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Field
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resolution x-ray crystallographic analyses, electron cryo microscopy (cryoEM), and cell-based fluidics studies. The group has access to a range of state-of-the-art facilities and technologies within the Centre
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using in-situ and ex-situ electron microscopy and x-ray techniques; Synthesis and characterisation of lithium alloy anodes and interlayer • You will have significant experience in managing your own
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a combination in vitro biophysical measurements, high resolution x-ray crystallographic analyses, electron cryo microscopy (cryoEM), and cell-based fluidics studies. The group has access to a range of
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dichroism, negative stain electron microscopy, and nano differential scanning fluorimetry, alongside experience in biochemical studies of enzymes and molecular cloning techniques. The ability to manage
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, biochemistry, or a related field Hands-on experience in cryo-electron microscopy for the determination of protein structures Experience in amyloid structure determination, electron tomography, and
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and intercellular transport using X-ray crystallography, cryo-electron microscopy (cryo-EM), microcrystal electron diffraction (microED), and small-angle X-ray scattering (SAXS). The Postdoctoral
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supramolecular structure. High-resolution electron microscopy (TEM, STEM, cryoEM, cryo-FIB-SEM) FDAA labeling Immunolocalisation of proteins Superresolution microscopy (e.g. STED, MINFLUX) [2] Postdoctoral fellow
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time-resolved hard X-ray diffraction microscopy and spectroscopy on single-crystalline bulk and thin film quantum materials (e.g. ferroelectrics, multiferroics, strongly correlated electron systems
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. Our lab applies advanced structural and biophysical methodologies including cryo‑electron microscopy (cryo‑EM), X‑ray crystallography, single‑molecule fluorescence, and enzyme kinetics to elucidate how
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Institute is a leading CNRS research center for fundamental biology, providing a stimulating interdisciplinary environment and access to state-of-the-art facilities, including: • Light and electron microscopy