Modules

58 results

Master's Modules58

Advanced Deep Learning for Computer Vision: Visual ComputingIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)The module conveys current deep-learning methods for computer vision. You will learn both theoretical foundations of modern neural architectures and practical methods such as generative models (GANs, diffusion models, Large Reconstruction Models) and modern 3D representations (e.g., Neural Radiance Fields, 3D Gaussian Splatting). In the end you will be able to apply, evaluate, and implement state-of-the-art methods in project work.8 ECTSruns this semesterIN2390Advanced Deep Learning for RoboticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you deepen advanced deep learning methods with a focus on robotic applications and deep reinforcement learning. You learn both theoretical foundations of modern network architectures and probabilistic methods as well as their practical implementation in simulations and projects for robotics tasks.8 ECTSruns this semesterCIT433027Advanced ProgrammingIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterIN1503Asset ManagementIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In 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 semesterWI000231Autonome SystemeIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterLRG6300
53 more in Master's ModulesBildgebende Verfahren, NuklearmedizinIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you will learn the physical principles and modern methods of medical imaging in radiology and nuclear medicine. By the end you will understand how images are technically generated (detectors, acquisition technology, tomography, reconstruction) and which clinical applications the different systems (MRI, CT, PET, SPECT, X-ray, ultrasound) have.5 ECTSruns this semesterME0156Bioproduktaufarbeitung 2Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterMW1146Convex OptimizationIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn the fundamentals and methods of convex optimization: analysis of convex sets and functions, optimality conditions, duality, and algorithms such as Simplex, gradient/Newton methods, and interior-point methods. In the end you will be able to formulate problems as convex optimization tasks, derive optimality and duality conditions, and apply appropriate solution methods.6 ECTSruns this semesterEI74351Data Analytics in ApplicationsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you work on Data-Analytics use cases from problem formulation to implementation. You will learn methodology (CRISP-DM), data preparation, modeling (e.g., classification, clustering, regression), evaluation and deployment, and you will practically apply what you have learned in a real team project with Python.6 ECTSruns this semesterMGT001307Diskrete Wahlmethoden für VerkehrssystemanalyseIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will gain an overview of tools and methods for specifying and estimating discrete choice models for traffic system analysis. In the end you will be able to specify, estimate and interpret various models (e.g., Logit, Probit, Nested Logit, Mixed Logit, Latent Class), as well as design data collection and questionnaires for Revealed- and Stated-Preference studies.6 ECTSruns this semesterBGU70004Einführung in das rechnergestützte WerkstoffdesignIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterED170004Entwurf von VerkehrswegenIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn the kinematic and dynamic properties of road and rail vehicles as well as their interaction with the track. On this basis you apply design principles for infrastructure and you can independently provide proofs and create and evaluate designs for road and rail facilities.6 ECTSruns this semesterBV340009Financial Accounting (MiM)Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn double-entry bookkeeping and the preparation of annual financial statements. You will also gain an overview of important IFRS standards and practice the analysis of annual financial statements to assess the position, performance and stability of companies. In the end, you can record business transactions using double-entry bookkeeping, construct individual and consolidated financial statements according to IFRS, and assess the effects of accounting standards and scope for manipulation.6 ECTSruns this semesterWI001139Fortgeschrittene Konzepte der nichtlinearen RegelungIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You deepen selected, research-oriented topics of nonlinear control theory (system analysis and identification, controller design, challenging system classes as well as optimization/learning in the control context). At the end of the module you will be able to place current publications, critically evaluate them and also produce a scientific overview publication including a presentation.6 ECTSruns this semesterEI71080Fortgeschrittenes Seminar für sichere Cyber-Physische SystemeIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterMW2400Halbleitersynthese und NanoanalytikIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn modern procedures for the production and nanoscale characterization of semiconductor thin films. In the end you can describe the physical foundations and experimental implementations of important deposition and analysis methods and critically interpret experimental results.5 ECTSruns this semesterPH2189Integration of Renewable EnergiesIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn what challenges the integration of renewable energy into existing power systems poses and which technical, systemic, and market solutions exist for them. By