Modules

186 results

Master's Modules186

Additive Fertigung mit KunststoffenFlexibilization in Engineering SciencesYou will become familiar with the various additive manufacturing processes with plastics (e.g., laser sintering, material extrusion, stereolithography, binder jetting). You will understand the starting materials, the physical bonding mechanisms, and the resulting part properties, and you will derive suitable process–material combinations for applications.5 ECTSruns this semesterMW2463Advanced ControlDomain Specific ModulesYou 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 Fluid MechanicsFlexibilization in Engineering SciencesYou receive an in-depth introduction to the continuum description of fluids, the derivation and application of balance and momentum equations, as well as analytical solutions of the Navier–Stokes equations. In the end you will be able to explain boundary layer phenomena (laminar and turbulent), flow instabilities, as well as fundamental aspects of turbulent flows and transport processes (advection/diffusion) and apply them to simple technical problems.6 ECTSruns this semesterBGU41021Advanced ProgrammingFlexibilization in Engineering SciencesYou 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 semesterIN1503Advanced Robot Learning and Decision-MakingFlexibilization in Engineering SciencesYou will learn advanced methods for robotics that connect modeling, optimal control and learning-based methods (including reinforcement learning). In the end you will be able to model robotic systems, derive modern control algorithms and apply learned models in control architectures to handle uncertainties and model errors.5 ECTSruns this semesterCIT433037
181 more in Master's ModulesAdvanced Topics of Software EngineeringFlexibilization in Engineering SciencesYou will learn how requirements, architecture, design, implementation and quality assurance are tightly interlinked in the development of large software systems. In the end you will be able to elicit and specify requirements (functional and non-functional), assess their impact on architecture and code, and analyze architectures and solution approaches regarding central quality attributes.8 ECTSruns this semesterIN2309Aerodynamik des Flugzeugs 1Fluid-/AerodynamicsIn 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 semesterMW0007AeroelastikFluid-/AerodynamicsYou will learn the basic aeroelastic phenomena that arise from the interaction of elastic, aerodynamic and inertial forces on structures — with a focus on aircraft that are flying with fixed wings. In the end you can derive simple models for static and dynamic aeroelasticity and make quantitative statements about phenomena such as divergence and flutter, as well as assess their limits.5 ECTSruns this semesterMW2228Aerospace CombustionDomain Specific ModulesYou will learn the physical and numerical fundamentals of combustion in aerospace systems. By the end you will know relevant fuel combinations, chemical kinetics, common combustion and turbulence models as well as their limits and you will be able to select suitable modelling approaches for concrete questions.5 ECTSruns this semesterLRG2700AI4EO-Plattformen und Best PracticesFlexibilization in Engineering SciencesIn this module you will learn how to prepare earth observation data for machine learning tasks, create benchmark datasets, and train ML models for classification and semantic segmentation. You will practice using various computing platforms, debugging convergence issues, and best practices for experiment reproducibility. By the end, you will be able to curate datasets, organize experiments, and disseminate results online.5 ECTSruns this semesterED110156Aircraft Design AdvancedIntegrated SystemYou will learn to understand and pre-design advanced and unconventional aircraft concepts, including canards, blended wing bodies, strut-braced wings, oblique wings, as well as (hybrid) electrical and hydrogen propulsion architectures. In the end you will be able to systematically evaluate these concepts, design components for electrical and hydrogen systems, and assess their impacts on aerodynamics, mass, operation, and environmental footprint.5 ECTSruns this semesterED110177Aircraft PerformanceDynamics/ControlIn this module you will learn the fundamentals of flight performance calculations and the underlying flight dynamics. Starting from a unified nomenclature, nonlinear equations of motion are derived and from them stationary flight states as well as performance quantities (e.g., minimum glide angle, maximum range) are computed. At the end you can apply typical flight performance calculations as used in the preliminary aircraft design.5 ECTSruns this semesterMW0832Angewandte CFDFluid-/AerodynamicsYou 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 semesterMW1628Angewandte Simulation und Modellbildung in der FertigungstechnikFlexibilization in Engineering SciencesYou will get a practice-oriented overview of simulation and model building in manufacturing technology with a focus on forming, cutting and casting. You will learn basics such as FEM, constitutive material laws and fracture behavior, and you will be able to assess which simulation tools and material property determinations are suitable for specific manufacturing processes.5 ECTSruns this semesterED160038Antennas for Space and Aeronautics ApplicationsFlexibilization in Engineering SciencesYou will learn the special requirements for antenna systems in space travel and aviation and understand how environmental conditions influence the design. In the end you will be able to design, assess and preliminarily dimension typical antenna types for GEO/MEO/LEO satellites as well as for aircraft and UAVs.5 ECTSruns this semesterCIT4430010Asset ManagementFlexibilization in Engineering SciencesIn this module you will learn the theoretical foundations of asset management as well as practical applications to solve typical tasks (e.g., portfolio optimization). By the end you will be able to apply risk and utility concepts, optimize portfolios under different constraints, use basic asset-pricing models, and measure portfolio performance.6 ECTSruns this semesterWI000231Astronautische RaumfahrttechnologieIntegrated SystemYou 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 semesterED110168Astroteilchenphysik 1Flexibilization in Engineering SciencesYou will learn the connections between cosmology and particle physics: fundamentals of the Standard Model and cosmology, important cosmological observations, and how elementary particles influence the evolution and geometry of the universe. In the end you will be able to explain observations such as the cosmic microwave background and primordial nucleosynthesis, and discuss the role of dark matter as well as possible detection methods.5 ECTSruns this semesterPH2073Auslegung und Bauweisen von Composite StrukturenStructureYou learn how composite structures are designed, laid out, and constructed — from classical lamination theory over failure criteria to manufacturing and repair. At the end you will develop a composite structure based on a demonstrator component, perform FE analyses and preliminary design, and evaluate manufacturing and in-service defects and plan repairs.5 ECTSruns this semesterMW1393Auslegung, Herstellung und Prüfung medizinischer ImplantateFlexibilization in Engineering SciencesIn this module you will learn methods and applications of intelligent systems in medicine. The focus is on application areas such as medical robotics, imaging, data analysis, and artificial intelligence, as well as their application in diagnostics, therapy, and rehabilitation. Using examples from orthopedics and implantology, you will understand the requirements and challenges at the interface of medicine, engineering, and computer science.5 ECTSruns this semesterME0012Autonome SystemeDomain Specific ModulesYou will learn concepts, principles and algorithms for modern mobile, autonomous systems (e.g. autonomous vehicles, unmanned aerial systems). The module provides fundamentals of kinematics, dynamics, sensing, state estimation, machine vision, environmental representation as well as control and path planning and shows tools such as ROS. In the end you will understand, implement and further develop modern algorithms for autonomous systems and work problem-oriented in teams.5 ECTSruns this semesterLRG6300AV Artificial IntelligenceFlexibilization in Engineering SciencesYou will gain a broad overview of methods in Artificial Intelligence and Machine Learning with a view to applications in vehicle engineering. In the end you will be able to classify appropriate ML and AI methods, implement them in code, evaluate and judge them, and apply fundamental neural networks and their variants to concrete tasks.5 ECTSruns this semesterED150049Bioproduktaufarbeitung 2Flexibilization in Engineering SciencesYou will learn process engineering fundamentals and engineering descriptions of membrane processes as well as crystallization/precipitation for biotechnological product clarification. In the end you will be able to assess applications of these processes, select suitable membranes and crystallization approaches, and apply models for data analysis as well as evaluate technical plant designs.5 ECTSruns this semesterMW1146ChangeMakers: Entrepreneurial and Design Competencies for Societal TransformationFlexibilization in Engineering SciencesYou work in interdisciplinary teams on real societal challenges in a future scenario. You learn entrepreneurial and design competencies: to identify problems in a focused way, to develop ideas, to prototype, and to plan the next steps toward realization.6 ECTSruns this semesterMGT001410Computational AcousticsFlexibilization in Engineering SciencesIn 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 Flow Stability and TransitionFlexibilization in Engineering SciencesYou learn numerical methods for solving large linear systems and for analyzing operators in physical problems (e.g., fluid mechanics). In the end you will be able to apply iterative algorithms and modern Python libraries (e.g., PETSc/SLEPc) and assess the physical significance of stability, transient growth, sensitivity, and resolvent analyses.6 ECTSruns this semesterED140016DesalinationFlexibilization in Engineering SciencesYou 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 semesterMW1969Design of Electric VehiclesFlexibilization in Engineering SciencesYou will learn the fundamentals and interrelations of electromobility: from the overall mobility system, environmental aspects, to vehicle concepts, drive trains, batteries, power electronics, thermal management and charging infrastructure. In the end you can derive vehicle and drive concepts, explain component differences to conventional vehicles, and analyze and calculate batteries, electric machines, power electronics and charging concepts.5 ECTSruns this semesterED150044EchtzeitsystemeDomain Specific ModulesYou 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 semesterIN2060Einführung in das rechnergestützte WerkstoffdesignDomain Specific ModulesYou will receive a practice-oriented introduction to computer-assisted materials science with a focus on nano-scale simulation. At the end you will be able to compute basic material properties by simulation, distinguish the methods of multi-scale modeling, and critically assess results.5 ECTSruns this semesterED170004Einführung in die Photogrammetrie, Fernerkundung und Digitale BildverarbeitungFlexibilization in Engineering SciencesYou learn the fundamentals of photogrammetry, remote sensing and digital image processing. The module conveys physical and geometric principles of optical remote sensing, methods of image analysis (e.g. transformations, edge detection, segmentation) as well as basics of classification and stereo evaluation, so that you can evaluate images and plan and assess basic photogrammetric tasks.5 ECTSruns this semesterBGU48036Electrical MachinesPropulsion SystemsIn this module you will learn the physical fundamentals of electrical machines, in particular the description of current- and position-dependent inductances, space-vector representation, as well as the calculation of waves, forces and torques. In the end you will be able to mathematically describe the operating behavior of typical rotating machines (asynchronous and brushless/synchronous machine) and calculate torques and harmonic components.5 ECTSruns this semesterEI8028Elektrochemische TechnologieFlexibilization in Engineering SciencesIn this module you will learn the fundamentals and applications of electrochemical technologies: from cells and reaction kinetics over transport phenomena to batteries, fuel cells, electrolysis and corrosion. By the end you will be able to thermodynamically and kinetically evaluate electrochemical systems, apply essential characterization methods and design technological components as well as assess their operating behavior.5 ECTSruns this semesterED170022Faser-, Matrix-, und Verbundwerkstoffe mit ihren EigenschaftenStructureYou 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 semesterMW1394Fernerkundung in der Stadtplanung und -entwicklungFlexibilization in Engineering SciencesYou will learn how remote sensing is used for the analysis and planning of urban spaces. The focus is on urbanization, informal settlements, urban green spaces, heat islands, Local Climate Zones and building footprints; at the end you can use remote sensing images to solve practical questions in urban planning and development.4 ECTSruns this semesterED110167Finite Elemente Methode für Fluid-Struktur Interaktion mittels Open-Source SoftwareFlexibilization in Engineering SciencesYou will learn how finite element methods are used for the simulation of fluid–structure interaction (FSI). The module covers the fundamentals of coupling fluid and structural mechanics, numerical discretization