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the cell response. A key innovation in this PhD project is to engineer environmentally (cell)-instructive hydrogels with controlled architecture (pore size, network interconnectivity) and mechanical
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. The work will progress from well-defined model minerals to recycled and secondary mineral resources with the support of the supervisors and project consortium. The position includes the following
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modelling of the processes developed and materials evaluated. About you The ideal candidate will: Hold a first degree and doctoral degree in Materials Science, Geology, Environmental Science or closely
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, from fundamental theory, laboratory experiments, and detailed numerical simulations, to mesoscale pore network modeling and upscaling to continuum-scale theories that can be applied in application
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, enabling detailed analysis of pore structure and connectivity. • SRS measurements: The same fruit batches will be measured using SRS to develop calibration models relating optical signals to porosity
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active member of the international RosettaCommons community, which provides opportunities for collaboration, training, workshops, and networking with leading researchers in computational protein design
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active member of the international RosettaCommons community, which provides opportunities for collaboration, training, workshops, and networking with leading researchers in computational protein design
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applied physics other related disciplines. Demonstrated knowledge in at least one of the following areas: porous media flow computational fluid dynamics (CFD) pore-network modelling lattice Boltzmann method
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, enabling detailed analysis of pore structure and connectivity. • SRS measurements: The same fruit batches will be measured using SRS to develop calibration models relating optical signals to porosity
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the properties and performance of these materials. This area also requires experimental studies by providing insights from molecular levels to continuous pore scale level. The modeling of porous membrane usually