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the final morphology of the self-assembled interfacial structure. However, precise and quantitative characterization of such self-assembly dynamics has thus far proven to be a challenge due to the large
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for determining the final morphology of the self-assembled interfacial structure. However, precise and quantitative characterization of such self-assembly dynamics has thus far proven to be a challenge due to the
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account for these uncertain drivers and their dynamic interaction with changes in intended use. As part of the NWO-funded SPINES project, you will address this challenge by identifying those interplays
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advancements, population and economic trends, and their future developments come with deep uncertainties. Infrastructure policies must account for these uncertain drivers and their dynamic interaction with
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must account for these uncertain drivers and their dynamic interaction with changes in intended use. As part of the NWO-funded SPINES project, you will address this challenge by identifying those
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Vacancies PhD Position SPINES: Modelling Tipping Dynamics in Infrastructure Use Key takeaways There is an increasing demand for infrastructure services while, at the same time, infrastructure
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) the development of a holistic multi-hazard risk framework capturing cascading effects across systems and scales; (2) the creation of digital environments utilizing real-time data for dynamic risk evaluation; (3
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Vacancies PhD position on the design and fabrication of MEMS drag force-based flow and fluid composition sensors Key takeaways In this project, we will combine well-known thermal flow sensing
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We are looking for a talented and enthusiastic candidate for a fully funded 4-year PhD position. The PhD candidate for this project will be working at the RNA Structural Ensemble Dynamics group led
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: reduced-order models (ROMs) and input-output models derived from high-fidelity Computational Fluid Dynamics (CFD) models; data-based models determined from training/calibration data by system/parameter