Teaching at our Institute
Our Courses
- 325.118 VU Continous Simulation
- 325.055 VU Feedback Control
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 325.038 VU Fundamentals of Automatic Control
- 303.182 VO Machine Dynamics
- 325.039 UE Machine Dynamics
- 303.009 VO Measuring and vibration technology
- 303.010 UE Measuring and vibration technology
- 309.019 VO Mechanics of solid bodies 1
- 309.021 UE Mechanics of solid bodies, exercises 1
- 309.020 VO Mechanics of solid bodies 2
- 309.022 UE Mechanics of solid bodies, exercises 2
- 301.036 VO Mechanics 3
- 301.038 UE Mechanics 3 Exercises
- 325.062 VU Stochastics
- 325.064 VU Strength of Materials
- 328.036 VO Adaptive and predictive control
- 325.025 UE Adaptive and predictive control
- 309.033 SE Biomechanics of the Human Locomotor System
- 325.115 VU Computational methods for structural mechanics
- 301.063 VO Computer aided methods for dynamical systems
- 301.064 UE Computer aided methods for dynamical systems
- 303.336 VO Condition Monitoring of Machinery
- 328.011 VO Digital Control
- 325.017 UE Digital Control
- 325.045 LU Engineering dynamics - laboratory course
- 325.055 VU Feedback Control
- 325.095 VU Finite Element Methods for Multi-Physics I
- 325.101 UE Finite Element Methods for Multi-Physics II
- 325.099 VO Finite Element Methods for Multi-Physics II
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 328.032 VO Identification - Experimental Modeling
- 325.065 UE Identification - Experimental Modeling
- 309.005 VO Injury Mechanics
- 325.118 VU Kontinuierliche Simulation
- 328.034 LU Laboratory Advanced Automatic Control
- 303.182 VO Machine Dynamics
- 325.039 UE Machine Dynamics
- 325.105 LU Mechatronic Systems Lab
- 325.100 VU Modal analysis
- 309.038 VO Modelling of the Human Locomotor System
- 325.042 VO Rotordynamics
- 325.043 UE Rotordynamics
- 325.057 VO Special Problems of Vehicle Dynamics
- 309.041 VO Spezielle Probleme der Mehrkörpersystemdynamik
- 309.023 VO Stability of motion
- 325.019 VU State space control of MIMO systems
- 325.064 VU Strength of Materials
- 325.116 LU Structural mechanics
- 325.117 SE Structural mechanics
- 325.114 VU Structural mechanics of plates and shells
- 325.113 VU Structural mechanics of rods
- 325.058 VO Vehicle System Dynamics
- 325.047 SE Vehicle System Dynamics Seminar
- 325.118 VU Continous Simulation
- 325.055 VU Feedback Control
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 325.038 VU Fundamentals of Automatic Control
- 303.182 VO Machine Dynamics
- 325.039 UE Machine Dynamics
- 303.009 VO Measuring and vibration technology
- 303.010 UE Measuring and vibration technology
- 309.019 VO Mechanics of solid bodies 1
- 309.021 UE Mechanics of solid bodies, exercises 1
- 309.020 VO Mechanics of solid bodies 2
- 309.022 UE Mechanics of solid bodies, exercises 2
- 301.036 VO Mechanics 3
- 301.038 UE Mechanics 3 Exercises
- 325.062 VU Stochastics
- 325.064 VU Strength of Materials
- 328.036 VO Adaptive and predictive control
- 325.025 UE Adaptive and predictive control
- 309.033 SE Biomechanics of the Human Locomotor System
- 325.115 VU Computational methods for structural mechanics
- 301.063 VO Computer aided methods for dynamical systems
- 301.064 UE Computer aided methods for dynamical systems
- 303.336 VO Condition Monitoring of Machinery
- 328.011 VO Digital Control
- 325.017 UE Digital Control
- 325.045 LU Engineering dynamics - laboratory course
- 325.055 VU Feedback Control
- 325.095 VU Finite Element Methods for Multi-Physics I
- 325.101 UE Finite Element Methods for Multi-Physics II
- 325.099 VO Finite Element Methods for Multi-Physics II
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 328.032 VO Identification - Experimental Modeling
- 325.065 UE Identification - Experimental Modeling
- 309.005 VO Injury Mechanics
- 325.118 VU Kontinuierliche Simulation
- 328.034 LU Laboratory Advanced Automatic Control
- 303.182 VO Machine Dynamics
- 325.039 UE Machine Dynamics
- 325.105 LU Mechatronic Systems Lab
- 325.100 VU Modal analysis
- 309.038 VO Modelling of the Human Locomotor System
- 325.042 VO Rotordynamics
- 325.043 UE Rotordynamics
- 325.057 VO Special Problems of Vehicle Dynamics
- 309.041 VO Spezielle Probleme der Mehrkörpersystemdynamik
- 309.023 VO Stability of motion
- 325.019 VU State space control of MIMO systems
- 325.064 VU Strength of Materials
- 325.116 LU Structural mechanics
- 325.117 SE Structural mechanics
- 325.114 VU Structural mechanics of plates and shells
- 325.113 VU Structural mechanics of rods
- 325.058 VO Vehicle System Dynamics
- 325.047 SE Vehicle System Dynamics Seminar
- 309.005 VO Injury Mechanics
- 309.038 VO Modelling of the Human Locomotor System
- 328.011 VO Digital Control
- 325.017 UE Digital Control
- 325.101 UE Finite Element Methods for Multi-Physics II
- 325.099 VO Finite Element Methods for Multi-Physics II
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 328.032 VO Identification - Experimental Modeling
- 325.065 UE Identification - Experimental Modeling
- 325.118 VU Kontinuierliche Simulation
- 328.034 LU Laboratory Advanced Automatic Control
- 303.182 VO Machine Dynamics
- 325.039 UE Machine Dynamics
- 325.105 LU Mechatronic Systems Lab
- 325.019 VU State space control of MIMO systems
- 325.064 VU Strength of Materials
- 325.116 LU Structural mechanics
- 325.117 SE Structural mechanics
- 325.114 VU Structural mechanics of plates and shells
- 325.113 VU Structural mechanics of rods
- 328.011 VO Digital Control
- 325.017 UE Digital Control
- 309.029 VO Fundamentals of Multibody System Dynamics
- 325.056 UE Fundamentals of Multibody System Dynamics
- 325.112 VU Robot Control
Are you looking for a topic for your thesis?
Great Demand for our Graduates
Nowadays, almost all technical systems and devices are mechatronic systems. The high demands in the development of such systems mean an increasing need for engineers with interdisciplinary university education, as offered by mechatronics.
Graduates of our institute are therefore in great demand on the labour market. Their broad knowledge in areas such as mechanics, measurement technology or control engineering opens up attractive career opportunities in research, product and system development, technology and innovation management or project management. Our graduates are also successfully employed in a wide range of industries, such as the automotive industry, biotechnology, environmental and medical technology or aerospace technology.
Internship at our Institute
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Internship at the Institute of Mechanics & Mechatronics - Impressions from Anna.
Anna, 15, completed her HTL internship at the Institute of Mechanics and Mechatronics at TU Wien - and shares her impressions. (Interview conducted in German, English subtitles embedded into video)