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particular, to unravel the preservation mechanisms and hidden diversity of the Paris Biota (PB), an exceptional marine ecosystem from the Lower Triassic (~250 Ma), using innovative approaches such as
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the study of rare-earth nickelates in the infinite-layer phase, either partially or fully reduced. Partial reduction of these materials could lead to the emergence of new electronic and structural properties
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researcher will have as main mission to lead the research on the characterization and quantification of the spatio-temporal variability of bedload transport in rivers of the Seine basin, as part of a research
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by information and communication technology which could lead 20% of global energy production to be consumed by the adoption of artificial intelligence. Therefore, “unconventional” computing
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versatility of the size and redox properties of the f-block elements. The second objective is to use these ligands to promote the formation of multimetallic assemblies in which the metal atoms are close enough
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states. In addition, hybridization between electronic states from different layers can significantly change the electronic band structure and lead to new physical phenomena. In this postdoctoral project
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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO