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: Conducting experimental studies on radionuclide sorption onto cement phases Performing spectroscopic studies with XPS to determine metal oxidation states Participating in DFT calculations on metal sorption
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analysis, statistical modelling, linear mixed models, and machine learning among others. The position is well suited for an individual interested in quantitative genetics and data analysis that wishes
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preparation and bioinformatics and statistics, with experience in analysis of next-gen sequencing data and an interest in evolutionary genetics. Excellent communication skills, a high level of motivation and
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– structures that regulate the selective entry of metal species into nanocompartments; and (4) inert surfaces – outer assemblies that remain stable in supersaturated solutions. Performing high-throughput
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lymphoblastic leukemia (ALL). This will include RNA-sequencing of single leukemia cells, bioinformatic analysis of the data, follow-up analyses, and functional experiments. You will be responsible for executing
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, magnetometry and electron transport in bulk phases. This is in line with experience within our group on materials growth, structural analysis by diffraction including the use of Rietveld refinement, and
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bioinformatics and statistics, with experience in analysis of next-gen sequencing data and an interest in evolutionary genetics. Excellent communication skills, a high level of motivation and good spoken and
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living cells. The project will involve experimental work with biophysics techniques, such as microscope operation and sample-labeling strategies. Microscopy-based assays and image analysis will be
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analysis of complex, longitudinal, and high-dimensional data (e.g., immunometabolic profiles, clinical data, biomarkers). Development and application of predictive models and algorithms for diagnostics
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of coatings Conduct and/or be responsible for failure analysis of coatings Analysis and interpretation of data Writing and/or guiding students to write journal manuscripts Writing applications to attract