and solution strategies, and practical implementation with open-source software (Kratos Multiphysics). In the end you will be able to model FSI problems, solve them numerically, and evaluate various algorithmic or software-based approaches.3 ECTSruns this semesterBGU32022Flight GuidanceDomain Specific ModulesYou 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 semesterMW2237Flugantriebe 1 und GasturbinenPropulsion SystemsThe module covers the structure, thermodynamics and operation of gas turbines and aircraft propulsion. You will learn to understand, calculate and assess the Brayton cycle, the main components (compressor, combustion chamber, turbine) and different engine configurations in terms of performance and efficiency.5 ECTSruns this semesterMW0510Flugphysik der HubschrauberDynamics/ControlYou will gain a systematic overview of the physical principles of helicopter flight and learn to describe these phenomena mathematically. After the module you will be able to make quantitative statements about flight performance using simple impulse- and energy-based methods and you will understand how rotor properties and rotor dynamics influence the flight behaviour.5 ECTSruns this semesterMW2252Formale Methoden für Cyber-Physical SystemsFlexibilization in Engineering SciencesYou will learn formal methods for verification, control, observation and identification of cyber-physical systems (e.g., autonomous vehicles, robots, smart grids). In the end you can verify and practically apply systems using set representations, reachability analysis and correct-by-construction methods.5 ECTSruns this semesterIN2383Fortgeschrittenes Seminar für sichere Cyber-Physische SystemeFlexibilization in Engineering SciencesYou learn the fundamentals of cyber-physical systems (CPS), how to analyze such systems and which security aspects are relevant. In the end you will be able to independently research scientific literature, analyze described CPS from the literature and critically evaluate them.5 ECTSruns this semesterMW2400Fundamentals of Artificial IntelligenceFlexibilization in Engineering SciencesYou learn the foundations of artificial intelligence: from search procedures and constraint-satisfaction to logic and probabilistic models to decision making, learning and an introduction to robotics. In the end you will be able to design simple AI systems and apply basic methods from search, logic, probability and decision theory.6 ECTSruns this semesterIN2406Fundamentals of Flight ControlDynamics/ControlYou learn how the dynamics of an aircraft determine the requirements for flight control systems and how, with the help of systems theory and control engineering, suitable control and autopilot functions can be designed. In the end you will be able to assess the effects of control on flight properties and stability and to interactively implement simple flight control systems.5 ECTSruns this semesterMW0837Geometrisch exakte BalkentheorienFlexibilization in Engineering SciencesIn this module you will learn geometrically nonlinear beam theories, in particular the geometrically exact Simo–Reissner and Kirchhoff-Love models and their formulation as a 1D Cosserat continuum. You understand the theory of large rotations (SO(3)), the derivation from nonlinear continuum mechanics, and you gain an outlook on numerical discretization and solution methods such as the finite element method.5 ECTSruns this semesterED140020GrenzschichttheorieFluid-/AerodynamicsYou 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 Additiven FertigungFlexibilization in Engineering SciencesYou will learn the fundamentals of additive manufacturing with plastics and metals. The module explains various additive manufacturing processes (e.g., laser melting, electron beam melting, laser sintering, stereolithography, binder jetting, material extrusion, powder bed fusion), the associated process steps from data preparation through the build process to post-processing as well as their technical application.5 ECTSruns this semesterMW2462Grundlagen der Strukturoptimierung in der Luft- und RaumfahrtDomain Specific ModulesYou learn the fundamentals and methods of mathematical optimization with a focus on applications in aerospace. You understand optimization algorithms, learn to formulate mathematical optimization problems, and can evaluate and apply results of structural optimizations.5 ECTSruns this semesterED110173Humanoid Robotic SystemsFlexibilization in Engineering SciencesYou will get an overview of central topics of humanoid robotics and apply the theory practically on the NAO platform. In the end you will be able to describe components of humanoid systems, name relevant terminology and current challenges, develop functional modules in ROS, and implement and present a complete control application for NAO.6 ECTSruns this semesterEI7210Hyperspektrale Fernerkundung: Theorie und AnwendungFlexibilization in Engineering SciencesYou will learn the fundamentals and applications of hyperspectral remote sensing as well as practical procedures for improving and evaluating such image data. In the end you will be able to download hyperspectral datasets, improve their quality, use common geospatial ML libraries, and perform reproducible experiments including checkpoints and visualizations.5 ECTSruns this semesterED110172Industrielle Chemische Prozesse 1 - Katalyse für Energie, KlausurFlexibilization in Engineering SciencesYou will learn chemical fundamentals and engineering aspects of important industrial processes, especially catalytic processes in refining (e.g. FCC, Reforming, Hydrotreating, Alkylation) as well as processes for the production of alternative fuels from synthesis gas. In the end you will be able to analyze these processes and apply the knowledge to related questions in refining and energy process engineering.5 ECTSruns this semesterCH3094Inertial NavigationFlexibilization in Engineering SciencesYou learn the fundamentals of inertial navigation: from torque and inertia to coordinate transformations (Euler angles, quaternions) and to sensors (gyroscopes, accelerometers). In the end you can couple inertial and satellite navigation, estimate sensor errors, and develop your own algorithms for integration and calibration and implement them in Matlab.5 ECTSruns this semesterEI7342Introduction to Deep LearningFlexibilization in Engineering SciencesIn 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 semesterIN2346Investment and Financial ManagementFlexibilization in Engineering SciencesYou will learn instruments of corporate finance with which you analyze, evaluate and compare investment projects. At the end of the module you will be able to calculate and interpret corporate performance metrics, make investment decisions based on net present value and internal rate of return, and assess capital structure and cost of capital.6 ECTSruns this semesterWI000219_EKonzepte und Software Design für Cyber-Physische SystemeFlexibilization in Engineering SciencesYou will learn central concepts and techniques for cyber-physical systems (CPS) and will be able to design and analyze time-sensitive software for CPS. This includes signal processing, time-critical I/O, microprocessor interfaces, data communication as well as real-time operating systems and techniques.5 ECTSruns this semesterMW2411LebenserhaltungssystemeDomain Specific ModulesYou will learn the fundamentals, technologies and design aspects of life support systems (LSS) for spaceflight. In the end you will be able to design, analyse and compare different physico-chemical and biological LSS solutions for a given mission.5 ECTSruns this semesterED110123Maschinelles Lernen für die ProduktentwicklungFlexibilization in Engineering SciencesThis module conveys methods of machine learning and their use in product development. You will learn to understand ML models and apply them practically, quantify uncertainties, and use probabilistic models and optimization procedures for design-oriented tasks.5 ECTSruns this semesterED160024Medizintechnik 1 - ein organsystembasierter AnsatzFlexibilization in Engineering SciencesYou 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 semesterMW0056Methods of Product DevelopmentFlexibilization in Engineering SciencesYou will learn systematic work and problem-solving methods for the development of products – from goal planning to ensuring goal achievement. Using different process models you practice problem clarification, intuitive and systematic solution finding, as well as evaluation and selection of alternatives. Classical methods are complemented by modern approaches such as agile development and networked design.5 ECTSruns this semesterMW0003Modeling, Control and Design of Wind Energy SystemsFlexibilization in Engineering SciencesYou 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 semesterMW2152Modellierung komplexer soziotechnischer SystemeFlexibilization in Engineering SciencesYou will learn to model complex socio-technical systems from a Safety-II/Resilience Engineering perspective, in particular with the Functional Resonance Analysis Method (FRAM). In the end you will be able to functionally analyse dynamic work contexts, create FRAM models, examine variability and derive measures from them.5 ECTSruns this semesterED160059Multiphysikalische Interaktion in mechanischen SystemenFlexibilization in Engineering SciencesIn this module you will learn the fundamentals of Technical Dynamics and apply them to mechanically multi-physically coupled systems. You will be able to analyze simple mechanical systems, linearize, discretize, and assess the dynamic behavior of systems with couplings such as electromechanical, acoustic and thermo-elastic.5 ECTSruns this semesterED160054Neue Prozesse und Materialien in der Additiven FertigungFlexibilization in Engineering SciencesYou will learn new and innovative processes and materials for additive manufacturing (primarily metals and ceramics). The focus is on process-related fundamentals, resulting microstructures and corresponding material properties, as well as current and future markets and research topics.5 ECTSruns this semesterED160027Nonlinear Continuum MechanicsFlexibilization in Engineering SciencesYou will learn the mathematical description of the mechanics of continuous bodies under large deformations. The module introduces kinematics, stress concepts and the corresponding balance equations of mechanics and thermodynamics and shows how macroscopic material laws (e.g. plasticity, (visco-)hyperelasticity) couple deformations and stresses. In the end you will be able to apply the theory to classify physical material behavior within nonlinear continuum mechanics.5 ECTSruns this semesterMW2368Operational SafetyFlexibilization in Engineering SciencesIn this module you will learn principles and instruments for ensuring operational safety management in aviation, medicine and nuclear engineering. You will learn regulatory foundations, methods for data collection and analysis, as well as approaches to promote safety culture and communication, and you will be able to create a data-based concept for monitoring and improving operating safety at the end.5 ECTSruns this semesterED110117Optimal Control and Decision MakingFlexibilization in Engineering SciencesYou learn methods of optimal control, optimization, model predictive control and learning-based controller design (including reinforcement learning). In the end you can formulate problems of optimal control, select numerical solution procedures and implement controllers as well as evaluate modern learning-based approaches.5 ECTSruns this semesterEI70140Optimierung und ModellanalyseFlexibilization in Engineering SciencesIn this module you will learn fundamental concepts and methods of optimization, model analysis and numerical solution techniques. In the end you will be able to translate technical questions into mathematical optimization tasks and select appropriate solution approaches as well as assess the advantages and disadvantages of the procedures.5 ECTSruns this semesterMW2249Orbital and Space Flight MechanicsDynamics/ControlYou learn the physical and mathematical foundations of orbital dynamics of artificial satellites: from ideal Keplerian motion through disturbed and controlled orbits to orbit maneuvers, mission analysis, launch and reentry. In the end you will be able to describe orbital elements, model perturbing forces, compute basic maneuvers, perform orbit determination and analyze launch/reentry processes using the rocket equation and reentry dynamics.5 ECTSruns this semesterED110185Plasmaphysik 1Flexibilization in Engineering SciencesYou receive an introduction to plasma physics: fundamentals, typical models and applications in nature and technology. At the end you will be able to describe basic plasma phenomena, explain the behavior of charged particles and plasmas in magnetic fields, as well as analyze stability, instabilities and Alfvén waves and explain simple plasma diagnostics and applications.5 ECTSruns this semesterPH2035Principles of ProgrammingFlexibilization in Engineering SciencesYou will learn advanced programming and algorithmic practices in Python and C++ and apply them to examples from Computational Geometry, point cloud processing and image analysis. In the end you will be able to tackle geodetic problems programmatically, use appropriate data structures and libraries, and bring Python and C++ together.5 ECTSruns this semesterED110040Radar mit synthetischer Apertur in der WaldbeobachtungFlexibilization in Engineering SciencesIn this module you will learn and apply methods of synthetic aperture radar (SAR) remote sensing, with a focus on applications for forest monitoring. By the end you will be able to apply fundamental SAR-, PolSAR-, InSAR- and TomoSAR techniques, estimate forest heights from SAR data, and reconstruct 3D reflection profiles.4 ECTSruns this semesterED110170Radar Signals