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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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                for experiments below the MHz to detect the current fluctuations. We propose for the internship to use our newly developed ultrasensitive TMR-based (Tunnel Magnetoresistance) magnetic field sensor to detect 
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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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                (PROCOP), in collaboration with the University of Technology of Compiègne and Sorbonne University. The recruited PhD candidate will join the Institute of Chemistry and Biology of Membranes and Nano-objects 
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                funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Main Project Objective: Identify the most influential samples in a dataset, particularly 
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                Nationale des Ponts et Chaussées, IP Paris, under the supervision of Mathieu Aubry , in the context of the DISCOVER ERC project on "Discovering and Analyzing Visual Structures". This PhD project aims 
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                . Approximately 50% of water pollution is linked to the agricultural sector. The objective is to be able to monitor in real time the concentrations of ammonium ions (NH4+) and nitrates (NO3-), which represent 
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                provide a comparative mapping of these processes across all major archaeal phyla. Scientific objectives: - Identify and characterize de novo genes within the main archaeal lineages and their associated 
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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