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these analysis methods to highly informative multimodal microscopy data and develop techniques to integrate correlated structural and molecular analysis into the natural 3D tissue space. This integration will
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span broad research areas in metallic and ceramic materials (high-temperature intermetallic, space materials, high-strength steels, porous ceramic materials, and materials intended for energy recovery
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local infrastructures in Umeå as well as at our collaborators' laboratories at the SETI Institute and NASA Ames Research Center (CA) and NASA Johnson Space Center (TX). We offer a unique opportunity to
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that makes an impact. All that's needed is a place where ideas have the space to meet and grow. That's what we've created – and you are invited. Change starts here! The Faculty of Health and Life Sciences is
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temporal variation and cannot be adequately described by models that assume a uniform structure. The project aims to develop flexible models that allow key characteristics of the process, such as event
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operated within complex physiological environments. This includes investigating how structures such as vasculature (arteries, capillaries), neural pathways, and extracellular spaces can serve as access