and SystemsDomain Specific ModulesYou will learn the physical fundamentals and system aspects of radar technology as well as methods for signal processing. In the end you will be able to apply operating modes (CW, FMCW, pulsed), metrics (range, resolution, SNR) and basic signal processing procedures, and you will be able to analyze and evaluate radar systems as functional units.5 ECTSruns this semesterEI73761Robot and Swarm NavigationFlexibilization in Engineering SciencesYou will learn how cooperative navigation and positioning for swarms of robots work. The module conveys Bayesian estimation methods (including Kalman filters and sequential Monte Carlo/particle filters), radio localization concepts, and methods of estimation theory for the analysis and optimization of swarm navigation. At the end you will be able to design a radio-based swarm navigation system and evaluate its performance.5 ECTSruns this semesterEI71026RoboticsFlexibilization in Engineering SciencesYou 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 semesterIN2067Rocket Propulsion 1Propulsion SystemsYou will receive a system-oriented overview of chemical liquid rocket engines and their components. You will learn how systems change when transitioning between different cycles (e.g., pressure-fed, tap-off, expander-bleed, full expander), which ignition and transient phenomena occur, and how to perform a preliminary design and sizing assessment for complete liquid propulsion systems. In short: by the end you will be able to distinguish various engine cycles, assess their application, and conduct a preliminary layout.5 ECTSruns this semesterED110113Rotorcraft Engineering - VorentwurfIntegrated SystemYou learn the preliminary design process for helicopters: from requirements through dimensioning to flight performance and estimation of costs and weight. In the end you can analyze and evaluate a helicopter concept in terms of feasibility, power requirements, and mission suitability.5 ECTSruns this semesterMW1397Satellite CommunicationsDomain Specific ModulesYou will learn the telecommunications fundamentals of satellite communications: from orbits and link budgets to channel models and multiple access, capacity calculation and payload aspects. By the end you will be able to technically assess existing and planned satellite systems and solve typical computation tasks of satellite communications.5 ECTSruns this semesterEI71015Scientific Computing IFlexibilization in Engineering SciencesYou 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 semesterIN2005Seminar on Hyperloop TechnologyDomain Specific ModulesIn the module you will gain an overview of technologies and components of the Hyperloop system, including magnetic levitation techniques, linear drives, aerodynamics in low-pressure environments, and safety-relevant aspects of passenger transport. After completion you will be able to classify the relevant technologies, assess their advantages and disadvantages as well as the interactions between the involved technical disciplines.5 ECTSruns this semesterED110180Smarte Mobilität - verstehen, modellieren, gestalten (5 ECTS)Flexibilization in Engineering SciencesYou will learn to address mobility from three perspectives: understanding demand and costs, modeling mobility systems, and designing new solutions (e.g., C.A.S.E.: Connected, Autonomous, Shared, Electrified). In the end you will be able to assess regional and international mobility demand, model mobility solutions, evaluate economically and ecologically, and test concepts through simulations.5 ECTSruns this semesterED150007Smarte Mobilität - verstehen, modellieren, gestalten (6 ECTS)Flexibilization in Engineering SciencesIn this module you will learn to understand mobility systems, map them with data and models, and design new solutions. In the end you will be able to analyze mobility demand, model, compare and evaluate CASE solutions (Connected, Autonomous, Shared, Electrified) with regard to economic, ecological and social impacts.6 ECTSruns this semesterED150008Space Mission DesignDomain Specific ModulesYou design a space mission in team collaboration from requirements to technical and cost-related decisions. In the end you will know methods for mission planning, payload analysis, launch and space segment evaluation, as well as optimization and cost estimation procedures, and you can present the results.5 ECTSruns this semesterED110132Space ResourcesDomain Specific ModulesThe module provides an introduction to Space Resource Utilisation (SRU). You will learn which products from space resources are possible, how the value chain is structured, and which technical as well as economic aspects are relevant for the exploration, extraction, processing and distribution of resources. In the end you will be able to assess the necessity and feasibility of SRU and to develop concrete system concepts for its realisation.5 ECTSruns this semesterED110086Spacecraft Attitude Mechanics and ControlDynamics/ControlYou will learn how the rotational motion of a spacecraft as a rigid body is described, analyzed and controlled. In the end you will be able to apply kinematic and dynamic fundamental equations, use common rotation parameters and angular velocity, and evaluate concepts for propulsion and control system design for attitude control tasks.5 ECTSruns this semesterED110187Strategic Management for EngineersFlexibilization in Engineering SciencesYou will receive a practice-oriented overview of strategic planning and decision-making in a company. At the end you will be able to evaluate business ideas and products in the market environment and prepare informed management decisions.3 ECTSruns this semesterEI04004Structural Optimization 1Flexibilization in Engineering SciencesIn this module you will get an introduction to methods and applications of structural optimization for engineers. You will learn mathematical basics, modeling and formulation of optimization tasks as well as relevant optimization algorithms, and you will be able to perform simple optimization and sensitivity analyses as well as multi-criteria problems at the end.3 ECTSruns this semesterBV010023Sustainability in AviationDomain Specific ModulesThe module covers sustainability in air transport with a focus on climate protection and life-cycle approaches. You will learn the relevant scientific connections (e.g., contrails, radiative forcing, local air quality), measures for emissions and noise reduction, and the application of life cycle assessment methods to evaluate products, processes and services.5 ECTSruns this semesterLRG6002System- und Funktionale SicherheitFlexibilization in Engineering SciencesYou will learn to describe, abstract, and delineate systems (products or processes) from their surroundings in such a way that potential system failures can be identified and evaluated. In the end you will be able to analyze hazards, assess risks, and derive appropriate measures for system and functional safety.5 ECTSruns this semesterED130009System-on-Chip TechnologiesFlexibilization in Engineering SciencesYou 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 semesterEI7384Systems Engineering - GrundlagenDomain Specific ModulesYou will learn the fundamentals of Systems Engineering: methods, processes and tools for the development of technical systems over their lifecycle. In the end you will be able to derive requirements from stakeholder needs, perform simple architecture and trade-off analyses, apply selected system modelling techniques, and design and adapt a Systems Engineering approach for a project.5 ECTSruns this semesterED110106Technik autonomer SystemeFlexibilization in Engineering SciencesYou will learn the fundamentals and techniques of autonomous technical systems: perception (multisensor fusion, localization, navigation, mapping, object recognition), planning and execution (task decomposition, reactive and knowledge-based behavior, learning) as well as architectural concepts. In the end you will be able to analyze problems of autonomous robotics and develop solutions as well as implement them in a project-oriented team setting.6 ECTSruns this semesterEI74371Werkstoffe in der Fügetechnik und Additiven FertigungFlexibilization in Engineering SciencesYou will get an overview of the behavior of metallic materials during joining and in additive manufacturing. You will learn how thermal cycles and heat sources influence the microstructure and properties of metals and alloys and how these lead to process decisions for specific materials.5 ECTSruns this semesterMW2458A Foray into Multiphase Flows with SeminarDomain Specific ModulesIn this module you will learn to recognize and quantify physically relevant phenomena in gas–liquid and other multiphase flows. You will learn to model these processes with the fundamental equations of thermo-fluid dynamics (conservation laws for mass, momentum, and energy) and to mathematically analyze technical questions such as bubble dynamics, droplet formation, or population balances.5 ECTSno date this semesterED140027Additive Fertigung mit MetallenFlexibilization in Engineering SciencesYou will learn the most important metallic processes of additive manufacturing (e.g. Binder Jetting, Material Extrusion, Direct Energy Deposition, Powder Bed Fusion). You understand feedstock materials, physical binding mechanisms, and how process, structure, and component properties are related. In the end you can derive suitable processes and materials for concrete applications.5 ECTSno date this semesterMW2476Advanced Deep Learning for PhysicsFlexibilization in Engineering SciencesIn 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 Flight ControlDynamics/ControlIn this module you will learn and apply advanced methods of flight control for longitudinal and lateral motion. After completing the module you will be able to evaluate controller designs (e.g., LQR, LQG, eigenstructure assignment, C*-assignment) and autopilot functions including flight envelope protection, and use them for control- and stability-augmentation systems as well as automatic landing.5 ECTSno date this semesterMW0838Advanced Parallel Computing and Solvers for Large Problems in EngineeringFlexibilization in Engineering SciencesYou 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 AircraftDomain Specific ModulesThe 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 semesterED110052Aerodynamic Design of TurbomachineryDomain Specific ModulesYou learn the aerodynamic design and analysis of compressors and turbines (axial, radial, diagonal configurations). The module covers from 1D fundamentals to 3D aerodynamic design, loss mechanisms, stage interaction and numerical methods (including an introduction to CFD). In the end you will be able to calculate common turbomachinery, assess operating behavior and stability limits, and evaluate calculation results and develop improvement proposals.5 ECTSno date this semesterMW2123Aircraft Design BasicsIntegrated SystemYou will learn the fundamentals of aircraft design: aerodynamics, structural design, propulsion sizing, performance and mission calculations as well as airframe and electrical aircraft technologies. In the end you will be able to apply design methods and analysis tools, design individual subsystems in the overall context, and evaluate the economic and ecological efficiency of a typical flight mission.5 ECTSno date this semesterLRG0100Algorithmen für Uncertainty QuantificationFlexibilization in Engineering SciencesYou will learn methods for quantifying uncertainties in computer-based simulations. In the end you will be able to place central algorithms for Forward Uncertainty Quantification, assess their complexity, and evaluate when which procedures (e.g., Monte Carlo, Quasi-Monte Carlo, stochastic collocation, stochastic Galerkin) are suitable.5 ECTSno date this semesterIN2345Analyse und Interpretation von Geoinformationen in der ErdbeobachtungFlexibilization in Engineering SciencesYou will receive a practice-oriented introduction to remote sensing techniques with a focus on satellite data. You will learn how processes in the geo-, hydro-, bio- and anthroposphere can be analyzed and interpreted using earth observation data. In the end, you will be able to select suitable EO datasets, interpret satellite images, and apply remote sensing tools to monitor real environmental processes.5 ECTSno date this semesterED110183Angewandte BiorobotikFlexibilization in Engineering SciencesYou will learn how biological insights are used to solve technical tasks in bio robotics. The module provides foundations of bipedal locomotion, its control, and biologically inspired optimization methods, and applies this knowledge in a practical project in which you design, optimize, and evaluate a controller for a walking robot.6 ECTSno date this semesterMW2388Applied Numerical ModelingFlexibilization in Engineering SciencesYou learn the fundamentals of numerical modeling with a focus on application and practical implementation. In the end, you can select, apply, and interpret the results of suitable numerical procedures for questions of Earth system processes.3 ECTSno date this semesterED110237Applikation von Radioaktivität in Industrie, Forschung und MedizinFlexibilization in Engineering SciencesYou 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 semesterMW0892Astroteilchenphysik 2Flexibilization in Engineering SciencesYou will learn the connections between cosmology and particle physics: from the fundamentals of the Standard Model and cosmology to observable properties of the universe and current questions such as dark matter, neutrino physics, cosmic radiation and gravitational waves. In the end you will be able to link key observations (CMB, primordial nucleosynthesis, large-scale structure) with particle physics and discuss candidates as well as detection methods for dark matter.5 ECTSno date this semesterPH2074Ausgewählte