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invasion and plant performance. Working in close collaboration with with a postdoctoral researcher and a fellow PhD candidate, you will identify microbial taxa and microbial interactions that are most
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information theory: designing and analysing error-correcting codes, establishing fundamental performance limits, and building practical decoding algorithms and architectures. Your research will sit at
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collaborations performed with European partners such as the European Space Agency (ESA), the German-Dutch Wind-Tunnels (DNW), LaVision GmbH, a Formula 1 team and several other aerodynamics institutes. Since 2000
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datasets, in collaboration with clinical partners in the Netherlands and abroad; critically assess model performance and interpret results in the context of clinical and hemodynamic relevance; write
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activities of the Source Department aim at an atomic- and molecular-level understanding of the fundamental dynamics in the operation of contemporary and future plasma-based sources of extreme-ultraviolet (EUV
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hydraulic loads and the structure’s response. Working in TU Delft’s Hydraulic Engineering laboratory, you will design and perform advanced large-scale experiments using our dam-break facility and instrumented
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do flowing systems perform their designed tasks? To what extent do they trap fuel ions? Under what circumstances will flowing surfaces remain stable during plasma exposure? As a result the
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for the duration of the project if you perform well. We encourage development and internal mobility within our organization. Our recruitment and selection policy sets out the conditions that apply specifically
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temporary employment contract (1.0 FTE) of 1.5 years, after which your performance will be evaluated. If the evaluation is positive, your contract will be extended by 2.5 years (4-year contract). You will
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years assuming everything goes well and performance requirements are met. Salary and benefits are in accordance with the Collective Labour Agreement for Dutch Universities, increasing from €3204 - €4051