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and super-resolution microscopy established in the host lab and spearhead an interdisciplinary, collaborative project. Expected start date and duration of employment This is a one–year position from
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-gradient centrifugation, NTA, immunoblotting, or nanoflow cytometry). Practical expertise in advanced imaging or single-particle analysis (e.g., cryo-EM/TEM, TIRF microscopy, single-vesicle tracking
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Design and use custom-made antibodies to localize the expression of key elements in coelenterazine biosynthesis/recycling Use transmission electron microscopy and VolumeScope FIB-SEM electron microscopy
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Resonance (NMR), optical microscopy, particle characterization and surface analysis. By integrating experimental observations across a diverse library of dairy powders, the project will establish
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balance, special opportunities for junior researchers, and the services available when relocating to Aarhus University at https://international.au.dk/research/. The campus of Aarhus University is located in
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of environmental samples. Experience in advanced analytical techniques is expected, including self-directed use of approaches such as DNA/RNA sequencing, microscopy, photophysiology and environmental chemistry
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infrastructure equipped with state-of-the-art facilities, including fluorescence confocal microscopy, digital PCR, mass spectrometry, HPLC, NMR, cell culturing, GMO2, and Biosafety Level 1 and 2 laboratories
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, cryo-electron microscopy (cryo-EM), cryo-EM-based polyclonal serology (cryo-EMPEM), molecular dynamics simulations, machine learning, and structural biology to define epitopes and engineer improved
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–microbe systems will be considered an advantage. Additional expertise in genome editing, transcriptomics, or advanced microscopy will also be an asset. You are curious, creative, and capable of driving
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DTU Tenure Track Assistant Professor in Surface Physics and Catalysis for Sustainable Energy Solu...
on using and developing state-of-the art methods and instrumentation. Our experimental facilities span ultra-high vacuum surface science, electrochemistry, thermal catalysis, and atomic-scale microscopy