Themen aus dem Bereich Künstliche Intelligenz und RobotikFlexibilization in Engineering SciencesIn this module, current topics from artificial intelligence and robotics are introduced. By the end you will know the state of research and technology in selected areas and be able to critically engage with newer research projects.5 ECTSno date this semesterIN3150AV Artificial IntelligenceFlexibilization in Engineering SciencesYou will obtain a comprehensive overview of methods of artificial intelligence and machine learning with practical relevance to vehicle technology. In the end you will be able to select appropriate ML methods for various questions in vehicle technology and implement them in code (e.g., for autonomous driving tasks).5 ECTSno date this semesterMW2378Behavioral Economics meets real world challenges: An interdisciplinary project rallyFlexibilization in Engineering SciencesYou engage with current questions of behavioral economics and apply them to societal or ecological challenges. In the end you can develop a detailed project concept, justify behavioral interventions and present the results to the target audience as well as document them in writing.5 ECTSno date this semesterWI001284Bio-NanotechnologieFlexibilization in Engineering SciencesYou will learn how solids and soft matter interact with biomolecules. The module conveys concepts for the analysis of these interactions, ideas for synthesizing nanomaterials, interfacial processes, methods for surface characterization, and typical application areas, with a focus on nanomedicine. By the end you will be able to describe properties of nano- and biomaterials and apply and evaluate interaction concepts.5 ECTSno date this semesterMW2431Biofluid MechanicsFlexibilization in Engineering SciencesYou learn how fluid mechanics is applied to biological systems, in particular blood flow in vessels and flow in the lungs. By the end you will be able to use fluid-mechanical principles and mathematical as well as numerical methods to describe and simulate biological processes.5 ECTSno date this semesterMW0376Bioproduktaufarbeitung 1Flexibilization in Engineering SciencesIn this module you will learn process engineering fundamentals for the valorisation of bio-products, with a focus on adsorptive processes and extraction procedures. You can analyse, evaluate and combine chromatographic and extractive processes with additional steps such as cell disruption or centrifugation to form complete valorisation processes.5 ECTSno date this semesterMW1145Cognitive SystemsFlexibilization in Engineering SciencesIn 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 semesterIN2222Computer Vision I: Variational MethodsFlexibilization in Engineering SciencesYou 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 semesterIN2246Corporate FinanceFlexibilization in Engineering SciencesYou learn the fundamental concepts of corporate finance: valuation of firms and options, capital structure, dividend policy, market efficiency, as well as transactions such as IPOs and M&A. In the end you will be able to critically discuss these concepts, value financial and real options, and make decisions on financing and valuation questions (e.g., DCF, option valuation).6 ECTSno date this semesterWI000091Cyber-Physical SystemsFlexibilization in Engineering SciencesYou learn how to model and analyze systems in which computing elements are tightly linked to physical processes (Cyber‑Physical Systems). The focus is on continuous, discrete and hybrid dynamics as well as fundamental methods for simulation, stability analysis and control of such systems.6 ECTSno date this semesterIN2305Detektion des Klimawandels in ErdbeobachtungsdatenDomain Specific ModulesYou learn how climate change signals are detected and interpreted in observational data. In the seminar, measurement methods (focus on satellite remote sensing, also in situ) and findings for the atmosphere, oceans, ice, sea ice, and land vegetation are compared and reconciled with theoretical insights and model results, so that you can assess observable changes and methodological boundaries.5 ECTSno date this semesterED110179Distributed SystemsFlexibilization in Engineering SciencesYou will learn the core principles and building blocks of large-scale distributed systems: communication, coordination, fault tolerance, and replication. In the end you will be able to understand typical algorithms and protocols (e.g., logical clocks, consensus/Paxos, replication schemes, DHTs), assess their properties, and apply them in the design of distributed applications.5 ECTSno date this semesterIN2259Einführung in die KernenergieFlexibilization in Engineering SciencesYou 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 die Philosophie für Ingenieurinnen und IngenieureFlexibilization in Engineering SciencesYou receive an introduction to central areas of philosophy (e.g., ethics, logic, metaphysics, epistemology, natural philosophy, philosophy of mind, aesthetics) and learn to connect philosophical questions with natural-scientific-technical and societal aspects. In the end you will be able to analyze ethical tensions, develop justified solution proposals, and transfer these to professional contexts.4 ECTSno date this semesterMW8003Einführung in die theoretische AstrophysikFlexibilization in Engineering SciencesYou will learn fundamental concepts of theoretical astrophysics, from the structure and dynamics of compact objects to stars and up to galaxies and galaxy clusters. In the end you will be able to apply physical principles (gravitation, hydrodynamics, radiative transfer, equations of state), derive simple scaling relations, and describe astrophysical examples such as white dwarfs, stellar evolution, accretion, and shock fronts.5 ECTSno date this semesterPH2080Einführung in Stochastische SchwingungenFlexibilization in Engineering SciencesYou learn the theory of linear stochastic vibrations for technical systems. In the end you will be able to analyze linear dynamic systems under random excitation (e.g., wind, earthquakes, waves) in the time and frequency domains as well as by simulation, and make statements about safety.6 ECTSno date this semesterED130006Energy-Based Modeling of Complex SystemsDomain Specific ModulesYou learn structured, energy-based modeling (in particular port-Hamiltonian systems and bond graphs) and procedures for reducing very high-dimensional models. In the end you will be able to represent systems in port-Hamiltonian form, work with differential forms, and apply and assess three central model order reduction methods.5 ECTSno date this semesterMW0868Experimentelle SchwingungsanalyseDomain Specific ModulesYou will learn how to experimentally investigate vibration phenomena in machines and structures: from sensor selection and signal conditioning through time- and frequency-domain analysis to modal analysis and frequency-based substructuring. In the end you will be able to formulate measurement tasks for vibration analysis, correctly evaluate measurement data, and physically assess the observed vibration behavior.5 ECTSno date this semesterMW1995FabrikplanungFlexibilization in Engineering SciencesYou will learn the fundamentals of factory planning: from objectives and site selection through structure and layout planning to production, assembly and logistics planning as well as lean production principles and digital tools. In the end you will be able to systematically analyze factory planning tasks, design concepts for layout, production and logistics, and perform economic feasibility assessments for factory projects.5 ECTSno date this semesterMW0036Flight Dynamics, Stability and ControlDynamics/ControlIn this module you will learn the dynamic fundamentals of aircraft: coordinate systems, nonlinear equations of motion, as well as models for aerodynamic forces and propulsion. You will be able to determine steady flight states, analyze static stability and controllability, and compute important indices such as the neutral point, maneuver point, trim rudder deflections, and trim angle of attack.5 ECTSno date this semesterMW0833Flugantriebe 2Propulsion SystemsYou will learn the structure, operation and control of modern jet engine systems as well as their certification and monitoring. After the module you will be able to analyze performance characteristics and interactions of components, derive control concepts and evaluate new propulsion concepts.5 ECTSno date this semesterMW0043GasdynamikFluid-/AerodynamicsYou 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 semesterMW0357Grundlagen der HydrauliksystemtechnikFlexibilization in Engineering SciencesYou will learn the basics of mobile hydraulic systems as used in Off‑Highway and mobile working machines. The focus is on practical design, analysis and diagnostics of components and systems, as well as the influence of fluid properties, flow regimes and system architectures on efficiency, losses and cavitation. By the end you can design components, estimate performance losses and diagnose and correct hydraulic problems based on measurement data.3 ECTSno date this semesterED160060Grundlagen der NukleartechnikFlexibilization in Engineering SciencesYou 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 thermohydraulische Analyse von KraftwerkenFlexibilization in Engineering SciencesYou 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 semesterMW0964Grundlagen von Computer VisionFlexibilization in Engineering SciencesYou will learn how images are formed and how to process image information for measurement and control tasks. The module covers surface properties, camera models and lenses as well as basic image processing and 3D reconstruction methods (stereo, shape from shading, structure-from-motion). In the end you will be able to calibrate camera systems and assess and apply methods for 3D reconstruction and image processing for robotic applications.4 ECTSno date this semesterIN2133Human Factors in AviationDomain Specific ModulesYou learn how human errors arise in aviation and how risks can be reduced through ergonomic design, organizational measures, and human factors methods. In the end you will be able to identify sources of error, apply ergonomic assessment methods, and evaluate safety relevance from an ergonomic perspective.5 ECTSno date this semesterMW2128Industrielle Chemische Prozesse 2 - Katalyse für Synthese, KlausurFlexibilization in Engineering SciencesYou will become familiar with industrial synthesis processes for inorganic and organic basic chemicals as well as intermediates, with a particular focus on the role of catalysts (heterogeneous and homogeneous) and operating conditions. Topics include biomass conversion, production of ammonia, sulfuric and nitric acid, processes for the production of light olefins and aromatics, as well as selective oxidation, selective hydrogenation, chiral synthesis and examples such as acryl-, maleic- and phthalic acid. More recent developments such as metallocene catalysts for olefin polymerisation are also presented.5 ECTSno date this semesterCH3095Innovation SprintFlexibilization in Engineering SciencesYou work five intensive days in interdisciplinary teams on a real challenge from a partner. You learn to develop sustainable business ideas with entrepreneurial thinking and user-centered methods, from empathic research to prototyping to the pitch, always with consideration of people, planet and profit.6 ECTSno date this semesterMGT001348Introduction to Biological ImagingFlexibilization in Engineering SciencesYou 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 Machine LearningFlexibilization in Engineering SciencesYou receive an introduction to concepts, methods and theoretical foundations of common machine learning algorithms. At the end you know standard procedures for regression, classification, clustering and model selection, you can apply them, validate them, interpret them and assess their limits.5 ECTSno date this semesterEI04016KI in der ProduktionstechnikFlexibilization in Engineering SciencesYou learn fundamental methods of artificial intelligence and their application to production-technical questions. Based on the KDD process and industrial case studies, you practise data preparation, feature extraction, and the use of regression, classification, cluster, image processing, and reinforcement learning methods to derive knowledge from production data and derive actionable recommendations.5 ECTSno date this semesterMW2455Klimasignaturen in der HydrosphäreFlexibilization in Engineering SciencesYou engage with climate signals in oceans and continental hydrology using satellite altimetry and physical models. In the end you will be able to process observed data, analyze it, and assess temporal changes of hydrosphere estimates in the context of physical processes and climate change.3 ECTSno date this semesterED110014Luft- und RaumfahrtstrukturenStructureIn this module you will learn the fundamentals and methods for the design and sizing of aerospace structures. You will gain insight into structural concepts, materials, load assumptions, stability and fatigue issues, as well as the application of the finite element method and basics of multidisciplinary optimization. In the end you will be able to perform preliminary design and sizing of components and carry out calculations on stability, time-to-failure and load assumptions.5 ECTSno date this semesterMW0063Lunar Science and ExplorationDomain Specific ModulesYou learn fundamentals and current topics of lunar exploration: origin, structure and environment of the Moon, its geology and geophysics across different scales, as well as the history and motivation for Moon missions. Practically you will practice handling important Moon datasets (e.g., Diviner, LOLA) and acquire competencies in data analysis, mission planning, and scientific communication (reports, peer review, posters).5 ECTSno date this