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successful candidate will be granted a temporary employment contract with the university for a period of 4 years (48 months), with an evaluation at the end of the first year. Within the contract period, the
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of Sanquin is home to 250 researchers, including over 60 PhD students and 30 postdocs. Research at Sanquin is organized in four strategic themes: Anemia, Bleeding & Hemostasis, Immunity & Inflammation, and
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performance, and relevant health-related characteristics over time. You will also become automatically involved in more technological advancements of putting virtual reality into practice. In a subset of
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-powered aircraft structures. Job description How do aerospace materials deform and fail at temperatures approaching 20 K (-250 °C)? And how does their behaviour change under dynamic loading? In this PhD
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reaction mechanisms to materials performance to be validated by your experimental colleague. This is what you are going to do Use coarse-grained and atomistic simulations to understand the interactions
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, and affinity with understanding imaging physics. Excellent programming skills are also high important. In addition, you must of course have an interest in real-world applications. What you will do
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elements should be used to generate the required radiation? how do we generate as many ‘usable’ photons from the plasma as possible? What are the optimal laser and target properties? Project goal The goal
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molecular-level reaction mechanisms to materials performance. This is what you are going to do Synthesize and characterize porous MOFs and MOF thin films, including tailoring pore and surface chemistry and
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are going to do Synthesize and characterize porous MOFs and MOF thin films, including tailoring pore and surface chemistry and loading selected peptides into the materials. Develop and run in situ ATR
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applications. What you will do Conduct original and novel research in the field of Computational Imaging and Computer Vision. Publish and present scientific articles at international journals and conferences