the end you will be able to classify properties of fluctuating generation, analyze options to improve integration, and evaluate effects on system services, conventional power plants, and electricity markets.5 ECTSruns this semesterEI70860Intelligent Machine Design LaboratoryIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You develop and build in a team an autonomous, wheel-based robot that should fulfill tasks to assist emergency responders in mass casualty incidents. In the end you will be able to design, integrate, test and demonstrate a mechatronic system in a field competition.6 ECTSruns this semesterCIT431023Interdisziplinäres ArbeitenIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn fundamentals, concepts and current research on interdisciplinarity and reflect on your own disciplinary socialization. You will also test methodological approaches of different disciplines and practice designing and moderating interdisciplinary collaboration in a practical way.5 ECTSruns this semesterMW2467Introduction to Deep LearningIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In 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 semesterIN2346Introduction to Surgical RoboticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn how robotics is applied in surgery: from clinical use cases to technical fundamentals to the development of robot-assisted solutions for medical problems. In the end you will be able to assess deployment potentials, integrate robotics into surgical workflows, and design and present simple prototypes for defined clinical tasks.6 ECTSruns this semesterIN2292KontinuumsmechanikIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn the fundamentals of continuum mechanics: tensor calculus, description of stress and strain states in different coordinate systems, as well as the corresponding conservation and energy balances. In the end you will be able to evaluate mechanical states, apply energy methods, and transfer the results to numerical approximation methods (e.g., finite elements, boundary elements).6 ECTSruns this semesterBV020001KontinuumsmechanikIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)The module conveys the fundamentals of continuum mechanics for fluids and elastic media. You will learn kinematics and balance equations, central principles of hydrodynamics (e.g., viscosity, Bernoulli, Reynolds number, waves) as well as the fundamentals of linear elasticity and propagation of elastic waves. In the end you will be able to calculate relevant field quantities and describe basic flow and deformation phenomena.10 ECTSruns this semesterPH1007NeuroprostheticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will obtain the theoretical foundations of neuroprosthetics and implement them numerically in a accompanying computer exercise. The focus is on electrical stimulation of neurons using the example of cochlear implants; the goal is to develop and simulate a virtual middle ear implant model including the response of the auditory nerve.5 ECTSruns this semesterEI70270RoboticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn how mechanical systems — in particular robotic manipulators — are translated into mathematical models to describe motion and dynamics. On this basis you derive control parameters (for example for PID controllers) to compensate deviations along predefined trajectories and to regulate position or force.6 ECTSruns this semesterIN2067Scientific Computing IIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterIN2005Structural Optimization 2Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn population-based procedures for numerical structural optimization and how to apply them. The emphasis is on genetic and evolutionary strategies, multi-criteria optimization as well as biologically inspired methods such as Particle Swarm and Ant Colony. You will also cover Sensitivity Analysis, Design of Experiments, Response Surface Methods and Robust Design Optimisation with applications from nonlinear structural mechanics (e.g. crash). In the end you will be able to evaluate the procedures, implement them and apply them practically to engineering tasks.3 ECTSruns this semesterBV330001System- und Funktionale SicherheitIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterED130009Techniques for Medical DiagnosticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn technological fundamentals and applications of medical diagnostics with a focus on in vitro. The content covers the structure, analytical principles and clinical classification of diagnostic procedures as well as regulatory framework conditions. In the end you will be able to quantitatively evaluate diagnostic data and biomarkers and assess requirements for new, clinically implementable methods.5 ECTSruns this semesterCIT443028Tissue Engineering and Regenerative Medicine: Grundlagen und AnwendungenIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you will learn the fundamentals and applications of tissue engineering and regenerative medicine. You will understand how materials, cells, biomanufacturing and bioreactors are combined to develop tissues, and you will be able to evaluate strategies for (re)generation of tissues and organs and apply them to clinical questions.5 ECTSruns this semesterED160004VerkehrsmanagementIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In the module you will learn to model traffic flows on highways and in cities and to plan and evaluate traffic control and management measures based on these models. In the end you will be able to apply traffic flow models and control procedures as well as assess the quality and effects of dynamic traffic information.6 