semesterED110229Management Science (MiM)Flexibilization in Engineering SciencesYou will learn to model, solve and analyze management and business decision problems with mathematical methods. After the module you will be able, among other things, to formulate and solve linear and mixed-integer programs, dynamic programs as well as networks (shortest paths, maximum flows) and to apply decision trees and utility theory to risk-bearing decisions.6 ECTSno date this semesterWI001137Marketing and Innovation Management (MiM)Flexibilization in Engineering SciencesYou learn how innovations arise from market and organizational perspectives, how they are steered and commercialized, and how marketing strategies and instruments create customer value, satisfaction, and loyalty. In the end, you can apply and evaluate models for the market side of innovation, the organization of innovation processes, and fundamental marketing concepts.6 ECTSno date this semesterWI001129Modellierung zellulärer SystemeFlexibilization in Engineering SciencesYou will learn to formulate, analyze and simulate mathematical models for cellular systems. The focus is on reaction kinetics, thermodynamics and stoichiometric networks; in the end you will be able to create balance equations for complex cellular networks, predict their behavior by means of simulations, and evaluate biotechnological processes with regard to temporal behavior and product yield.5 ECTSno date this semesterMW1141Multidisciplinary Design OptimizationDomain Specific ModulesYou will learn how engineering design problems are formulated and solved as mathematical optimization problems. The module provides fundamentals and practice of multidisciplinary design optimization, including model creation, selection of suitable algorithms, and their application to efficiently search for admissible, physically meaningful designs.5 ECTSno date this semesterMW0085Navigation in Complex EnvironmentDomain Specific ModulesYou will learn principles of position determination, navigation and trajectory estimation in simple and complex environments. The module covers sensors, coordinate systems, errors and biases, as well as methods for GNSS-, inertial- and multi-sensor navigation including SLAM and visual/lingual (Wi‑Fi, Lidar) procedures. In the end you will be able to apply fundamental positioning and navigation algorithms and assess their behavior in practical cases.5 ECTSno date this semesterED110234Neue Horizonte des StädtebausFlexibilization in Engineering SciencesThe module interdisciplinary, which technological developments could change our cities in the coming decades and how urban planning can respond to them. You will learn to discuss current research approaches from different disciplines, deepen them using case studies, and in small groups develop and present prototypical project proposals.5 ECTSno date this semesterAR30453New Space EconomyDomain Specific ModulesYou will learn the development and current structure of the space economy, distinguish New Space from traditional spaceflight and analyze the value chain. In the end you can analyze New Space companies using a six-element framework (product, process, technology, business model, financing, stakeholders) and identify opportunities for innovation.5 ECTSno date this semesterED110181Nonlinear ControlDomain Specific ModulesYou will learn analysis and design methods for nonlinear dynamic systems in state space. After the module you will be able to assess the stability of equilibrium points, apply fundamental differential-geometric concepts, and design nonlinear control strategies such as backstepping, passive-based control, and flatness-based feedforward controllers.5 ECTSno date this semesterMW1808Numerische Methoden in der StrukturdynamikStructureYou will learn numerical methods for modeling and simulating the vibration dynamics of structures. In the end you will be able to apply discretization methods (e.g., Rayleigh-Ritz, Finite Elements) and numerical solution procedures for linear systems, eigenvalue problems and time integration, as well as employ model reduction, damping models and modal methods.5 ECTSno date this semesterED160053Orbital Robotic Systems: Mechanics and ControlDynamics/ControlYou will learn how to model multi-body systems in orbit, derive their dynamics, and solve control tasks. The emphasis is on motion and control of interconnected rigid bodies (e.g., spacecraft with manipulators), including special cases such as jointed systems, closed chains and tethers, as well as on-board autonomy and technological aspects of orbital robotics.5 ECTSno date this semesterED110193Parallel ProgrammingFlexibilization in Engineering SciencesYou 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 semesterIN2147Physikbasiertes Machine LearningFlexibilization in Engineering SciencesYou 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 semesterMW2450Polymerphysik 1Flexibilization in Engineering SciencesYou will receive an introduction to the physics of polymers: from classical and modern applications, through the description of chain conformations, to properties of solutions, melts and crystalline polymers. In the end you will be able to describe polymer structure and properties, analyze characterization methods and phase diagrams, and assess mechanical and thermal properties.5 ECTSno date this semesterPH2046Polymerphysik 2Flexibilization in Engineering SciencesYou will learn about advanced physical concepts of polymers (plastics), e.g. surfaces and interfaces, dynamics in melts, thin films, block copolymers, gels and electrical properties. In the end you will be able to describe these systems physically, assess their structures and properties, and categorize typical experimental methods.5 ECTSno date this semesterPH2047Principled Entrepreneurial DecisionsFlexibilization in Engineering SciencesYou learn how your personal values and principles shape your decisions as a founder or leader in startups. By the end you can clearly formulate your own values, design a personal and company-related decision framework, and better assess and address ethical dilemmas in founding situations.6 ECTSno date this semesterWI001141Production and Logistics (MiM)Flexibilization in Engineering SciencesYou will be introduced to planning problems in production and logistics as well as to methods for solving them. At the end you will be able to classify problems on strategic, tactical and operational levels, select appropriate solution approaches and apply simple quantitative models.6 ECTSno date this semesterWI001131Prognostics and Health ManagementFlexibilization in Engineering SciencesYou will learn methods for forecasting the degradation behavior of technical systems and for estimating their remaining service life. This includes physics-based and data-driven procedures as well as methods for uncertainty estimation. In the end, you can combine models and data to estimate remaining usage durations and prepare suitable maintenance decisions.3 ECTSno date this semesterED130013Project Week: GovTech Design Lab: Harnessing AI, Earth Observation and Data Storytelling to Tackle Climate Security and ConflictFlexibilization in Engineering SciencesYou work in an interdisciplinary team to analyze geospatial data and publicly available datasets (e.g., via Google Earth Engine) and derive insights that are valuable for decision-makers and the public. The aim is the further development of Geoguard (an environmental dashboard) in collaboration with UN DPPA, as well as learning Data Storytelling to communicate complex interrelationships.6 ECTSno date this semesterSOT86081Raketenantriebe 2 und EntwurfswettbewerbDomain Specific ModulesIn this module you design rocket engines in teamwork and learn the most important physical relationships and design trade-offs. At the end you will be able to dimension a complete rocket propulsion system and configure the subsystems so that mission requirements are fulfilled.5 ECTSno date this semesterED110095Reaktorphysik 1 und Anwendungen der KerntechnikFlexibilization in Engineering SciencesYou will learn the physical fundamentals of nuclear reactions and reactors: structure of nuclei, nuclear fission, cross sections, neutron flux and moderation as well as the kinetics and control of chain reactions. In the end you will be able to explain neutron multiplication and the thermal neutron cycle and assess the performance characteristics of the Forschungs-Neutronenquelle FRM II.5 ECTSno date this semesterPH2050Reaktorphysik 2 und neue Konzepte in der KerntechnikFlexibilization in Engineering SciencesYou learn the physical fundamentals of neutron and reactor physics: diffusion, burn-up theory and eigenvalue equations for critical reactors as well as mechanisms of absorbers, reactor poisons and reactivity feedbacks. In the end you will be able to solve diffusion and eigenvalue problems in different geometries and explain various reactor types and their key figures.5 ECTSno date this semesterPH2051Robot Motion PlanningFlexibilization in Engineering SciencesYou learn methods for planning robot movements in different information scenarios: from planning procedures with complete environment knowledge to local, partially-known environments to probabilistic sampling methods for high-dimensional spaces. You will also learn data fusion and filtering procedures (Kalman filter, particle filter) with which maps are created and Simultaneous Localization and Mapping (SLAM) implemented, so you can plan collision-free trajectories.5 ECTSno date this semesterIN2138RoboterdynamikFlexibilization in Engineering SciencesIn this module you will learn to systematically describe and analyze the kinematics and dynamics of stiff serial robots. At the end you will be able to model structure, motions and forces, and to evaluate and apply fundamentals of trajectory planning and control.5 ECTSno date this semesterMW0867Rotorcraft Engineering - Systeme & KomponentenIntegrated SystemThe module provides fundamentals of Systems Engineering and covers the main subsystems of helicopters (e.g., rotor, drive train, primary structure, flight control, electrics). You learn how these systems work, how they interact, and how development and verification processes are planned. In the end you will be able to assess different configurations and define experiments for verification and validation of systems and components.5 ECTSno date this semesterMW2406Safety and Certification of Avionics and Flight Control SystemsDomain Specific ModulesYou will learn the admission process for avionics and flight control systems in commercial aviation and how a formal safety case is produced. The focus is on analysis and assessment methods for the safe development of such systems as well as the relevant development standards and process steps.5 ECTSno date this semesterMW2282Satellite NavigationDomain Specific ModulesYou will learn how satellite-based navigation systems determine position, time and velocity using radio measurements. You understand influencing factors such as satellite geometry, measurement errors and propagation disturbances, and you know the fundamental algorithms for the design of a simple receiver.6 ECTSno date this semesterEI0432Satellitenantriebe und EntwurfswettbewerbDomain Specific ModulesYou engage intensively with the design of propulsion systems for spacecraft and work in a team on a design competition. In the end you can analyze mission requirements, select a suitable propulsion system, design, dimension, and explain its central key figures.5 ECTSno date this semesterED110094Scientific Computing IIFlexibilization in Engineering SciencesYou 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 semesterIN2141Seminar Spacecraft ManeuversIntegrated SystemYou will learn to practically operate a spacecraft during various maneuvers and to conduct flights on the Soyuz spaceflight simulator. You will deepen orbital mechanics, gain detailed knowledge of spacecraft systems, and apply this knowledge in guided and autonomous training sessions on the simulator. In the end you will be able to perform flight maneuvers, evaluate flight data, and identify problems or anomalies in your own flights.5 ECTSno date this semesterED110161Sicherheit und Zulassung in der LuftfahrtDomain Specific ModulesIn this module you will learn about safety aspects and certification requirements in aviation. You will understand safety terms, aeronautical regulatory embedding, and certification processes, and you will be able to apply and assess safety and hazard analyses as well as their impacts on overall design and flight performance.5 ECTSno date this semesterMW2407Signalverarbeitung und MikrowellenfernerkundungFlexibilization in Engineering SciencesYou 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 semesterBGU31006Space ExplorationDomain Specific ModulesThe module offers an introduction to space exploration: history, the formation of the solar system, planets, moons, small bodies, trajectories as well as mission and space systems. You will learn to evaluate scientific mission objectives, to develop mission architectures, and to formulate technology requirements.5 ECTSno date this semesterED110108Space Transportation Design ChallengeDomain Specific ModulesYou work in a team on the design of a spacecraft transport system for a given mission (Earth-to-orbit, in-orbit, or interplanetary). You learn to understand the main trade-offs and physical relationships, to dimension the main subsystems, and to design a complete, functional system.5 ECTSno date this semesterED110098Spacecraft Design - GrundlagenIntegrated SystemYou learn the fundamentals of satellite and mission design: structure, functions and performance indicators of the subsystems, their interfaces and interactions, and the trade-off of design alternatives under mission requirements. You also get an overview of payloads, space mechanics, transport and the space environment and can make