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electronic conversion, energy and hydrogen storage, downstream processes, and energy demand—to enable more efficient, flexible, and economically viable Power-to-X operation. This position is expected to start
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solutions that are relevant for the energy sector. In particular, you will be involved in a research project related to development of a battery management system (BMS) tailored for sodium-ion batteries
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Engineering. The position is closely connected to our activities within developing high-fidelity models that capture the coupled thermal, chemical and electrochemical phenomena governing system performance
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CO2 capture in a Vertical Electrical Shaft Kiln, powered by renewable electricity and operated through an e-Transformer that enables direct grid integration and dynamic operation. Your primary role will
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architectures capable of real-time operation across heterogeneous physical platforms. The position will further explore how wireless networks, including 6G, WiFi, and satellite systems, support robust perception
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spectroscopic techniques to understand structure–property relationships and performance. A significant part of the work involves laboratory-based synthetic chemistry, including the preparation and handling of air
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field of health science within the scope of the Faculty’s research areas. The selection process is entirely focused on scientific merits and strong performance in relevant skills, e.g. research management