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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
outcomes. Molecular beam epitaxy (MBE) growth of GaAs nanowires on patterned Si/SiO₂ substrates. Structural analysis by electron microscopy (in situ TEM, electron diffraction, zone-axis indexing). Automated
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high-resolution microscopy • Mammalian cell culture and genetic manipulation • Molecular and biochemical assays • Quantitative analysis of intracellular trafficking dynamics The project will be carried
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in cell biology and lipid metabolism. • Proficiency in standard cell biology and biochemical techniques (cell culture, microscopy, biochemical assays). • Experience with cellular imaging and
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) the creation of new-based DNA nanostructures as a molecular template to hold proteins to facilitate molecular imaging by single-particle Cryo-Electron Microscopy (Cryo-EM) (2) the development of DNA-based nano
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of the metalloprotease ADAM10 trafficking by tetraspanins in colon cancer, using single-molecule techniques. - Single-molecule biophysics (single-molecule localization microscopies and single-molecule Förster Resonance
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, cell biology experiments, biochemistry, metabolic profiling, measurement of metabolic or electric activities via probes or MEA system, and in vitro imaging using confocal microscopy). • Animal experiment
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. Proven experience in advanced flow cytometry, confocal microscopy, and/or NGS methodologies is essential. Relevant specialized experience in molecular and cellular biology, molecular genetics, and in vivo
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, including X-Ray diffraction, scanning electron microscope, atomic force microscopy Additional comments NA Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR137-JULGRO0-024/Default.aspx
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devices using broadband spectroscopy and electron microscopy The position offers a stimulating interdisciplinary environment and opportunities to develop advanced skills in numerical optimization
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optoelectronic properties at multiple length scales using advanced local microscopy and characterization techniques (such as scanning probe–based approaches); Study of charge transport, recombination, and