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that control ocean and climate dynamics and variability over a wide range of time and space scales to better understand the climate system and its present, past, and future evolution. The close synergy between
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engineered inorganic/hybrid solids and polymers to combine the best of both worlds (easy manufacturing, high fluxes per unit volume and high selectivity through advanced tailoring) to reach high gas mixture
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extensively studied in dynamic compression, with widely varying compression rates. A large body of literature exists, but there is disagreement on the transition ranges, the nature of some of these transitions
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extending to high-frequency telecommunications beyond 6G. Unlike visible or near-infrared optics in optical telecommunications, very few active optical elements are currently available in this spectral range
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of the 2005 urban riots in France (https://doi.org/10.1038/s41598-017-18093-4 ). It will draw on data concerning these riots, the 2007 urban riots in the Ile-de-France region, and the Yellow Vests movement
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of natural selection. In this project, we are therefore interested in prebiotic chemical systems, with the prism of classical theories in ecology and evolution (ecological interactions, invasion dynamics, non
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University, Japan). Background: Mignerot et al. 2024 https://doi.org/10.7554/eLife.88253.2 Kanzaki et al. 2021 https://doi.org/10.1038/s41598-021-95863-1 Our team (http://ibv.unice.fr/research-team/braendle
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multilayer systems has led to a deep understanding of acoustic phonons in such structures. However, the development of phononic devices operating in the GHz–THz range remains an open area, offering
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environment, with a wide range of instruments suitable for multidisciplinary research, from cellular and preclinical imaging to crystallography. This project will be carried out under the scientific guidance
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European frameworks (REACH), making the development of more environmentally friendly alternatives a priority. Among these alternatives, organic molecules derived from natural resources appear particularly