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seek a highly motivated PhD candidate who is eager to face the challenge of subsurface characterization and contribute to improved dike safety. You will develop advanced digital models of the subsurface
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-Machine Interfaces (eHMIs) can enable safer and more inclusive interactions. You will: Develop a theoretical framework for identifying key characteristics of AV–VRU interactions and define design criteria
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interpreting research data, publishing and presenting your research, Participating in academic activities, including seminars, workshops and teaching. You will be part of our Computational Illumination Optics
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. That is why we focus on themes such as energy, climate, digitalisation, artificial intelligence (AI), and smart mobility every day. Our education and research are directly aligned with what society needs
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of Technology and QuTech. The goal is to further develop fault-tolerant architectures for photonic platforms based on fusion-based and measurement-based computation, addressing photon loss and other hardware
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smart mobility every day. Our education and research are directly aligned with what society needs now and in the future. At TU Delft, our people make the difference. With their knowledge and curiosity
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high-quality education, offering excellent support, and fostering collaborations within and outside the university. In doing so, we contribute indispensably to a healthy, free world with equal
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. These challenges are changing rapidly. That is why we focus on themes such as energy, climate, digitalisation, artificial intelligence (AI), and smart mobility every day. Our education and research are directly
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Contribute to the safety of next-generation micro nuclear reactors for maritime and land-based applications. At TU Delft, you will develop advanced multi-physics models that support the design and
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strategic themes: Anemia, Bleeding & Hemostasis, Immunity & Inflammation, and Immune Therapy. The joint mission of research at Sanquin is to develop novel methods and approaches using blood cells and blood