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contribute to high-impact research at the forefront of biodiversity science and global change ecology. You will work on combining extensive biodiversity datasets, innovative geospatial products, and remotely
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epigenetic regulation in development. An interdisciplinary environment with opportunities for collaboration across experimental and computational life sciences within MBG and the broader Aarhus University
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. The position is part of the EU-funded EVOLVE project and focuses on controlled-environment biological testing of extracellular vesicles as a non-GMO platform for steering plant performance and plant-microbe
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within SHAPE subjects focusing here mainly on History/historie, L1/dansk, and Social Science/samfundsfag. The research is expected to result in high-quality international publications, including both co
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punished or excused. The project is organized around three work packages. Work package I develops computational tools to detect and quantify shaming and shamelessness in elite political discourse across
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and high-throughput workflows Molecular biology or cell biology DNA damage response and genome maintenance ADP-ribosylation, PARP biology, or related signalling pathways Computational analysis
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research results in high-impact scientific journals. Your profile We are searching for a highly motivated candidate who has: A PhD in natural sciences, e.g. geology, soil science, microbial ecology
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researcher with a strong quantitative profile, excellent analytical skills, and a clear interest in publishing high-quality empirical research. The successful candidate will primarily work on a randomized
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. The Department of Biomedicine provides research-based teaching of the highest quality and is responsible for a large part of the medical degree programme. Academic staff contribute to the teaching. English is the
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states on fast timescales and are enabling materials for emerging photonic computing technologies. The postdoctoral researcher will perform operando and time resolved structural characterization