälle eingeordnet werden.5 ECTSno date this semesterMW0850Numerische Berechnung turbulenter StrömungenNo ratings for this module yet.Non-Physics ElectiveDu lernst die physikalischen Grundlagen turbulenter Strömungen sowie die wichtigsten numerischen Verfahren zur Simulation und Berechnung solcher Strömungen. Am Ende erhältst du einen strukturierten Überblick über DNS, LES und die Lösung der Reynoldsgleichungen sowie die zugehörigen Turbulenzmodelle und numerischen Lösungsverfahren, inklusive Anwendungen bei 3D-Strömungen mit Rückströmgebieten.3 ECTSno date this semesterMW0470Posttranslationale Modifikationen von ProteinenNo ratings for this module yet.Non-Physics Electiveno date this semesterCH5146ProduktergonomieNo ratings for this module yet.Non-Physics ElectiveDu lernst, wie Produkte so gestaltet werden, dass sie komfortabel, sicher und einfach zu bedienen sind. Dabei behandelst Du Umweltkomfort (Akustik, Vibrationen, Klima), anthropometrische Gestaltung und Informationsfluss Mensch–Maschine und lernst, diese Aspekte bereits im Entwurfsstadium mit Daten, Methoden und Simulationen anzuwenden.5 ECTSno date this semesterMW0101Protein- und NukleinsäurechemieNo ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterCH5206RaumtransportsystemeNo ratings for this module yet.Non-Physics ElectiveDu lernst die Grundlagen des Raumtransports: warum Transport ins All zentral für Raumfahrt ist, welche technischen Anforderungen und Entwurfsüberlegungen bestehen und wie Leistungsfähigkeit und Kosten von Raumtransportsystemen beurteilt werden. Am Ende kannst du Raumtransportkonzepte technisch und wirtschaftlich einschätzen und die Herausforderungen bei deren Entwicklung benennen.3 ECTSno date this semesterMW2311SeilbahntechnikNo ratings for this module yet.Non-Physics ElectiveDu erhältst eine Einführung in Aufbau, Betrieb und Berechnung von Seilbahnen verschiedener Bauarten. Am Ende kannst du passende Seilbahnarten für konkrete Einsatzfälle auswählen und Grundlagen der Seilbahnberechnung sowie Seildimensionierungsannahmen nachvollziehen und anwenden.3 ECTSno date this semesterMW0386Solar EngineeringNo ratings for this module yet.Non-Physics ElectiveDas Modul vermittelt Grundlagen und Ingenieurmethoden zur Nutzung von Solarenergie (thermisch und elektrisch). Du lernst Strahlungsphysik, Sonnenstandsmechanik, Auslegung von Solarthermie- und PV-Systemen sowie praktische Aspekte der Systemintegration kennen, sodass du Systeme bewerten und technikbezogene Abschätzungen durchführen kannst.5 ECTSno date this semesterMW2428Solarthermische KraftwerkeNo ratings for this module yet.Non-Physics ElectiveDu lernst Konzepte zur Gewinnung von Wärme aus Sonnenenergie kennen, vergleichst verschiedene Kollektorsysteme und bewertest klassische sowie innovative Kreisprozesse zur Stromerzeugung (z. B. ORC, Kalina, Flash). Zusätzlich erhältst du Kenntnisse zu Wärmeträger- und Arbeitsmedien, Energiespeichertechnologien sowie zu wirtschaftlichen Aspekten solarthermischer Kraftwerke.5 ECTSruns this semesterMW1814Spezielle Aspekte der Biologischen ChemieNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul wählst Du aus einem Portfolio von Vorlesungen zu aktuellen Themen der biologischen Chemie. Du vertiefst einzelne Teilbereiche oder schließt gezielt Lücken in Deinem Ausbildungsprofil und erwirbst detailliertes theoretisches Wissen zu der von Dir gewählten Veranstaltung.8 ECTSno date this semesterCH0834StromnetzeNo ratings for this module yet.Non-Physics ElectiveDas Modul vermittelt Aufbau, Betrieb und Regulierung elektrischer Stromnetze unter Berücksichtigung technischer, wirtschaftlicher und politischer Randbedingungen. Du lernst, Systemrisiken zu bewerten, Regulierungsmodelle anzuwenden und daraus Ideen für zukünftige Stromversorgungslösungen abzuleiten.3 ECTSno date this semesterMW2185Technologie der III-V-HalbleiterbauelementeNo ratings for this module yet.Non-Physics ElectiveDu lernst die technologischen und physikalischen Grundlagen von III‑V‑Verbindungshalbleitern sowie Aufbau, Herstellung und Charakterisierung optoelektronischer und elektronischer Bauelemente. Am Ende kannst du die wichtigsten Herstellungs‑ und Bearbeitungsschritte für III‑V‑Halbleiterbauelemente beschreiben und einen Fertigungsprozess für ein Bauelement zumindest in den wesentlichen Schritten entwickeln.5 ECTSruns this semesterEI7388Wasserstoff-basierte Technologien im EnergiesystemNo ratings for this module yet.Non-Physics ElectiveDu erhältst ein vertieftes Verständnis der Technologien und Integration von Wasserstoff in Energie- und Stoffsysteme. Das Modul behandelt Produktion (elektro- und thermochemisch, von grauem bis grünem Wasserstoff), Nutzungspfade (u.a. Synthesekraftstoffe, Basischemikalien, Industrieanwendungen), Speicherung und Distribution sowie Kohlenstoffrecycling. Am Ende kannst du Technologien bewerten und die Rolle von Wasserstoff in einem geschlossenen Kohlenstoffkreislauf analysieren.3 ECTSno date this semesterED180007WasserstoffmobilitätNo ratings for this module yet.Non-Physics ElectiveIn diesem Modul lernst Du, wie Wasserstoff und wasserstoffbasierte Energieträger Mobilität nachhaltig verändern können. Du erhältst Kenntnisse zu Erzeugung, Speicherung und Transport von Wasserstoff sowie zu dessen Einsatz in Antriebssystemen wie Brennstoffzellen und wasserstoffbetriebenen Verbrennungsmotoren. Am Ende kannst Du Chancen und Herausforderungen der Wasserstoffmobilität beurteilen und passende Energiewandler für fahrzeugtechnische Anwendungen bewerten.5 ECTSruns this semesterED150011Wärme- und StoffübertragungNo ratings for this module yet.Non-Physics ElectiveDu lernst die physikalischen Grundlagen und praktischen Methoden zur Beschreibung von Wärme- und Stofftransport in technischen Systemen. Am Ende kannst du relevante Transportmechanismen erkennen, geeignete mathematische Modelle aufstellen und Wärme- sowie Stoffströme quantitativ berechnen und bewerten.5 ECTSruns this semesterMW0006Zelluläre Biochemie 1No ratings for this module yet.Non-Physics Elective4 ECTSno date this semesterLV0156Zerstörungsfreie PrüfungNo ratings for this module yet.Non-Physics ElectiveDu lernst zerstörungsfreie Prüfverfahren (ZfP) zur Qualitätssicherung, Inspektion und Dauerüberwachung von Baustoffen, Bauteilen und Bauwerken kennen. Am Ende kannst du geeignete ZfP-Verfahren auswählen, ihre Einsatzbereiche und Grenzen beurteilen und ausgewählte Verfahren (Ultraschall, Impakt-Echo, Radar, Infrarot-Thermografie) selbstständig anwenden und auswerten.5 ECTSruns this semesterBV640007