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Field
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for automotive applications. Key tasks include: Performing advanced transmission electron microscopy (TEM) and complementary techniques (SEM, EBSD) to study grain boundaries, precipitate-free zones, and solute
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, ultrastructure expansion microscopy, super-resolution microscopy, electron microscopy) Protein-interaction studies, including Co-IP, BioID and native protein electrophoresis Complementary biochemical and
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(DSC/TGA), scattering methods (SAXS/WAXS), microscopy (e.g. AFM) and mechanical and rheological measurements. You will be part of an international consortium and interact closely with our collaborators
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the aim of this position such as scientific research, statistical analysis. Knowledge of multiphoton microscopy, immunofluorescence, RNA-ISH, confocal microscopy and image quantification will be valued
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statistics, safe laboratory practices, oceanographic data handling, and field ecology. Laboratory work will include sample processing, microscopy, and benchtop imaging. Depending on your interests, additional
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probe microscopy. Our research focuses on using single electron spins in diamond as sensors to explore magnetic phenomena at the nanoscale. This doctoral project will center around the development and
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experiments Characterization of materials in the initial state and after irradiation/ageing using (scanning) transmission electron microscopy (TEM/STEM), nanoindentation, and complementary microstructural and
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and Transmission Electron Microscopy studies at the Department of Physics. This PhD position is within the field of experimental materials physics and nanotechnology, in the project «Nanoscale imaging
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of high cor
(Deutsches Elektronen-Synchrotron/German Electron Synchrotron) and Scanning Kelvin Probe Force Microscopy (SKPFM) for visualising the distribution of cathodic phases in bulk and on plane, along with integral
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microscopy (ExM) adapted for spatial transcriptomics to identify neuronal subpopulations underlying observed responses. Anatomical characterization: use transgenic lines to uncover morphological and