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bird surveys, and Norwegian Institute of Bioeconomy Research, who carry out the genetic analyses. The project will further connect to ongoing research on plastic ingestion and contaminant body burdens
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along with high-content, data-driven methods based on omics. Techniques applied will comprise advanced 4D cellular and molecular imaging, e.g. lattice lightsheet SIM, genetically encoded sensors
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of the four departments of Psychology, Social, Genetic & Developmental Psychiatry (SGDP), Health Service & Population Research (HSPR), and Biostatistics & Health Informatics (BHI). Our internationally renowned
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work-life balance. Place of work and area of employment The place of work is Department of Molecular Biology and Genetics at the iNANO building, Gustav Wieds Vej 14, 8000 Aarhus C, and the area of
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: Food biosolutions and hybrid food systems hosted by The Department of Food Science Theme 6: Digital phenotyping across plants, insects and farmed animals hosted by the Centre for Quantitative Genetics
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6: Digital phenotyping across plants, insects and farmed animals hosted by the Centre for Quantitative Genetics and Genomics. Theme 7: Water technology hosted by the Department of Biological and
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profile in animal ecophysiology Experience in one or more molecular methods (e.g. metabolomics, proteomics, enzyme kinetics, eDNA, population genetics, bioinformatics) A strong profile in interdisciplinary
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one or more molecular methods (e.g. metabolomics, proteomics, enzyme kinetics, eDNA, population genetics, bioinformatics) A strong profile in interdisciplinary research (e.g. integrating knowledge
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, physics & astronomy, chemistry, geology, mathematics, computer science, and molecular biology & genetics), a graduate school, and several research centres. In addition, we host interdisciplinary networks
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are: Glacial Microbiology Microbiology in air, soil, ice, and rhizosphere Microbial and microeukaryotic genetics and diversity eDNA analysis and use in environmental monitoring Microbial and protist ecology