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. Sci. 24, (2020). (3) Borbély, A., Aoufi, A. & Becht, D. X-ray methods for strain energy evaluation of dislocated crystals. J. Appl. Cryst. 56, 254 (2023). The recruited person will be part of the ANR
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. Characterize transcriptional changes during epithelial morphogenesis. Develop methodologies to link gene expression, systemic factors, and tissue dynamics. Develop methods to integrate transcriptional and
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correlations. This study will be conducted in collaboration with specialists in microscopy, RX and optical methods, and modeling (DFT/molecular dynamics). - Modeling the NMR parameters of selected lithium
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. cerevisiae yeast . Expertise in omics methods. . Preferred: ability to perform bioinformatic analyses Interpersonal skills. Independence. Ability to work in a team and adapt to the needs of colleagues
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from the membranes: copolymers, detergents, etc. - Cell culture (Sf9 insect cells, HEK mammalian cells) - Protein production, purification, and characterization - Biophysical methods for characterizing
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on estimated movements using eDCCs. The research will focus on data simulated using the Monte Carlo method and real data from clinical SPECT scanners with a parallel collimator, such as those available at LUMEN
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The researcher will study the potential of atto-photochemistry on organic or inorganic photoinduced reactions. He or she will use quantum chemistry and molecular dynamics methods to do so. The overall objective is
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strong interest in developing new, rapid, and efficient methods for protein functionalization with CS, as a complement to current enzymatic or metabolic engineering approaches, which are generally limited
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factor under high AC voltage, as well as the electrical conductivity under DC voltage conditions. Different environmental conditions will be considered, i.e., temperature and humidity, and their
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will develop and operate a reproducible computational workflow that combines molecular and periodic electronic-structure calculations, and when appropriate time‑dependent methods. The workflow will be