well-founded subsystem-spanning design decisions.5 ECTSno date this semesterED110105Stochastische Finite-Elemente-Methode in der VibroakustikFlexibilization in Engineering SciencesIn 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 StrahlenschutzFlexibilization in Engineering SciencesIn 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 semesterMW1353Sustainable Mobile PowertrainsPropulsion SystemsYou will learn the fundamentals and design principles of sustainable mobile propulsion. In the end you will be able to assess different propulsion concepts (internal combustion engines with sustainable fuels, battery propulsion, fuel cells) and make simple estimates of suitability, advantages and disadvantages, as well as sustainability aspects.5 ECTSno date this semesterED150013System IdentificationDynamics/ControlIn this module you will learn to derive mathematical models of dynamic systems from measurement and experimental data. You will learn and apply basic statistical methods, algorithms for parameter estimation and procedures for model validation, with examples predominantly from manned and unmanned aircraft technology.5 ECTSno date this semesterED110067Tech ChallengeFlexibilization in Engineering SciencesIn this module you work in a team on real industry challenges (e.g., Smart City, mobility, Digital Healthcare, Industry 4.0, Smart Grid) and develop functional prototypes as well as short business statements within a semester. At the end you will be able to assess technological opportunities, work interdisciplinarily on a project basis, and present results in a demo and pitch.5 ECTSno date this semesterWI001180Technische DynamikFlexibilization in Engineering SciencesYou will learn methods for deriving and analyzing motion equations of mechanical systems—from rigid multibody systems to one-dimensional continua. In the end you will be able to formulate models, linearize, analyze stability and vibration modes, and discretize and evaluate continuous systems with Rayleigh– Ritz and the Finite Element Method.5 ECTSno date this semesterMW2098TUM Data Innovation LabFlexibilization in Engineering SciencesIn the TUM Data Innovation Lab you work in your Master's program in small, interdisciplinary teams on real data-driven projects from science or industry. In the end you will be able to process, analyze and visualize data, implement numerical solutions, and present your results both technically and in an understandable way.10 ECTSno date this semesterMA8113TurbomachineryFlexibilization in Engineering SciencesYou learn the fundamental theory, application and calculation of turbomachinery. In the end you will be able to classify the main types of turbomachinery in function and application and describe and calculate energy conversion processes mathematically.5 ECTSno date this semesterED110101Turbulente StrömungenFluid-/AerodynamicsIn this module you will learn the physical fundamentals and typical phenomena of turbulent flows as well as methods for their statistical description. You will learn how to formulate real flow problems with the basic equations, when turbulence modeling is necessary, and how to select appropriate models (including LES) to investigate flows numerically in an efficient and sufficiently accurate way.5 ECTSno date this semesterMW0595VerbrennungschemieFlexibilization in Engineering SciencesThe module conveys the chemical fundamentals of combustion and pyrolysis with a view to alternative and conventional fuels. You will learn how emissions (e.g. NOx, soot) originate and how to create, analyze and reduce reaction mechanisms, especially with tools such as RMG and CANTERA.5 ECTSno date this semesterED110097Vernetzte RegelungssystemeDomain Specific ModulesYou learn fundamentals and methods of networked control systems. In the module you cover model building, analysis and design of distributed control under communication constraints and apply concepts such as consensus, synchronization, stabilization and optimal control. In the end you will be able to model networked dynamic systems, analyze their behavior and design distributed controllers.5 ECTSno date this semesterEI7391Weiterführende Themen der Finite Elemente MethodeFlexibilization in Engineering SciencesYou study advanced formulations of the finite element method for bending-stiff structures, shear-flexible plates, and related phenomena such as locking. In the end you will be able to analyze specific element types, assess their numerical weaknesses, and deliberately develop and program complex elements.3 ECTSno date this semesterBV010010
94 more modules match, but they are taught in German. Show themAdvanced Seminar Finance & Accounting: Herausforderungen in der LuftfahrtindustrieFlexibilization in Engineering SciencesDu beschäftigst dich mit betriebswirtschaftlicher Steuerung, Wettbewerbslandschaft und strategischen Fragestellungen der Luftfahrtindustrie. Du lernst Werkzeuge, Konzepte und Arbeitsmethoden kennen, um Geschäftsmodelle, Digitalisierung und Corporate Responsibility in Luftfahrtunternehmen zu beurteilen und anzuwenden. Am Ende kannst du ein konkretes Problem in der Branche analysieren, Lösungen entwickeln und deine Ergebnisse wissenschaftlich aufbereiten und präsentieren.6 ECTSno date this semesterWIB04004AeroakustikFluid-/AerodynamicsDu lernst die physikalischen Grundlagen der Aeroakustik: Schallentstehung durch Strömungen, Eigenschaften und quantitative Beschreibung von Schall sowie Ausbreitung und Strahlung in verschiedenen Geometrien. Am Ende kannst du Strömungslärm einordnen, geeignete Prognosemethoden auswählen und Maßnahmen zur Reduzierung oder Eindämmung von Strömungslärm entwerfen.5 ECTSruns this semesterMW1692Aerodynamik des Flugzeugs 2Fluid-/AerodynamicsDu vertiefst die Aerodynamik von Flugzeugen jenseits der Profiltheorie und lernst, wie man endliche Tragflächen, Leitwerke und deren Interaktion sowie transsonische und Überschallphänomene aerodynamisch analysiert. Am Ende kannst du potentialtheoretische Näherungsverfahren anwenden, den Einfluss der Flügelgeometrie auf aerodynamische Derivate bestimmen und aerodynamische Größen für Unterschall-, Transsonic- und Überschallströmungen berechnen.5 ECTSno date this semesterMW0877Anerkanntes MastermodulFlexibilization in Engineering Sciences5 ECTSno date this semesterLRG9900Anerkanntes MastermodulFlexibilization in Engineering Sciences5 ECTSno date this semesterLRG9901Anerkanntes MastermodulFlexibilization in Engineering Sciences5 ECTSno date this semesterLRG9902Angewandte StatistikFlexibilization in Engineering SciencesDas Modul vermittelt Methoden zur Analyse mehrfaktorieller Versuchspläne und zur Aufbereitung multivariater Datensätze. Am Ende kannst du mehrfaktorielle ANOVAs (mit und ohne Messwiederholung), multiple Regressionen und explorative Faktorenanalysen anwenden, Ergebnisse interpretieren und die Unterschiede zur bayesianischen Inferenz nachvollziehen. Die Auswertung wird anhand von R und RStudio demonstriert.5 ECTSruns this semesterMW2403Angewandte Tensoralgebra für IngenieureFlexibilization in Engineering SciencesDu lernst die Grundlagen und Rechenregeln der Tensoralgebra mit Schwerpunkt auf Anwendungen in den Ingenieurwissenschaften. Das Modul behandelt Vektorräume, Tensoren 2. und höherer Stufe, Transformationseigenschaften, spezielle Operationen und Zerlegungen sowie skalarinvariante Eigenschaften und Eigenwertprobleme. Am Ende kannst du tensorielle Gleichungen analysieren, vereinfachen und in skalare beziehungsweise programmierbare Algorithmen überführen.5 ECTSruns this semesterMW2318Angewandte Tensoranalysis für IngenieureFlexibilization in Engineering SciencesDu lernst die Grundlagen der riemannschen Mannigfaltigkeiten und der Tensoranalysis mit Fokus auf Anwendungen im Ingenieurwesen. Am Ende kannst du kovariante Ableitungen, Christoffelsymbole, Riemannsche Krümmungstensoren und zugehörige Differentialoperatoren anwenden sowie zeitliche Ableitungen und Integralsätze in gekrümmten Koordinatensystemen handhaben und in ingenieurmäßigen Problemen einsetzen.5 ECTSno date this semesterMW2354Anlagen und Werkzeuge in der UmformtechnikFlexibilization in Engineering SciencesDu lernst Anlagen, Maschinen und Werkzeuge der Umformtechnik kennen — von Walzwerken über Pressen und Servopressen bis zu Sondermaschinen. Am Ende kannst Du Wirkprinzipien, Bauformen und Einsatzzwecke unterscheiden, Werkzeuge und deren Aufbau erklären sowie Mechanisierungsansätze, Sensorik/Aktorik und den Einsatz digitaler Zwillinge in Umformprozessen beurteilen; zudem setzt Du wirtschaftliche Kennzahlen im Kontext eines Presswerks ein.5 ECTSruns this semesterED160040Antriebssystemtechnik für FahrzeugeFlexibilization in Engineering SciencesDas Modul vermittelt Grundlagen und Praxiswissen zu verbrennungsmotorischen und elektrischen Fahrzeugantrieben mit Schwerpunkt auf Getrieben und Antriebssträngen. Du lernst Anforderungen, Kernaufgaben, typische Baugruppen und Komponenten kennen und kannst am Ende verschiedene Antriebskonzepte, deren Wirkungsgrad, Schwingungsverhalten und Lebensdauer beurteilen.5 ECTSruns this semesterMW0010Auslegung thermischer ApparateFlexibilization in Engineering SciencesIn diesem Modul lernst Du die Grundlagen der Auslegung wichtiger Apparate der thermischen Verfahrenstechnik. Du verstehst Einphasen- und Mehrphasenströmungen und kannst die gewonnenen Prinzipien auf die Dimensionierung von Kolonnen, Wärmeübertragern und Verdampfern anwenden.5 ECTSno date this semesterMW1147Automatisierungstechnik in der MedizinFlexibilization in Engineering SciencesDu lernst Grundlagen und Anwendungen von Navigations- und Robotersystemen in der Medizin kennen. Das Modul behandelt Sensorik, Positions- und Orientierungsmessung, Robotersysteme für Chirurgie, minimal-invasive Verfahren sowie medizinische Bildverarbeitung. Am Ende kannst du einschätzen, wo medizintechnische Systeme chirurgische Arbeit sinnvoll unterstützen und grundlegende Programmieralgorithmen problemorientiert anwenden.5 ECTSno date this semesterMW0688AV DynamicsFlexibilization in Engineering SciencesIm 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 semesterED150046BatteriesystemtechnikFlexibilization in Engineering SciencesDu 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 semesterEI7310Berufsbildungs- und ArbeitsrechtFlexibilization in Engineering SciencesDu lernst die Grundlagen des Arbeitsrechts und die speziellen Regelungen des Berufsbildungsrechts. Am Ende kannst du arbeitsrechtliche Grundprinzipien und die Rechtsstellung von Ausbildungsverhältnissen verstehen und auf einfache Fälle anwenden.5 ECTSno date this semesterMW2236Betrieb und Auslegung chemischer ReaktorenFlexibilization in Engineering SciencesDu lernst, wie chemische Reaktoren betrieben und ausgelegt werden, insbesondere unter Berücksichtigung von Kopplungen zwischen Reaktion und Stofftransport. Anhand von Festbettreaktoren sowie Beispielen zu Mehrphasen-, Wirbelschicht- und Mikroreaktoren übst du, Betriebsweise und Auslegungsentscheidungen für industrielle Fragestellungen zu treffen.4 ECTSno date this semesterCH0215BewegungstechnikFlexibilization in Engineering SciencesDu lernst Grundlagen des Bewegungsdesigns und der Getriebesystematik sowie Methoden zur grafischen und numerischen Analyse kinematischer Größen. Am Ende kannst du Mechanismen kinematisch erfassen, grafisch darstellen und Geschwindigkeits-, Beschleunigungs- und Krümmungsverhältnisse analysieren sowie einfache Antriebs- und Koppelgetriebe konstruieren.5 ECTSno date this semesterMW0052Biomaterialcharakterisierung für IngenieureFlexibilization in Engineering SciencesDu lernst materialwissenschaftliche Methoden zur Charakterisierung von Biomaterialien kennen. Das Modul behandelt bildgebende Verfahren (Licht- und Elektronenmikroskopie, Nahfeld- und Rasterkraftmikroskopie), maschinelles Lernen zur Oberflächenanalyse, makro- und mikroskopische Messungen viskoelastischer Eigenschaften sowie Mikrostrukturierungstechniken und deren Einsatz z. B. in Mikrofluidik / Lab-on-a-Chip. Am Ende kannst du die physikalischen Prinzipien dieser Techniken erklären und ihre Anwendbarkeit für Biomaterialien bewerten.5 ECTSruns this semesterMW1948Biomechanik - Grundlagen und ModellbildungFlexibilization in Engineering SciencesDu 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 semesterMW1817BiophysikFlexibilization in Engineering SciencesDu lernst grundlegende Konzepte der theoretischen und experimentellen Biophysik. Das Modul vermittelt Bausteine lebender Systeme, Enzymkinetik, Struktur- und Musterbildung, Neurobiophysik, Bioenergetik, Nichtgleichgewichts-Thermodynamik, molekulare Wechselwirkungen sowie Simulations- und Modellierungsmethoden. Am Ende kannst Du diese Prozesse quantitativ beschreiben und physikalisch ableiten.10 ECTSruns this semesterPH0020BioprozesseFlexibilization in Engineering SciencesDu erhältst einen Überblick über die technische Nutzung biologischer Stoffumwandlungen an konkreten Prozessbeispielen. Schwerpunkt sind industrielle biologische Verfahren zur Gewinnung von Wertstoffen, einschließlich Herstellung von Grund- und Feinchemikalien sowie Proteinproduktion mit Mikroorganismen und Gewebezellen. Am Ende kannst du die Entwicklung und industrielle Anwendung biotechnologischer Produktionsprozesse verstehen und bewerten.5 ECTSno date this semesterMW0018BioreaktorenFlexibilization in Engineering SciencesDu lernst, biologische Stoffumwandlungen (Wachstum, Substrataufnahme, Produktbildung von Mikroorganismen und Zellen) in technischen Bioreaktoren ingenieurmäßig zu beschreiben und zu analysieren. Am Ende kannst du kinetische Modelle anwenden, Prozessverläufe beurteilen und das Verhalten wichtiger industrieller Bioreaktoren verstehen.5 ECTSruns this semesterMW0019ControllingFlexibilization in Engineering SciencesDu lernst die Grundlagen der koordinationsorientierten Instrumente des Controllings kennen. Am Ende kannst du zentrale Aufgaben, Systeme und Instrumente des Controllings beschreiben, ihre Anwendung auf