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proteins and nucleic acids and in particular RNA - preparation of in vitro cell-free translation extracts - purification of ribonucleic complexes suitable for structural studies by cryo electron microscopy
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(Raman, fluorescence), electron-based microscopy, X-ray-based imaging, diffraction and spectroscopy, micro-/millifluidic device design and operation, image/video analysis, bacteria cultivation and
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, cobalt, nickel, etc.) -Preparation of heterogeneous catalysts via surface organometallic chemistry -Characterization of materials (IR spectroscopy, solid-state NMR, electron microscopy) -Investigation
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for homogeneous photocatalysis. Physico-chemical characterization Structural, optical, and electronic analysis of materials (spectroscopies, microscopies, electrochemistry, etc.) to establish structure–property
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support machine learning applications for analyzing electron microscopy images of nanoalloys. Model interactions between nanoalloys and carbon substrates to reflect experimental conditions, incorporating
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-nucleus RNA sequencing and transmission electron microscopy workflows and data interpretation in collaboration with partners Data analysis, figure preparation, manuscript and report drafting and
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lifetime microscopy and single-molecule localization microscopy, with the aim of enabling dynamic observation of living biological systems and nanostructures. This research lies at the interface of physics
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, electronics, image and data analysis, chemistry, and biology. In this position, the successful candidate will work on the development of a novel three-dimensional single-molecule localization microscopy
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of view (Raman spectroscopy, scanning electron microscopy, atomic force microscopy, etc.); - Participate in progress meetings and report writing. The work will be carried out at the Laboratory
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(phosphate, oxides) synthesis by solid state reactions, hydrothermal process or electrodeposition. These solids will be characterized through i) diffraction of X-rays (XRD), ii) Scanning Electron Microscopy