926 evolution "https:" "https:" "https:" "https:" "UNIVERSITY OF MACAU" "UNIVERSITY OF MACAU" positions in Sweden
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of the elements in rocks, soil, and water, focusing on methods to prevent or reduce the environmental impact of metal extraction and infrastructure development. Project description The PhD project will focus
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focuses on leveraging zebrafish as a model organism to develop and optimize genetic tools through a directed evolution pipeline, with significant therapeutic and industrial applications. Key
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group which is responsible for the development of the Ambient Pressure X-ray Photoelectron Spectroscopy Program at MAX IV. The beamlines provide a wide range of sample environments for in situ and
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at https://www.slu.se/en/about-slu/work-at-slu/ Description: We are looking for a PhD to focus on separation of fat and proteins from dairy side streams and plant-based extracts. The project is a
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modelling, data assimilation, and multi-scale neural network architectures applied to spatio-temporal data. The development of these methods is motivated by a concrete and important application: inferring gas
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by positioning open AI infrastructure as the cornerstone of competitive advanced materials development. The applicability of this approach in materials research will be demonstrated through development
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Department of Microtechnology and Nanoscience advances the frontiers in quantum technology, nanoscience, photonics and future electronic systems - for technical and societal development. Our cross
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offers excellent conditions for research of high scientific quality with clear industrial relevance. Read more about the division here: https://liu.se/en/organisation/liu/isy/fs . For more information
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, University of Gothenburg. General information about being a doctoral student at the University of Gothenburg can be found on the university's doctoral student pages. https://www.gu.se/en/doctoral-studies
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factors. When going from solution to the solid state, molecular diffusion must be replaced by exciton diffusion. Triplet-exciton diffusion fundamentally limits the development of highly efficient TTA-UC