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Field
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-disciplinary environment? Information Many of the most challenging problems in science and engineering involve physical systems that evolve over time while exhibiting rich mathematical structure. Fluid flows
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structure change and solve such complex entwined urban challenges (www.kems.nl). However, up to now KEMs often do not adequately support policymakers in addressing the complexities of urban challenges
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Are you interested in advanced rheological characterization, microstructure analysis, and modelling of complex food systems? In this postdoctoral project, you will combine fundamental science with
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engineering involve physical systems that evolve over time while exhibiting rich mathematical structure. Fluid flows, reactive materials, biological systems, plasmas, and complex engineered processes
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high-value polymers from complex waste streams such as multilayer packaging and mixed plastic waste, leading to large volumes being incinerated or landfilled. Solvent based recycling offers a promising
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interaction? Which parameters and mechanisms govern the response of a lined tunnel? How can the complex, time-dependent behaviour of deep plastic clay and segmented concrete lining be captured in models
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capture the full complexity of processes in midlatitude stratocumulus. These will range from the kilometre scale down to micrometre scale at which turbulence influences the rate at which cloud droplets
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high-value polymers from complex waste streams such as multilayer packaging and mixed plastic waste, leading to large volumes being incinerated or landfilled. Solvent based recycling offers a promising
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synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover high-value polymers from complex waste streams such as multilayer packaging
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cellular targeting and lamella preparation of frozen-hydrated biological specimen on a unique instrument, with the aim of enabling efficient and reproducible structural analysis of molecular complexes in