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is to develop a modeling framework including the use of Random-Walk method to predict NMR measurements, pore-scale finite-element modeling on 3D digital models, generated from CT-images to predict
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elucidating for the first time the dynamics of spreading and polycondensation of chemical damp proofing products by real-time visualization of these processes at the pore scale. You will use novel experimental
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. You will work closely with sedimentologists and stratigraphers who will provide the geological data for pore- and reservoir-scale models. We have some flexibility on the exact focus of the research
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applications for a Postdoctoral Scholar position to support and conduct independent research in the area of computational studies of flow in porous media at the pore scale. Applicants must hold a Ph.D. in an
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materials, and will employ small-angle X-ray and neutron scattering to probe the pore microstructure and morphological characteristics of the materials. Researchers with prior experience using molecular
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will include examining fiber properties such as crystallinity, pore size distribution, fiber surface content, and metal ion composition, as well as conducting laboratory-scale dye uptake trials with
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affinity ligands for protein separation. This includes designing and characterising functional ligand polymers, developing porous affinity chromatography membranes through fabrication and pore engineering
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the delivery of synchrotron and X-ray imaging components of a UKRI Future Leaders Fellowship, delivering advanced imaging research to understand how pore-scale structure and mineral-carbon interactions
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, delivering advanced imaging research to understand how pore-scale structure and mineral-carbon interactions control the storage and movement of organic carbon across the soil–bedrock continuum. The role will
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development and optimization, focusing on pore-to-rhizosphere scale nutrient uptake and yield dynamics 14C modeling for soil organic and inorganic carbon Global soil meta-databases collection, integration, and