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Starting Grant “FLOWSCOPY: Unravelling unsteady fluid flows in porous media with 3D X-ray micro-velocimetry”. Fluid flows in porous materials are a widespread phenomenon, just think of groundwater flow in
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graphic material, disregarding the modern (and anachronistic) disciplinary distinctions between “art,” “architecture,” and “engineering.” Considering architectural drawings according to their use and
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Job description Hard X-ray ptychography is one of the most advanced microscopy techniques to visualize materials in structures in 3D at a spatial resolution better than 100 nm. However, the
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Materials Science research group at Ghent University (https://www.ugent.be/ea/match/sms/en ) and work within a young and dynamic research team. The research is situated within a project with active
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“FLOWSCOPY: Unravelling unsteady fluid flows in porous media with 3D X-ray micro-velocimetry”. Fluid flows in porous materials are a widespread phenomenon, just think of groundwater flow in the subsurface
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researchers from the faculties of Science and Engineering and Architecture with molecular modeling interests. The CMM aims to model molecules, materials and processes at the nanoscale by bringing together
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additional benefits, a positive and inspiring working environment and training possibilities. Your research will be counselled in the Sustainable Materials Science research group at Ghent University (https
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. Meanwhile, four generations of prototypes have been developed, and there is a technology license with one of the key players in the axial flux motor technology. For the fifth generation of axial flux
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services, measurements, testing & certification, preclinical and clinical services, access to and deposit of microbiological and genetic material. Research units at Ghent University Besides having around 90
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at the Coastal Engineering Research Group of the Department of Civil Engineering of Ghent University, within the BEL-Float project. The PhD research will focus on the development and optimization of numerical