ECTSruns this semesterBV560024Visual Data AnalyticsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn the entire visualization pipeline — from data acquisition and preprocessing over interpolation and filtering to presentation. You understand methods of information and scientific visualization for 2D/3D scalar and vector fields as well as terrain rendering and can evaluate and apply suitable techniques.5 ECTSruns this semesterIN2026Adaptive and Learning-based ControlIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn principles and methods of adaptive and learning control, from online parameter estimation and adaptive observers to linear and nonlinear model reference methods. At the end you can design, dimension, and transfer adaptive controllers to applications, as well as apply basic machine learning approaches for system identification.5 ECTSno date this semesterCIT433038Advanced Deep Learning for PhysicsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In 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 semesterIN2298Bio-NanotechnologieIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterMW2431Concepts of C++ ProgrammingIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn the fundamental and modern concepts of the C++ programming language with a focus on runtime efficiency. By the end you will be able to apply, analyze and use concepts such as RAII, smart pointers, templates, classes/ inheritance, STL containers/iterators and build/test concepts in programming tasks.6 ECTSno date this semesterCIT323000Cybathlon Challenge: Mechanism Design & ControlIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this laboratory you develop basic mechatronic modules of a transradial prosthesis in the context of the Cybathlon competition. In the end you will be able to design mechanical components, integrate sensors and actuators, implement control algorithms, and realize a team prototype up to demonstration and documentation.6 ECTSno date this semesterEI78043Cybathlon Challenge: Task Control & User ExperimentsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this lab you develop a lightweight, portable, and intelligent prosthesis for the upper extremities. You work on advanced model-based and AI-supported control approaches, develop novel user task control methods, and conduct training sessions as well as validation tests in the lab and in the field with a human user.6 ECTSno date this semesterEI78041DerivativesIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn how standardized financial derivatives (forwards, futures, swaps, options) work and how to practically apply them. In the end you will be able to assess payoff and profit profiles as well as risk characteristics, value derivatives, develop arbitrage and hedging strategies, analyze and construct swaps.6 ECTSno date this semesterWI000232Economics of Uncertainty and Asymmetric InformationIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn how to analyze economic decisions under uncertainty and asymmetric information. By the end you will be able to apply expected utility-based models, identify market failures due to information asymmetries, and assess measures to solve incentive and information problems (e.g., in insurance markets or in the principal-agent context).6 ECTSno date this semesterWI000100Einführung in Stochastische SchwingungenIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You 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 semesterED130006Entrepreneurial Opportunities in 6G Communication Network Technologies (Lecture Series)Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn the fundamentals, potential, and current developments around 6G communication and identify concrete business opportunities. In the end, you will be able to analyze market needs and technological gaps, assess risks, and develop innovative business models.5 ECTSno date this semesterCIT433025Entwurf von sicheren medizinischen Geräten und BaugruppenIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn how principles of functional safety and the electrical safety standards are applied to medical devices and assemblies. The main focus is on recognizing and mastering hardware and software errors in microcontroller-/processor environments as well as the non-ideal properties of electronic components and their impact on circuit design. In the end you will be able to develop norm-compliant concepts for medical electronic assemblies and assess fault-avoidance or fault-tolerant measures.5 ECTSno date this semesterEI71045Erneuerbare EnergienIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)10 ECTSno date this semesterPH2160EuroTeQ Collider. Enhancing Connections for Sustainable Futures (MSc)Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you work in interdisciplinary and international teams on real challenges around ‘Enhancing connections for sustainable futures’. You develop and test creative, prototype solutions in the areas People, Nature or Technology and learn to communicate these to stakeholders.6 ECTSno date this semesterSOT86701Heinz Nixdorf TranslaTUM Engineering LecturesIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You gain insights into technical and economic questions of medicine and medical technology. Based on external and internal lectures as well as real case studies, you learn to apply engineering knowledge to concrete challenges in the healthcare sector and to analyse and evaluate solutions.1 ECTSno date this semesterCIT4430013Intelligent Machine Design - Basic System DesignIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you work in a team to develop a near-series mechatronic system — typically an