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microscopy to generate new insights into how cells coordinate and repair DNA double-strand breaks? Using baker’s yeast, Saccharomyces cerevisiae , as a model organism, the project is designed to uncover novel
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have access to advanced core technologies in e.g. cell imaging, FACS, cell sorting, confocal microscopy, animal studies, antibody generation, and biosensors. Close collaboration with Odense University
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the Core facility for Integrated Microscopy (CFIM). CFIB currently offers open access services on a broad range of bioimaging technologies; including preclinical in vivo NMR imaging, multiphoton intra
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DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
microscopy for nanoparticle catalysis at the Center for Visualizing Catalytic Processes (VISION). Responsibilities and qualifications You will engage with VISION’s development and application of nanoreactors
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operando electron microscopy for nanoparticle catalysis at the Center for Visualizing Catalytic Processes (VISION). Responsibilities and qualifications You will engage with VISION’s development and
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integrates CRISPR-based genome engineering, quantitative and live-cell microscopy, biochemistry, and computational analysis to dissect how cells sense and respond to replication-associated threats. Recent work
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production via at least one of the following techniques: magnetron sputtering, electrodeposition, wet chemical methods. The catalysts will be characterized via XPS, XRD, and electron microscopy and we will
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of the project is to map these states with Scanning Tunneling Microscopy/Spectroscopy (STM/STS) and where possible, angle-resolved photoemission spectroscopy (ARPES). Your work will focus on the spectroscopy, and