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assessments weigh uncertainties conservatively and simplify the interactions between subsurface heterogeneity, 3D groundwater flow and BEP. To make risk assessments of BEP more realistic it is therefore
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. The first one will advance techniques for large-scale 3D particle tracking by merging measurement theory and practice with flow modelling for applications in industrial wind tunnels for the aerospace sector
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3D X-ray inspection techniques for industrial quality control. The project is foundational in nature, while at the same time exploring applications in collaboration with industry partners. The main
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of new data-driven 3D X-ray inspection techniques for industrial quality control. The project is foundational in nature, while at the same time exploring applications in collaboration with industry
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. Current BEP risk assessments weigh uncertainties conservatively and simplify the interactions between subsurface heterogeneity, 3D groundwater flow and BEP. To make risk assessments of BEP more realistic it
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with simulated data and 2D and 3D imaging data of plant tissues (the thale cress Arabidopsis and the aquatic fern Ceratopteris). At a later stage, the models can be extended to three dimensions using
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Course location Karlsruhe Description/content The Cluster of Excellence 3D Matter Made to Order (3DMM2O) is a Research Cluster jointly run by Karlsruhe Institute of Technology (KIT) and Heidelberg