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deficiencies in the current understanding of indirect-noise generation, especially as it relates to hydrogen-fueled systems, Computational Fluid Dynamics (CFD) will be used. Initially, numerical analyses will
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Human interventions and climate change are exerting increasing pressure on estuarine systems, profoundly altering their dynamics and often leading to negative consequences such as reduced flood
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metal–impurity interactions, interfacial phenomena and its commitment to computation-guided design for a sustainable future. You will collaborate closely with researchers from a broad consortium
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the interaction of microbes and their environment. We focus on microbiomes in the human gut and oral cavity in collaboration with our Amsterdam partners the Amsterdam UMC (location AMC) and ACTA. We study the gut
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expertise in artificial intelligence, computer vision, human-computer interaction, and psychology. Its technical core lies in developing robust and adaptive visual speech recognition models. Close
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) Application Deadline 30 Oct 2026 - 22:59 (UTC) Country Netherlands Type of Contract Permanent Job Status Not Applicable Hours Per Week 38.0 Is the job funded through the EU Research Framework Programme? Not
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of hydrogen embrittlement in circular steels aligns perfectly with the team's broader interest in metal–impurity interactions, interfacial phenomena and its commitment to computation-guided design for a
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Join a cutting-edge research programme at TU Delft and investigate the mechanisms of hydrogen-induced degradation in circular steels. Job description Within this project, you will investigate one
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Are you passionate about human movement and developing clinical tools for understanding human movement disorders? Job description Challenge: Over a quarter of a million people in the
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that can interact with human cells and tissues with high spatial and temporal resolution. You will embark on a new project focused on the development of 3D-printed hydrogel bioelectronics for neural