autonomous, wheel-based mobile platform — from the idea to a functional prototype. In the end you can design such a system, select components, build, program, commission and evaluate it.6 ECTSno date this semesterEI78062Intelligent Machine Design Lab – Advanced System DesignIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you develop and build in a team an advanced mechatronic system (for example: robotic arm) from the idea to a functioning prototype. In the end you will be able to plan, select components, integrate, program and commission complex mechatronic systems.6 ECTSno date this semesterEI78067Intelligent Machine Design – Advanced Mechatronics ComponentsIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you independently develop complex mechatronic systems with advanced components (e.g. BLDC motors, force sensors, fieldbuses) and progressively transfer product ideas into near-production prototypes. In the end you will be able to design, integrate, build and evaluate such systems as well as forecast and appropriately adjust the interactions of mechanics, electronics and software.6 ECTSno date this semesterEI71090Microstructural Modifications through Additive ManufacturingIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn how additive manufacturing processes deliberately modify the microstructure and thus the properties of metals. In the end you will be able to assess process design, direction-dependent properties and inhomogeneous material properties, and you will know how such material laws are applied in FEA to estimate component behavior.5 ECTSno date this semesterED170002Nachhaltige ImmobilienentwicklungIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn the basics and methods of real estate project development: investment and market analysis, site assessment, profitability, financing and management of real estate as well as legal basics. By the end you can analyze, evaluate and practically apply the concepts of real estate valuation and development.6 ECTSno date this semesterBV550017Projektbewertung und Planungsprozesse im VerkehrIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn planning processes in transportation as well as methods for evaluating transport projects. The module conveys central concepts of transport economics, environmental and economic efficiency assessment (e.g., CBA, MCA) and the processes of strategic and project-related planning up to financing and implementation. In the end you will be able to explain planning phases, analyze ecological and economic aspects and apply suitable evaluation methods.6 ECTSno date this semesterBV520009Robotische Fabrikation in der ArchitekturIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You learn the basics of digital and robot-assisted manufacturing in architecture and construction. By the end you will be able to apply parametric and algorithmic design and manufacturing principles, understand basic data structures for architectural geometry and manufacturing processes, and work with Rhino, Grasshopper, Python and COMPAS/COMPAS_FAB.6 ECTSno date this semesterAR30417Statistisches Lernen und Datenanalyse für VerkehrssystemeIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You receive a modern overview of statistical learning methods and big-data analytics with a focus on applications in the transportation sector. By the end you will be able to select appropriate methods, assess their assumptions and limits, and practically apply and interpret analysis methods to real datasets using R (or alternatively Matlab/Python).6 ECTSno date this semesterBGU70006System IdentificationIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In 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 ChallengeIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In 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.6 ECTSno date this semesterWI001180TUM.stadtIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In this module you engage interdisciplinary with challenges and approaches to solutions for cities in the context of climate, densification and water. By the end you will be able to evaluate fachbezogene und fachübergreifende Wechselwirkungen (synergies, potentials, contradictions) to City & Water or City and well-being.6 ECTSno date this semesterBGU62062Zweidimensionale MaterialienIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)You will learn properties, fabrication, characterization and applications of two-dimensional (2D) materials. At the end you will be able to classify different 2D material classes, select suitable preparation and analysis techniques, and interpret central physical properties (e.g. phonons, excitons, Raman and photoluminescence signatures).5 ECTSno date this semesterPH2172
17 more modules match, but they are taught in German. Show themAgrarsystemtechnik im PflanzenbauIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du erhältst einen Überblick über zukünftige technologische Entwicklungen in der agrarischen Pflanzenproduktion. Du lernst, Sensorsysteme, Robotiklösungen (für Energie/Transport und Prozessrobotik), Technologiesysteme für Saat, Bodenbearbeitung, Pflanzenschutz, Ernte und Logistik sowie Energiesysteme für landwirtschaftliche Maschinen zu analysieren und deren Datenmanagement zu bewerten. Am Ende kannst Du Systeme vergleichen, Smart-Farming-Entwicklungen beurteilen und eigene Systemansätze ableiten.5 ECTSruns this semesterWZ1062ArbeitssicherheitIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In diesem Modul lernst Du zentrale Modelle und Methoden des Arbeits- und Gesundheitsschutzes kennen und wendest sie auf betriebliche Praxisfälle an. Am Ende kannst Du Gefährdungs- und