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its inverse reconstruction. A key challenge is the data-driven design of the experimental setup: exploring how the choice of measurements and configurations can be optimized to extract the most useful
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community-led design. You will be part of the Making With cluster https://www.tue.nl/en/research/research-groups/making-with within the Department of Industrial Design. You will also work closely with
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transition. See: https://www.tudelft.nl/en/2026/tbm/tpm-researchers-receive-nwo-kic-consumer-behaviour-for-a-circular-system-transition-grant . The project includes 2 PhD positions, 2 Postdoc positions, and
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a suitable “glueless” sealing method will become a key solution in bringing MEMS based microfluidic flow meters to the medical and other markets, driving further innovation in healthcare and related
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, advanced disease models, therapeutic innovation, biomarker development, clinical translation, patient engagement, and the ethical, regulatory and health-economic aspects of therapy development. The network
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biology, advanced disease models, therapeutic innovation, biomarker development, clinical translation, patient engagement, and ethical, regulatory and health-economic aspects of therapy development
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infrastructure? Join us to develop innovative photonic technologies that enable ultra-fast, energy-efficient, and highly scalable optical interconnects for next-generation AI compute clusters. Information
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, the core scientific contribution of the SHARE project (Work Package 3). More concretely, your work will involve the following: You will design and compare deep generative approaches, UAEs, GANs, diffusion
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waterworks and pioneers in biotech, TU Delft is a top international university combining science, engineering and design. It delivers world class results in education, research and innovation to address
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expertise in leukodystrophy biology, advanced disease models, therapeutic innovation, biomarker development, clinical translation, patient engagement, and ethical, regulatory and health-economic aspects