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encoded FRET biosensors for mitochondrial functionality. - Implement innovative data analysis protocols and approaches for FRET/FLIM or radiometric FRET microscopy in cultured cell lines - Modify and/or
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in the framework of the BBEST PEPR. The project aims to valorise syngas derived from biomass via the OX-ZEO process. This relay catalytic process combines a hydrogenating metal oxide to produce
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cellulose. In the context of replacing plastic materials and leveraging biomass as a renewable resource, the goal is to develop green chemistry pathways for modifying cellulose—the primary component of
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and abroad; • Analysis and interpretation of data in connection with theoretical models; • Writing of reports, scientific publications, and presentations at international conferences; • Contribution
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) analysis of thermal events, subsidence, as well as modelling and production of H₂ in high-temperature contexts (WP2); 3) development of 3D sedimentary basin models integrating these data, and restore
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- Time-resolved single-particle cryo-electron microscopy: grid preparation, data acquisition and analysis, model building and analysis or Time-resolved serial X-ray crystallography: microcrystallization
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motifs; - establish, optimize, and apply quantitative protein-interaction assays; - perform mammalian cell culture, molecular cloning, mutational analysis, recombinant protein work, and fluorescence
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-state systems with embedded emitters, such as quantum dots integrated into photonic crystal waveguides or high-quality-factor nanocavities, giving rise to the field of quantum nanophotonics. In
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facilities available in the C2N cleanroom. Electron-beam lithography, laser lithography, reactive ion etching, wet chemical etching, and metal deposition techniques will be employed. - low-temperature
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analyze multi-omic data provided by our collaborative partners and interpret the results from a biologically relevant perspective. Planned activities include Python code development, the analysis and