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of Electrical Engineering, which also includes research in communication systems, biomedical engineering, and control systems. The department employs about 200 staff from more than 20 countries and runs about 100
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of ambient species like oxygen and water is of course to take into account, other factors are still out of control. Growing evidence shows that the properties of organic materials and, consequently
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control, human-robot collaboration, and smart grids. For this reason, their design and deployment should be accompanied by a formal check of correct behaviour. The Research Training Group on Continuous
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networks, making use of intelligent AI-driven control planes. The work will involve: i) (i) development of network probing algorithms for OSNR/GSNR measurement automation; (ii) development of adaptive ML and
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and deterministic AI outputs is critical. This requires robust design principles and architectural changes to reduce variability and integrate smoothly with industrial control systems. Enhancing
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patient-derived, isogenic-corrected patient-derived controls and healthy-derived iPSCs and evaluate pathomechanisms through in-depth molecular, physiologic, and morphologic phenotype analysis. WP2
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this project, we will conduct human dietary intervention trials to study these post-meal responses to complex meals under controlled conditions. We aim to gain novel insights into both intra- and inter
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approaches to explore problems associated with membrane charge transport. Ion channels are proteins that control the movements of charged molecules across cell membranes to enable electrical activity in
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Powder Bed Fusion (LPBF) parameters. Perform detailed microstructural characterization of IN625 specimens using modern techniques (SEM, EBSD, TEM). Conduct mechanical tests under controlled hydrogen
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to provide dynamic transformer rating, and how to use batteries in distribution grids. Using e.g., the concepts of the Smart-Energy OS, which is a hierarchy of methods for aggregation, forecasting and control