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urban hydrometeorology, climate modelling, heat-health interactions, and water-sensitive urban design? Do you want to work on a high-impact, international project that translates urban hydrometeorological
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climate and hydrometeorological modeling, urban biometeorology, and climate-sensitive urban design? Do you want to pursue a PhD study that translates advanced urban (bio)climate and hydrometeorology
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of any accelerator on Earth. In this project you will turn that signal into cosmic-ray physics: measuring the muon content of air showers, confronting high-energy hadronic-interaction models and
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building models (impervious and with openings) capturing loads and pressures on various structural elements, both horizontally and vertically. Integrating experiments with numerical simulations (e.g. CFD
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. They are useful for searches of physics beyond the standard model, exploration of many-body physics, and societal applications, such as navigation. So far, clocks operate in a pulsed manner, preparing a
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into detector specifications, design and model suitable device structures, develop a CMOS-compatible fabrication and integration route, and fabricate experimental devices. You will characterise spectral
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software and enterprise resource planning (ERP) software, not product modelling software such as Building Information Modelling (BIM), although knowledge of BIM can be helpful. The project will contribute
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for Molecular Sciences (HIMS) at the University of Amsterdam. Our research focuses on the development and application of advanced molecular simulation and multiscale modelling methodology to obtain novel and
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Help redefine cancer treatment through nanomedicine. We are seeking a highly motivated PhD candidate to work at the cutting edge of lipid nanoparticle design & molecular modeling Job description
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within a research group with strong expertise in vascular access, large animal models and clinical translation. At the same time, you will be scientifically embedded in research groups at TU Delft focusing