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. We seek an experimental surface scientist experienced with near-ambient pressure Scanning Tunneling Microscopy and x-ray Photoelectron Spectroscopy. The position is for at least 1.5 years with
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or extracellular vesicle biology. The successful candidate will have one or more of the followings: Expertise in super-resolution microscopy. Expertise in confocal/light-sheet microscopy of zebrafish embryos and
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. Experience with one or more of the following will be considered an advantage: RNA sequencing or other omics technologies, including data analysis; advanced microscopy or image analysis; renal physiology
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conditions mimicking dense interstellar dust and molecular clouds. The applicant will use low temperature scanning tunneling microscopy (STM), temperature programmed desorption, and (single molecule) IR
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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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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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to experimentally derived disorder models and data from methods such as total scattering/pair distribution function analysis, diffuse scattering, diffraction, solid-state NMR and electron microscopy. Work closely
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-resolution microscopy Genome editing (e.g., CRISPR-based approaches) Quantitative and live-cell imaging Functional genomics The project is embedded in an interdisciplinary research environment combining
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of inorganic and coordination compounds, including discrete complexes and related systems, using methods such as X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and
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(confocal, electron microscopy and spatial omics) on samples. Using Seahorse and related assays to assess the impact of genome editing and drug treatment on the metabolic activity of pre-clinical models