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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various
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extensive experience in the development and characterization of new renewable macromolecular architectures. The candidate (M/F) will carry out their work as part of a European project involving a dozen
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robust spectral and angular performance, ensuring stable optical behavior over wide incidence angles, large-area scalability, and environmental robustness. The main objectives of the project are: • Design
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scientific environment. The postdoctoral researcher will join the “Ligands, Architectures Complexes et Catalyse” team, which has recognized expertise in the design of original metal complexes and their
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robust spectral and angular performance, ensuring stable optical behavior over wide incidence angles, large-area scalability, and environmental robustness. The main objectives of the project are: • Design
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single cell cycle round. This points to a yet-to-be-explored original and divergent cell cycle architecture where conventional rules likely do not apply. We study different aspects of the cell cycle
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The postdoc will realize an EPR analysis on DNA-based enzymes, using 1D and 2D techniques. Two main systems will be investigated, having Copper(II) and Manganese(II) as metal co-factor. Structural and
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of chromatin architecture to associated alterations in genome evolution and metabolism to changes in the physical properties of the nuclear space, tune the way cells adapt to their environment. Altogether