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Field
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collide, condense and evaporate. Guided by the results from the field campaigns, a new Microphysics Informed Large-Eddy-Simulation (MiLES) model will be developed. The tested and verified MiLES will be
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1 Oct 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Engineering » Materials engineering Engineering » Nuclear engineering Researcher Profile
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for the commercialisation of the technology in the near future is a thorough understanding and modelling of the corrosion chemistry of the molten salt nuclear fuel in contact with structural materials in the reactor core
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Materials Science section at TU Delft. This team focuses on atomistic simulations to investigate materials for sustainable energy, with proven expertise in hydrogen embrittlement, hydrogen storage and the
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questions in biology and enable new technologies for treating disease. By combining organic electronic materials, soft hydrogels and advanced microfabrication and 3D-printing technologies, we develop devices
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: Investigate, evaluate, and benchmark emerging 3D web technologies, annotation frameworks, simulation engines, and repository solutions, and produce evidence-based recommendations that steer architectural
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Can spectroscopy reveal how a breathable material knows when to seal? In this PhD project, you will develop responsive MOF-peptide coatings for adaptive protection and follow their chemistry in real
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11 Jul 2026 Job Information Organisation/Company University of Groningen Research Field Engineering » Materials engineering Engineering » Simulation engineering Researcher Profile First Stage
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Your work environment You will be part of Team Dey within the Computational Materials Science section at TU Delft. This team focuses on atomistic simulations to investigate materials for sustainable
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ice, using a framework consisting of an ocean Large Eddy Simulation (LES) and a Discrete Element Model (DEM) of sea ice. Results from these simulations will be validated against a combination of in-situ