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ambitions within the academy for a two-year employment. Subject description Electronics systems include electronics design, measurement technology and electromagnetic compatibility for control, monitoring and
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configuration optimisation, where efficient and timely solutions are critical for ensuring safety, capacity, and sustainability. In modern air-traffic control, the primary objective of controllers is to ensure
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, or portable robotic platforms Experience in programming and configuring control systems for automation and robotics, including relevant programming languages such as PLC, Python, C/C++, MATLAB, ROS
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of electrodes and catalysts for low temperature fuel cells, electrochemical hydrogen generation, batteries, as well as heavy metal removal from aqueous solutions. By designing well controlled model systems in
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develop technologies that contribute to human and planetary health. About the research project Bacterial protein-tyrosine kinases (BY-kinases) control bacterial biofilm formation, and they have no
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reactors, combining the advanced multiphase fluid dynamics, cavitating flow control, and reactor engineering. The successful candidate will: Design and optimize hydrodynamic cavitation reactor geometries
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generation, batteries, as well as heavy metal removal from aqueous solutions. By designing well controlled model systems in combination with powerful analysis and characterization techniques, improved
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electromagnetic compatibility for control, monitoring and instrumentation of technical processes and systems, with close connection to applications and applied research. Project description Your work will be
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Electronics systems include electronics design, measurement technology and electromagnetic compatibility for control, monitoring and instrumentation of technical processes and systems, with close connection
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Vision–Language–Action (VLA) models for tabletop and mobile manipulation. A key focus is leveraging whole-body, humanoid-style motion to improve perception and control, enabling robots to solve complex