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, such as Bayesian approaches and fossilized birth–death models, to reconstruct robust phylogenies and estimate divergence times. It also investigates macroevolutionary dynamics, including variation in
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. Their study allows us to probe fundamental physics at energies inaccessible on Earth and to shed light on the mechanisms that govern the formation, evolution and dynamics of the most extreme objects in
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research activities, provided these are consistent with the project's objectives and do not hinder its progress. In accordance with CNRS and laboratory internal regulations, partial remote work may be
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the mission's payload, an instrument developed at LATMOS, is a key instrument for detecting favourable sample collection drilling areas. It will also provide access to a third dimension of the geological
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. Their study allows us to probe fundamental physics at energies inaccessible on Earth and to shed light on the mechanisms that govern the formation, evolution and dynamics of the most extreme objects in
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The main objective of the postdoctoral fellow's work is to develop an imaging Mueller polarimetric system for improving the detection and quantification of abiotic stress in plants. The post-doctoral fellow
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project focuses on estimating dead fuel produced by forest dieback. In previous projects, a processing chain using Sentinel-2 data has already been developed (Mouret et al., 2024). The objective here is to
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implementing models that integrate ecological dynamics, species traits, phylogenetic trees, and economic discounting; ● Devising Bayesian or POMDP frameworks to handle uncertainty about species interactions
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applications. The project aims to address fundamental theoretical questions related to the representation and measurement of the polarization state, as well as the use of Bayesian and/or statistical learning
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resolution. Bioinformatics: Analyzing complex long-read sequencing datasets to identify viral isoforms, detect mutations, and model RNA structures using established and custom pipelines. Molecular virology