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and computational biology: Molecular biology, especially genomics methods Spatial omics, including spatial transcriptomics Bioinformatics, especially integration of multi-omics datasets and spatial data
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histories in Central Eurasia by applying palaeoproteomic methods to a selected number of archaeological sites in the region. The position is based in a research group composed of evolutionary and molecular
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imaging data (e.g., MRI, CT, angiography) Development of AI-based control methods for continuum robots. Validation and experimental evaluation of control algorithms on robotic platforms Profile and
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archaea-bacteria consortia and a wide array of imaging approaches including structural and chemical imaging. The postdoc will use the following methods: Handling and experimenting with anaerobic syntrophic
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otolith-based method and relate FMR to oceanographic and ecological conditions along north-south and fjord-offshore gradients in East Greenland. Experience with isotope analyses and arctic field work
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advanced mesoscale fluid simulations such as CFD, Lattice Boltzmann Method (LBM), Pore Network Modelling (PNM), and Molecular Dynamics (MD) with microfluidic experiments. The research targets gas bubble and
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and development of associated sensing and estimation algorithms Path planning based on medical imaging data (e.g., MRI, CT, angiography) Development of AI-based control methods for continuum robots
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relevant field (e.g. environmental science, chemical or environmental engineering, atmospheric science, or agroecology). Proven experience with gas flux measurements and instrumentation (e.g. chamber methods
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of advanced methods for activity-based simulation models and machine learning methods in transportation. You will work in close collaboration with colleagues, and with academic partners in Europe. Your primary
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development of methods to detect synthetic nucleotides using the Oxford Nanopore platform. The postdoc will be part of the Microbial Metagenomics group with 15 researchers at various career levels with