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to understand disease resistance and local adaptation across Europe. The project combines large-scale population genomics, graph-based pangenomics, structural variant discovery, genome-wide association studies
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at different stages of manufacturing. The resulting measurement data may be combined with process models and digital engineering tools to support tolerance engineering, process analysis, and continuous
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, diagnostics and treatment of diseases. At the division of Molecular Bioscience, Department of Life Sciences, we combine and develop protein engineering, synthetic chemistry, nucleic acid technology, and state
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department, with around 200 dedicated staff, including 65 Doctoral students . We are a joint department between Chalmers University of Technology and the University of Gothenburg, combining the best of two
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planning. The project combines agent-based modelling, large-scale mobility data, transport networks, generative modelling, resilience indicators, and equity analysis. A central goal of this recruitment is to
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of dynamic systems. Our work combines fundamental control theory with applications in areas such as transportation, environmental and biological systems, and electric power systems. The division also teaches
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of these interactions into soil and ecosystem models. Depending on the selected candidate, the research project can focus on statistical analysis of literature data, process-based modelling, or a combination of the two
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systems, combining global research perspectives with strong collaboration with industry. About the research project Software is often the root cause of vulnerabilities in modern computing systems. By
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resolution. Combined with our fast tomography stages and better scan sequencing, significant improvements to the temporal and spatial resolution will be possible and will enable expansion of the applicability
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the electrode materials and electrolyte, the conduction mechanism, degradation and the relationship between manufacturing process and materials properties. The analysis relies on combining electrochemical methods