gesundheitsfördernde Faktoren erkennen, Gefährdungsbeurteilungen durchführen sowie Grundsätze der Arbeitssystemgestaltung und des Arbeitsschutzmanagements anwenden.6 ECTSruns this semesterAR30012Einführung in die AgrartechnikIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Das Modul behandelt die grundlegenden Systeme und Technologien der Agrartechnik. Du lernst maschinenbauliche Grundlagen zu Traktor, Motor, Getriebe sowie Techniken für Bodenbearbeitung, Pflanzenschutz, Düngung, Aussaat und Ernte. Am Ende kannst du grundlegende Agrartechniksysteme anwenden, analysieren und neue Systeme entwerfen sowie deren Funktionalität bewerten.5 ECTSno date this semesterWZ1866Grundbau und Bodenmechanik Grundmodul für BauingenieureIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In diesem Modul lernst du die Grundlagen der Bodenmechanik und des Grundbaus kennen: von Entstehung und Beschreibung von Fels und Böden über Baugrunderkundung, Klassifikation und stoffliche Eigenschaften bis zu Wasser im Baugrund, Verformungen und Scherfestigkeit. Am Ende kannst du grundlegende geotechnische Zusammenhänge anwenden und einfache Bemessungsaufgaben zur Grundwasserhaltung, Setzung und Böschungsstabilität durchführen.5 ECTSno date this semesterBV000019Grundlagen der Makromolekularen Chemie, KlausurIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du lernst die Einteilung, Synthesewege und Eigenschaften synthetischer Makromoleküle sowie die zugehörigen Herstellverfahren. Am Ende kannst du Polymere nach Herkunft, Struktur und Polymerisationsart einordnen, typische technische Synthesen der Monomere skizzieren und Grundbegriffe der Polymeranalyse, Polymerisationskinetik sowie Prozesstechnologie beschreiben.5 ECTSruns this semesterCH3211Holzbau GrundmodulIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du erhältst einen praxisnahen Einstieg in die Bemessung von Holzbauwerken. Du lernst, die Grundlagen der Tragwerkslehre und Technischen Mechanik auf den Baustoff Holz anzuwenden und die materialgerechte Verbindung von Holzbauteilen sowie Schutz- und Aussteifungsaspekte zu berücksichtigen.5 ECTSruns this semesterBGU51014Individuelles MastermodulIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)5 ECTSno date this semesterMW5006Individuelles MastermodulIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)5 ECTSno date this semesterMW5007Individuelles MastermodulIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)5 ECTSno date this semesterMW5008Industrielle BildverarbeitungIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In dem Modul lernst Du praxisrelevante Methoden und Algorithmen der industriellen Bildverarbeitung kennen. Du verstehst die typischen Einsatzgebiete (z. B. Lageerkennung, Form- und Maßprüfung, Beschriftungs- und Objekterkennung) und kannst Bildverarbeitungsaufgaben analysieren, bewerten und Lösungen entwickeln.6 ECTSruns this semesterIN2369Intelligente Verfahren in der ElektromobilitätIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du 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 semesterEI71107Lead User ProjektIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du arbeitest in einem Team mit einem Praxispartner daran, die Phasen eines Lead-User-Projekts zu durchlaufen: Branchenanalyse, Trend- und Bedürfnisidentifikation, Lead-User-Findung und Vorbereitung von Expertenworkshops. Am Ende kannst du den Lead-User-Ansatz anwenden, Expertengespräche führen, Workshop-Konstellationen begründen und Ergebnisse vor Firmenvertretern präsentieren sowie dokumentieren.6 ECTSruns this semesterWI000116Medizin 1Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Im Modul Medizin 1 erhältst du eine Einführung in Anatomie, Physiologie und medizinische Terminologie. Am Ende kannst du Aufbau und Funktion der wichtigsten Körperstrukturen nennen und medizinische Fachbegriffe grundlegend verstehen und anwenden.5 ECTSruns this semesterME520Medizin 2Ingenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Im Modul Medizin 2 vertiefst du die Grundlagen aus Medizin 1 in Krankheitslehre und klinischer Propädeutik und lernst die Basis der Medizinischen Informatik. Am Ende kannst du grundlegende Krankheitsmechanismen, typische Krankheitsbilder und Untersuchungstechniken beschreiben sowie Grundbegriffe und Anwendungen der medizinischen Dokumentation und Informationssysteme erklären.5 ECTSruns this semesterME521Polymerisationstechnik, KlausurIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du lernst die Grundlagen und technischen Aspekte verschiedener Polymerisationsarten (radikalisch, ionisch, koordinativ) und deren Verfahren kennen. Am Ende kannst du Reaktoren, Betriebsweisen und Einflüsse auf Molmasse und Molmassenverteilung einschätzen sowie Copolymere nach Mikrostruktur und Zusammensetzung beurteilen.5 ECTSruns this semesterCH3099Simulation mechatronischer SystemeIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)Du lernst, mechatronische Systeme mit mechanischen, elektrischen und thermischen Komponenten zu modellieren und zu simulieren. Am Ende kannst du multidisziplinäre Modelle aufbauen, simulieren und bewerten — z. B. für Hardware-in-the-Loop, embedded control und die Simulation von Elektrofahrzeugen.5 ECTSruns this semesterEI04021Technische Grundlagen von Smart FarmingIngenieurwissenschaftliche Flexibilisierung (bis maximal 15 Credits)In diesem Modul lernst du die technischen Grundlagen und Konzepte von Digitalisierung, Smart Farming und Precision Farming kennen. Du kannst am Ende die Begriffe voneinander abgrenzen, die zugrundeliegenden Technologien (z. B. GNSS, Drohnen, Wireless Sensor Networks, ISOBUS) beschreiben und ausgewählte Systeme praktisch anwenden.5 ECTSno date this semesterWZ1867