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advanced correlative microscopy techniques, combining coherent X-ray diffraction imaging (CXDI) and STED super-resolution microscopy. The researcher will: • Develop new multimodal imaging strategies; • Work
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TEM/STEM experiments using nanometer-sized electron beams. Development of correlative protocols for ePDF and fluctuation microscopy (FM) data acquisition and analysis, focusing on middle-range order
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related fields. Experience in solidification processes, directional solidification, and processing of aluminum alloys. Experience in microstructural characterization, including optical microscopy (OM
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. Structural, chemical, and morphological characterization (X-ray diffraction – DRX, scanning electron microscopy – SEM, transmission electron microscopy – TEM, Raman spectroscopy, Fourier transform infrared
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cloning, confocal microscopy, next-generation sequencing, bioinformatics. Mandatory requirements: Applicants must have obtained their PhD within the past seven years; demonstrate experience in at least one
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Chemistry, Physics, Materials Science, or closely related fields. Previous experience in soft self-assembled nanostructures and scattering and microscopy characterization of nanomaterials is indispensable
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, ultracentrifugation) and nanocaracterization methods (Dynamic Light Scattering – DLS, Transmission Electron Microscopy – TEM, Zeta Potential, Western blotting); - Experience with in vitro cellular immunology models
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) and genotoxicity assessment (comet assay); Experience with core molecular/cell biology techniques such as immunofluorescence, immunoblotting, flow cytometry, quantitative PCR, and confocal microscopy