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. You will join the Computational Multiphysics in Offshore Engineering (CMOE) group (https://tudelftcmoe.super.site/ ), a dynamic research team dedicated to developing state-of-the-art numerical methods
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, and detect spin waves. To study the spin waves and the superconductors, you will use a cryogenic, NV imaging system that combines techniques from quantum optics and quantum information processing with
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, and how they, in combination with molecular profiles, relate to the physical living environment, health outcomes, and lifespan. This knowledge will then be applied for health prediction in support of
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compartment and subsequently combined in a joint-on-chip. This model is intended to recapitulate key aspects of pathology associated with the indicated forms of arthritis. The envisioned model mimics
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the services nature provides to people. The position will combine ecological data analysis with statistical and spatial modeling to quantify chemical impacts across multiple levels of biological
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Dutch 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
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assess their usefulness. Co-create a regional risk picture by facilitating workshops to prioritise event–disruption–risk combinations with compounding impacts on care (e.g., precipitation extremes
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of Technology is built on strong foundations. As creators of the world-famous Dutch waterworks and pioneers in biotech, TU Delft is a top international university combining science, engineering and design. It
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researcher (4 years) to join the DECIDE project – Democratizing AI: Empowering Citizens through Transparent Decision-making. You will combine scientific research with practical design and coordination
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of such mandates. Within this project, your main task is to help analyze the country-level implementation of the CSDDD in the European Union (see e.g., http://www.eu-regulations.com/) and study the reporting and