praktische Probleme analysieren und strukturierte Lösungsvorschläge entwickeln.6 ECTSruns this semesterWI001083Einsatz und Realisierung von DatenbanksystemenFlexibilization in Engineering SciencesDu 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 semesterIN2031Energetische Nutzung von Biomasse und Reststoffen mit SeminarFlexibilization in Engineering SciencesIn diesem Modul lernst Du Konzepte und Rahmenbedingungen zur energetischen Nutzung von Biomasse und Reststoffen kennen. Du analysierst klassische und innovative Verfahren (z. B. Vergärung, Pyrolyse, Vergasung) sowie deren Einsatz zur Bereitstellung von Wärme, Strom und Treibstoffen und kannst die technische, wirtschaftliche und rechtliche Einsetzbarkeit bewerten.5 ECTSruns this semesterMW2244EpidemiologieFlexibilization in Engineering SciencesIn dem Modul lernst Du die Grundlagen der Epidemiologie kennen: relevante Begriffe, Kennzahlen und Studientypen sowie Prinzipien zur Untersuchung von Zusammenhängen zwischen Expositionen und gesundheitlichen Outcomes. Am Ende bist Du in der Lage, epidemiologische Maßzahlen zu berechnen und zu interpretieren, Studiendesign-Unterschiede zu erklären sowie Bias, Confounding und Effektmodifikation zu erkennen.3 ECTSruns this semesterME312Experimentalphysik 3Flexibilization in Engineering SciencesIn diesem Modul behandelst Du Optik von elektromagnetischen Wellen über geometrische Optik bis zu Quantenphänomenen des Lichts. Am Ende kannst Du optische Geräte und Abbildungssysteme analysieren, Beugungs- und Interferenzphänomene erklären und den Übergang zur Quantenphysik beschreiben und zur Lösung passender Probleme anwenden.8 ECTSruns this semesterPH0003Fahrzeugkonzepte: Entwicklung und SimulationFlexibilization in Engineering SciencesDu lernst den Automobilentwicklungsprozess von der Planung bis zur Produktion kennen und übst, Fahrzeugkonzepte systematisch zu bewerten. Am Ende kannst du Prozessphasen, Meilensteine und gängige Simulationsmethoden erklären sowie Handlungsempfehlungen für frühe Entwicklungsphasen ableiten.5 ECTSruns this semesterMW1586Fertigungsverfahren für Composite-BauteileDomain Specific ModulesDu lernst Fertigungsverfahren für Bauteile aus Faserverbundwerkstoffen (Composites) kennen. Am Ende kannst du Fertigungskonzepte erstellen und bewerten sowie geeignete Verfahren unter Berücksichtigung von Randbedingungen wie Stückzahl, Geometrie, Toleranzen, Material und Kosten auswählen und Bauteilgestaltung prozessgerecht anpassen.5 ECTSno date this semesterMW1392Finite ElementeStructureDu 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 semesterMW0612Finite Elemente in der FluidmechanikFlexibilization in Engineering SciencesIn diesem Modul lernst Du, Finite-Elemente-Methoden für stationäre und zeitabhängige Konvektions‑Diffusions‑Probleme sowie für inkompressible Strömungen zu entwickeln und anzuwenden. Am Ende kannst Du die grundlegenden numerischen Herausforderungen solcher fluidmechanischen Probleme erkennen und geeignete FE‑Strategien zur Lösung einsetzen.3 ECTSno date this semesterMW2452Finite Elemente in der WerkstoffmechanikFlexibilization in Engineering SciencesDu lernst die Anwendung der Finite‑Elemente‑Methode für physikalisch nichtlineare Probleme der Werkstoffmechanik. Nach dem Modul kannst du Materialnichtlinearitäten (z. B. plastisches Fließen, Verfestigung, Viskoplastizität, Kriechen, Kristallplastizität) in FEM‑Simulationen verstehen und bewerten sowie Standardalgorithmen anwenden und für spezielle Materialverhalten eigene FE‑Algorithmen entwickeln.5 ECTSno date this semesterMW1978Fluidmechanik 2Domain Specific ModulesDu vertiefst die Mechanik von Gasen und Flüssigkeiten mit Schwerpunkt auf Wirbelströmungen, Potentialströmungen und Grenzschichten. Am Ende kannst du diese Strömungsarten beschreiben, mit Elementarwirbeln und Elementarpotentialen modellieren sowie Grenzschichtprobleme (theoretisch und näherungsweise) analysieren und abgelöste Strömungen sowie laminar-turbulente Transition phänomenologisch beschreiben.5 ECTSno date this semesterMW1910Funktionale SicherheitFlexibilization in Engineering SciencesDas Modul behandelt die funktionale Sicherheit in Fahrzeugen anhand der Norm ISO 26262. Du lernst, Gefahren und Risiken für elektrische/elektronische Systeme zu analysieren sowie Methoden der modellbasierten Funktionsentwicklung und -absicherung anzuwenden. Außerdem kannst du Entwicklungswerkzeuge klassifizieren und hinsichtlich ihrer Qualifizierung beurteilen.4 ECTSno date this semesterIN2247FügetechnikFlexibilization in Engineering SciencesIn diesem Modul lernst Du die grundlegenden Prinzipien und Verfahren der Fügetechnik kennen. Du kannst nach Abschluss die wesentlichen Fügeverfahren (z. B. Schrauben, Nieten, Kleben, Löten, Schweißen, Umformen) unterscheiden und für praktische Anwendungsbeispiele geeignete Fügetechnologien auswählen und begründen.5 ECTSno date this semesterMW0049Gießereitechnik und Rapid PrototypingFlexibilization in Engineering SciencesDu lernst die Prozesskette vom CAD-Modell bis zum fertigen Gussteil kennen. Das Modul vermittelt Werkstoffkunde, Gießverfahren, Form- und Kernherstellung, Berechnung von Anschnitt- und Speisersystemen, Qualitätssicherung sowie Grundlagen des Rapid Prototyping, sodass du Gießverfahren auswählen, bewerten und gussgerechte Konstruktionen auslegen kannst.5 ECTSno date this semesterMW0053Grundlagen der EnergiewirtschaftFlexibilization in Engineering SciencesDu erhältst grundlegendes Wissen zur Energieversorgung, zu Energieträgern sowie zu konventionellen und erneuerbaren Erzeugungstechniken. Am Ende kannst du Kraftwerksbetrieb und Energiesysteme technisch, energetisch und ökonomisch beschreiben, einfache Systeme auslegen und deren Energieertrag berechnen.5 ECTSno date this semesterEI0709Grundlagen Elektrischer EnergiespeicherFlexibilization in Engineering SciencesDu erhältst eine Einführung in Grundlagen und Funktionsweisen elektrischer Energiespeicher. Du lernst verschiedene Speichertechnologien (mechanisch, elektrisch, chemisch) zu verstehen, zu berechnen und systematisch zu bewerten. Am Ende kannst du Speichersysteme inklusive notwendiger Wandlersysteme mithilfe eines abstrakten, technologieunabhängigen Speichermodells beschreiben und analysieren.5 ECTSruns this semesterEI0611Grundlagen elektrischer MaschinenFlexibilization in Engineering SciencesIn diesem Modul lernst Du Aufbau, Wirkungsweise und quasi-stationäres Betriebsverhalten wichtiger elektrischer Maschinen kennen. Du verstehst die Erzeugung von Kräften und Drehmomenten in elektromechanischen Wandlern und kannst die zugehörigen Betriebskennlinien anwenden.5 ECTSruns this semesterEI0620Grundlagen Human Factors / ErgonomicsFlexibilization in Engineering SciencesDu erhältst einen Überblick über Grundlagen der Arbeitswissenschaft und zentrale Themen der Ergonomie. Du lernst Modelle von Wahrnehmung, Informationsverarbeitung und Motorik kennen, übst Kommunikations- und Interaktionsaspekte in Mensch‑Maschine‑Systemen zu analysieren und lernst Methoden zur Messung und Evaluation ergonomischer Qualität und Leistung anzuwenden.5 ECTSruns this semesterMW2129Grundlagen: DatenbankenFlexibilization in Engineering SciencesDu lernst die Grundlagen relationaler Datenbanksysteme: von SQL und Datenintegrität über konzeptionellen und physischen Entwurf bis hin zu Anfragebearbeitung, Transaktionsverwaltung und Grundlagen von Recovery, Backup und Mehrbenutzersynchronisation. Am Ende kannst du Datenbanken entwerfen, komplexe SQL-Anfragen formulieren und die Betriebssicherheit (z. B. Autorisierung, Recovery) beurteilen.6 ECTSruns this semesterIN0008Industrielle Softwareentwicklung mechatronischer Systeme und Implementierung in C++Flexibilization in Engineering SciencesDu erwirbst vertiefte Kenntnisse der Softwareentwicklung für mechatronische und maschinenbauliche Systeme. Du lernst methodische Vorgehensweisen, Modellierungstechniken (z. B. UML), Architektur- und Designmuster sowie Implementierung in C++ und Grundlagen zu Datenbanksystemen. Am Ende kannst du Anforderungen analysieren, Modelle erstellen, implementieren und einfache Qualitätssicherungsmaßnahmen anwenden.5 ECTSno date this semesterMW1918Informationssysteme und EntscheidungsunterstützungFlexibilization in Engineering SciencesDu lernst, wie Informationssysteme, Prozessmodellierung und Simulation eingesetzt werden, um Entscheidungsunterstützung und Qualitätsmanagement im Gesundheitswesen zu realisieren. Am Ende kannst du Grundlagen der medizinischen Bild- und Biosignalverarbeitung sowie klinischer Studien und eHealth-Anwendungen einordnen und ihre Rolle für evidenzbasierte Medizin und klinische Abläufe beschreiben.3 ECTSruns this semesterME522Intelligente Systeme und Machine Learning für ProduktionsprozesseFlexibilization in Engineering SciencesDu lernst, wie verteilte intelligente Systeme für Produktionsprozesse modelliert, analysiert und entwickelt werden. Das Modul behandelt Systemmodellierung, formale Darstellung von Domänenwissen, Digitale Zwillinge sowie Datenvorverarbeitung und -analyse mit Machine Learning. Am Ende kannst Du geeignete Entwurfskonzepte bewerten und auf reale automatisierungstechnische Anlagen anwenden.5 ECTSno date this semesterMW1339Intelligente Verfahren in der ElektromobilitätFlexibilization in Engineering SciencesDu lernst intelligente Verfahren für Elektrofahrzeuge und deren Komponenten des elektrischen Antriebsstrangs anzuwenden. Schwerpunkt sind modellbasierte und datengetriebene Methoden zur Zustands- und Parameterschätzung, Diagnose sowie thermische Modellbildung von Batteriezellen. Am Ende kannst du Methoden auswählen, einsetzen und die Ergebnisse analysieren und bewerten.5 ECTSno date this semesterEI71107Kinematische Auslegung von Gelenkstrukturen mit Matlab und CADFlexibilization in Engineering SciencesDu lernst, wie Gelenkstrukturen geplant, analysiert und für konkrete Bewegungsaufgaben ausgelegt werden. Dazu gehören die mathematischen Grundlagen der ebenen, sphärischen und räumlichen Kinematik sowie praktische Berechnungen und Entwurfsarbeiten mit MATLAB und CAD.5 ECTSruns this semesterMW2224Klimatisierung, Kältetechnik und WärmepumpenFlexibilization in Engineering SciencesIm Modul lernst du Grundlagen und Anwendungen der Klima- und Kältetechnik mit besonderem Fokus auf Wärmepumpen kennen. Du erwirbst das Wissen, um Raumlufttechnische Anlagen (RLT), kältetechnische Komponenten und Wärmepumpenanlagen für konkrete Anwendungsfälle zu entwerfen und energetisch zu bewerten.5 ECTSruns this semesterED140009Kolbenmotoren 1Propulsion SystemsIn diesem Modul lernst Du, wie Kräfte, Momente und resultierende Bewegungen an Bauteilen von Verbrennungsmotoren entstehen und welche Auswirkungen sie auf Betriebssicherheit und Wirtschaftlichkeit haben. Du kannst nach dem Kurs typische Motorkomponenten auslegen und bewerten sowie Maßnahmen gegen schädliche Schwingungen und übermäßige Reibung ableiten.5 ECTSruns this semesterMW0066Kolbenmotoren 2Domain Specific ModulesIn diesem Modul vertiefst du thermodynamische und verbrennungstechnische Grundlagen von Kolbenmotoren sowie Methoden zur Modellierung (0D/1D/3D) und Simulation. Du lernst Brennverfahren, Aufladesysteme, Prüfstandsaufbau und statistische Versuchsplanung kennen und kannst Motoren anhand charakteristischer Kennzahlen bewerten und Optimierungsstrategien für nachhaltige Antriebe ableiten.5 ECTSno date this semesterED150021Kostenmanagement in der ProduktentwicklungFlexibilization in Engineering SciencesDu lernst Methoden und Werkzeuge kennen, mit denen Kosten bereits in frühen Entwicklungsphasen systematisch geplant, geschätzt und gesenkt werden können. Am Ende kannst du Kostenstrukturen und Einflussgrößen analysieren, Kostenschätzungen durchführen sowie konstruktive und organisatorische Maßnahmen zum Kostensparen bewerten und begründen.5 ECTSruns this semesterMW2201LasertechnikFlexibilization in Engineering SciencesIm 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 semesterMW1042MarkenschutzFlexibilization in Engineering SciencesDu erhältst einen kompakten Überblick über das Recht des Markenschutzes und die Praxis des Markenmanagements. Am Ende kannst du Markenarten, Schutzvoraussetzungen und Rechtsfolgen verstehen, markenrechtliche Probleme in konkreten Fällen analysieren und Grundlagen des Markenmanagements anwenden.3 ECTSruns this semesterMGT001322MaschinensystemtechnikFlexibilization in Engineering SciencesDu lernst die Systembetrachtung und Auslegung komplexer Maschinensysteme. Das Modul vermittelt Grundlagen zu Bauelementen, elektrischen Antrieben, Automatisierung, hydraulischen Systemen und Stahltragwerken und befähigt dich, diese Methoden auf praktische Geräte und Anlagen anzuwenden.5 ECTSruns this semesterMW0993Materialflusstechnik und Robotik in der IntralogistikFlexibilization in Engineering SciencesDas Modul vermittelt Grundlagen und Technik der innerbetrieblichen Förder- und Materialflusstechnik sowie Einsatzmöglichkeiten von Robotik in der Intralogistik. Du lernst typische Geräte, Technologien und Berechnungsmethoden kennen und kannst danach Materialflusssysteme bewerten sowie Fördermittel auslegen und Einsatzmöglichkeiten von Robotik analysieren.5 ECTSruns this semesterMW0068Mechatronische GerätetechnikFlexibilization in Engineering SciencesIn diesem Modul lernst Du Grundlagen und Bausteine mechatronischer Geräte kennen: Sensorik, Aktorik, Steuerung, Mechanik, Elektronik und relevante Normen. Am Ende kannst Du Einsatzgebiete abschätzen, geeignete Komponenten auswählen und einfache Modellabschätzungen für erste konstruktive Entwürfe durchführen.5 ECTSruns this semesterMW0038Menschliche ZuverlässigkeitDomain Specific ModulesYou learn how human behavior and errors affect the reliability of technical systems and how such errors can be analyzed, evaluated and avoided. In the end you will be able to classify human misbehavior, apply error models and assess measures to increase reliability in the overall system of Human–Technology–Organization.5 ECTSno date this