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                metal in the space between the NDs) or networks of 2D metal pads formed on the domains. Our team has good experience in the formation of hybrid nano-objects (organo-metallic) on the surface of water by 
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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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                research and soft robotics development. PhD project The PhD project will focus on the technical aspects of simulating the physics of the Drosophila larva body. The primary objectives include: Developing a 
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                -… ) at the Psychology and NeuroCognition Laboratory (CNRS UMR 5105), and is part of the ANR-funded RePer-AGE project. The main objective of the RePer-AGE project is to significantly advance our understanding 
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                PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F-of-plane ferroelectric domains. The goal of this PhD is to optically detect, track, and ultimately control the ferroelectric state in such materials. Key objectives include imaging ferroelectric domains in a 
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                mechanisms underlying the perception of peripersonal space (PPS) in the pseudo-ecological context of virtual reality. We seek to determine whether the mere proximity of an object is sufficient to trigger PPS 
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                domains: historical documents and Earth imagery. For example, from temporal series of multispectral Earth images, we will identify types of moving objects, areas with different types of vegetation 
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                BMAD simulation tool, an advanced open-source particle tracking framework, the doctoral candidate will perform start-to-end simulations, benchmark physical models, and explore tolerance studies. Specific 
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                . Our vision and our understanding of supermassive black hole systems have indeed known dramatic progress over the last decade. In particular, they have shown that these objects behave as accelerators 
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                research direction. The objective of the Aime-AO project (funded by the ANR France) is to design and develop new MAO-based supported activators which, through metallocene activation, are capable