semesterMW2131Messsystem- und Sensortechnik im MaschinenwesenDomain Specific ModulesDu lernst Messsysteme und Sensoren kennen, ihre physikalischen Wirkprinzipien und die Auswertung von Messwerten. Am Ende kannst Du unterschiedliche Messverfahren analysieren, Messverstärker und Brückenschaltungen bewerten sowie Messunsicherheiten und Einheiten fachgerecht anwenden.5 ECTSno date this semesterEI53551Meteorologie, Klimatologie und KlimawandelDomain Specific ModulesIn diesem Modul lernst Du die Grundlagen der Meteorologie, Klimatologie und des Klimawandels. Du verstehst meteorologische Grundbegriffe, Berechnung meteorologischer Parameter, großräumige und regionale Klimaprozesse sowie Wechselwirkungen zwischen Atmosphäre, Landnutzung und Städten und kannst Auswirkungen von Klimaveränderungen abschätzen.5 ECTSruns this semesterWZ0008Methoden der UnternehmensführungFlexibilization in Engineering SciencesIn diesem Modul lernst Du methodische Grundlagen der Unternehmensführung kennen: von Organisationsgestaltung und Auftragsabwicklung über Rechnungswesen und strategische Planung bis zu Führung, Arbeitsrecht/Entgeltgestaltung und Geschäftsmodellen in der Digitalisierung. Am Ende kannst Du passende Methoden auswählen, strategisch und organisatorisch planen sowie Geschäftsmodelle unter Digitalisierungsaspekten bewerten und neu denken.5 ECTSruns this semesterMW0004Mikroskopische BiomechanikFlexibilization in Engineering SciencesDu 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/AktorenFlexibilization in Engineering SciencesDu 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 semesterMW0080Modellierung verfahrenstechnischer ProzesseFlexibilization in Engineering SciencesDu lernst die Grundlagen der Programmierung in MATLAB und die objektorientierte Modellierung verfahrenstechnischer Prozesse. Am Ende kannst du MATLAB-Code erstellen, Fehler analysieren, eigene Klassen entwerfen und verfahrenstechnische Modelle (z. B. Phasengleichgewicht mehrkomponentiger Gemische) implementieren und lösen.5 ECTSruns this semesterMW2390Modellierung verteilter SystemeFlexibilization in Engineering SciencesDu lernst, wie man verteilte, nebenläufige und kooperierende Softwaresysteme modelliert, beschreibt und systematisch analysiert. Am Ende kennst du zentrale Modelle und Techniken zur Spezifikation, Verfeinerung und Verifikation solcher Systeme und kannst geeignete Modellierungsansätze gezielt einsetzen.4 ECTSno date this semesterIN2080Moderne Methoden der Regelungstechnik 1Domain Specific ModulesDu 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 semesterMW0538Moderne Methoden der Regelungstechnik 2Domain Specific ModulesDu lernst Methoden zur optimalen Steuerung und Regelung dynamischer Systeme sowie Verfahren für nichtlineare Regelungen. Ein Schwerpunkt ist die Herleitung und Anwendung optimaler Regelgesetze (z. B. zeit- oder verbrauchsoptimale Lösungen, LQ-Regler, Pontryagin-Minimumprinzip, dynamische Programmierung). Daneben werden wichtige Konzepte und Entwurfsverfahren für nichtlineare Systeme behandelt (z. B. Ein-/Ausgangslinearisierung, Flachheit, Zustandsbeobachtung, Ljapunow-Methoden). Am Ende kannst Du optimale Regelungen entwerfen, Stabilität nichtlinearer Systeme beurteilen und Beobachter für nichtlineare Systeme konstruieren.5 ECTSruns this semesterMW0539Montage, Handhabung und IndustrieroboterFlexibilization in Engineering SciencesIn dem Modul lernst du Grundlagen und praktische Anwendungen der Montage, der Handhabungstechnik und der Industrierobotik. Am Ende kannst du Montage- und Handhabungsprozesse sowie einfache Robotersysteme planen, bewerten und erste Roboterapplikationen entwerfen.5 ECTSruns this semesterMW0084Nichtlineare Finite-Element-MethodenFlexibilization in Engineering SciencesIn 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 KontinuumsmechanikFlexibilization in Engineering SciencesDu 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 semesterMW0850Optik für IngenieureFlexibilization in Engineering SciencesDas Modul vermittelt Grundlagen der geometrischen und der Wellenoptik sowie Einführung in die Fourieroptik. Du lernst, linsenbasierte Abbildungssysteme zu berechnen, Beugungs- und Interferenzphänomene zu verstehen und optische Bauteile wie Polarisatoren, Modulatoren und einfache optische Systeme einzuordnen.5 ECTSno date this semesterEI0639Optomechatronische MesssystemeFlexibilization in Engineering SciencesDu lernst Prinzipien der Optomechatronik und wie optische Verfahren mechanische und bio-chemische Größen messen. Das Modul behandelt Strahlen- und Wellenoptik, Interferenz- und Beugungsphänomene, Speckle- und holografische Messverfahren sowie Anwendungen in Qualitätssicherung, Materialforschung, Medizintechnik und Mechatronik.6 ECTSruns this semesterEI0472Planung technischer LogistiksystemeFlexibilization in Engineering SciencesDu lernst, wie man Materialflüsse und technische Logistiksysteme plant, bewertet und auslegt. Am Ende kannst du verschiedene Logistiksysteme entwerfen, Planungsvarianten technisch und wirtschaftlich beurteilen und gängige Planungsmethoden praktisch anwenden.5 ECTSno date this semesterMW0097Planung thermischer ProzesseFlexibilization in Engineering SciencesIn diesem Modul lernst du Methoden der konzeptuellen Prozesssynthese zur Entwicklung und Verbesserung verfahrenstechnischer Prozesse kennen. Du kannst danach Verfahren zur Trennung binärer, ternärer und azeotroper Gemische sowie Hybrid- und reaktive Destillationsprozesse entwerfen, energetisch bewerten und Regelungs- und Wärmeintegrationsmaßnahmen planen.5 ECTSruns this semesterMW1977ProduktergonomieFlexibilization in Engineering SciencesDu 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 semesterMW0101ProduktionsergonomieFlexibilization in Engineering SciencesIn diesem Modul lernst du, wie Arbeitsbedingungen in der Produktion aus ergonomischer Sicht beurteilt und gestaltet werden, um Gesundheitsschäden bei Beschäftigten zu vermeiden. Du lernst Grundlagen zur menschlichen Leistung, Anatomie, Anthropometrie, Biomechanik und Kognition sowie praxisrelevante Mess- und Bewertungsverfahren für Klima, Lärm, Beleuchtung und Arbeitsplatzgestaltung; abschließend erhältst du Einblicke in Mensch‑Roboter‑Kooperationen.5 ECTSruns this semesterMW0102Projektierung industrieller TieftemperaturanlagenFlexibilization in Engineering SciencesDu lernst die Grundlagen und Technologien industrieller Tieftemperatur- und Kryoanlagen kennen (z. B. Verflüssigung von Wasserstoff, Helium, Erdgas, Luftzerlegung). In Kleingruppen simulierst du kryogene Prozesse mit UniSim® Design, passt Anlagen an Vorgaben an und identifizierst Optimierungs- und Einsparpotenziale hinsichtlich Effizienz und Kosten.5 ECTSno date this semesterED180008Prozess- und AnlagentechnikFlexibilization in Engineering SciencesDu lernst die Grundlagen der Prozess- und Anlagentechnik sowie ingenieurmäßige Methoden zur Auslegung und zum Bau verfahrenstechnischer Produktionsanlagen. Schwerpunkte sind Prozessentwicklung, Methanolherstellung aus fossilen und regenerativen Rohstoffen, Wärmeintegration, hydraulische und mechanische Auslegung sowie Wirtschaftlichkeitsbewertung. Am Ende kannst du einfache verfahrenstechnische Anlagen analysieren, ökologisch und ökonomisch bewerten und Auslegungsmethoden für energieeffiziente Prozesse anwenden.5 ECTSno date this semesterMW0437Prozesssimulation und Materialmodellierung von CompositesDomain Specific ModulesDu lernst, wie die Materialmodellierung von Faserverbundwerkstoffen und die Simulation ihrer Fertigungsprozesse praktisch angewandt werden. Anhand eines Demonstrator-Bauteils werden Prozesssimulationen (z. B. Drapieren, Preforming, Füllung, Aushärten, Verzug) und Strukturuntersuchungen verknüpft, so dass du am Ende Simulationsergebnisse für Forschungs- und Praxisanwendungen beurteilen und einsetzen kannst.5 ECTSno date this semesterMW1412QualitätsmanagementFlexibilization in Engineering SciencesDas Modul vermittelt Grundlagen und Methoden des Qualitätsmanagements über den gesamten Produktlebenszyklus hinweg und behandelt den Aufbau unternehmensweiter QM-Systeme sowie Aspekte von Umwelt- und Energiemanagement. Am Ende kannst du Qualitätsbegriffe erklären, QM-Methoden in Planung, Entwicklung und Produktion anwenden und den Aufbau sowie die Zertifizierung von QM- Systemen darlegen und diskutieren.5 ECTSruns this semesterMW0104Reaktionsthermodynamische Grundlagen für EnergiesystemeFlexibilization in Engineering SciencesDu lernst, thermodynamische Grundlagen auf reale Stoffe und Reaktionssysteme anzuwenden. Das Modul behandelt Zustandsgrößen, reale Gas- und Mischungsverhalten, Reaktions- und Phasengleichgewichte sowie Exergie und chemisches Potential, so dass Du chemische Gleichgewichte aus thermodynamischen Daten berechnen und den Zusammenhang zwischen Reaktion und thermodynamischen Größen verstehen kannst.5 ECTSruns this semesterMW1896Regelung elektrischer Antriebe Teil I - Modellierung der AntriebskomponentenDomain Specific ModulesIn diesem Modul lernst du die physikalischen Grundlagen und Modellierungsverfahren für geregelte elektrische Drehfeldantriebe kennen. Du kannst am Ende elektromagnetische Energiewandlung in rotierenden Maschinen erklären, Grundwellen- und Raumzeigermodelle herleiten sowie gängige Regelverfahren und Sensorsysteme für Antriebe anwenden.5 ECTSruns this semesterEI7324Simulation additiver Fertigungsverfahren: Teil 1 - FluidmechanikFlexibilization in Engineering SciencesDu lernst physikbasierte Modellierung und Simulation fluidmechanischer Vorgänge in additiven Fertigungsverfahren, insbesondere bei metallischem Pulverbett-Laserstrahlschmelzen. Am Ende kannst du relevante physikalische Mechanismen, die zugrundeliegenden Modellgleichungen sowie Diskretierungs- und Lösungsansätze verstehen, bewerten und auf konkrete Fragestellungen übertragen.5 ECTSruns this semesterED140002Solar EngineeringFlexibilization in Engineering SciencesDas 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 KraftwerkeFlexibilization in Engineering SciencesDu 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 semesterMW1814Spanende Werkzeugmaschinen 1 - Grundlagen und KomponentenFlexibilization in Engineering SciencesDu lernst die Grundlagen von spanenden Werkzeugmaschinen, ihre Bauteile und ihr Verhalten kennen. Am Ende kannst Du wichtige Komponenten (Gestelle, Führungen, Spindeln, Antriebe, Mess‑ und Steuerungssysteme) erklären sowie dynamische und akustische Eigenschaften beurteilen und entsprechende Berechnungen durchführen.5 ECTSruns this semesterMW0120Sports EngineeringFlexibilization in Engineering SciencesIm Modul Sports Engineering lernst Du Methoden und Messverfahren zur Entwicklung, Optimierung und Evaluation von Sportgeräten, -bekleidung, -schuhen, Informationssystemen und Schutzausrüstung kennen. Du erfährst, wie ingenieurwissenschaftliche, verhaltenswissenschaftliche und psychologische Ansätze kombiniert werden und kannst nach Abschluss Methoden für konkrete Fragestellungen im Freizeit- und Leistungssport auswählen und bewerten.5 ECTSno date this semesterMW2429Strom- und Wärmespeicher im EnergiesektorFlexibilization in Engineering SciencesDu lernst etablierte und neue Technologien zur Strom- und Wärmespeicherung kennen. Am Ende kannst du Speicherbedarf ableiten, verschiedene Speichertechnologien vergleichen sowie geeignete Speicher für konkrete Einsatzfälle auswählen und dimensionieren.5 ECTSruns this semesterMW2392Thermische Verfahrenstechnik 2Flexibilization in Engineering SciencesDu vertiefst die ingenieurwissenschaftlichen Grundlagen thermischer Trennprozesse aufbauend auf Thermische Verfahrenstechnik I. Am Modulende kannst du Absorption/Desorption, Verdampfung, Kristallisation, Trocknung, Extraktion und Adsorption in ihren entscheidenden Prozessparametern auslegen und bewerten sowie die thermodynamischen Auslegungskriterien wichtiger apparativer Einrichtungen verstehen.5 ECTSruns this semesterMW0129VerbrennungDomain Specific ModulesDu lernst die Grundlagen reaktiver Strömungen am Beispiel stationärer Gleichdruck-Verbrennung in Flammen kennen. Am Ende kannst du thermofluiddynamische Zusammenhänge in Flammen und verbrennungstechnischen Systemen beschreiben sowie Verbrennungsanlagen grundlegend entwerfen, skalieren und analysieren.5 ECTSno date this semesterMW0136Wärme- und StoffübertragungDomain Specific ModulesDu 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 semesterMW0006Zahnradgetriebe - Auslegung und SchaltelementeFlexibilization in Engineering SciencesDu lernst die wesentlichen Bestandteile von Getrieben — insbesondere Stirnräder, Wälzlager und Schaltelemente — zu verstehen, zu analysieren und zu bewerten. Am Ende bist du in der Lage, Auslegungsmethoden für Getriebestrukturen anzuwenden, Schaltelemente (z. B. Synchronisierungen, Lamellenkupplungen) zu beurteilen und die Wirkprinzipien von Schmierstoffen und tribologischen Zusammenhängen einzuschätzen.5 ECTSno date this semesterMW2432Zahnradgetriebe - Wälzpaarungen und deren TribologieDomain Specific ModulesDu lernst die Grundlagen von Wälzpaarungen und deren Tribologie sowie deren Anwendung auf Wälzlager und Zahnräder in Zahnradgetrieben. Am Ende kannst du die wesentlichen Einflussgrößen auf Betriebsverhalten, Beanspruchung, Schaden sowie Tragfähigkeit und Wirkungsgrad analysieren und die Kenntnisse bei Gestaltung und Dimensionierung von Wälzpaarungen, Wälzlagern und Zahnrädern anwenden.5 ECTSruns this semesterMW2433Zerstörungsfreie PrüfungFlexibilization in Engineering SciencesDu 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 semesterBV640007Zulassung von MedizingerätenFlexibilization in Engineering SciencesIn diesem Modul lernst Du, wie Medizinprodukte gesetzes- und normenkonform für einen Zielmarkt (z. B. Deutschland, USA) zugelassen werden. Am Ende kannst Du die wesentlichen Schritte zur Erstellung einer vollständigen Produktakte nachvollziehen und ein Medizinprodukt nach deutschem Recht zulassen oder wissen, welche Stellen Du dafür hinzuziehen musst.5 ECTSruns this semesterMW0610