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Institut de Chimie des Milieux et Matériaux de Poitiers | Poitiers, Poitou Charentes | France | 26 days ago
²/g). -High electrical conductivity, comparable to 3D graphene-like structures. -Hierarchical porosity (micro- and mesopores), ideal for applications in energy storage/conversion and gas separation
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on existing methods, including a foundational model for mapping 2D mouse images to a canonical 3D mesh, with the goal of extending to full 3D reconstruction. This will enable inferring canonical 3D postures
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AMMETIS[1] (AI-assisted Simulations of Microstructure driven Mechanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced
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) - Signal processing and image analysis (Python) - Oral presentation of scientific results at meetings and international conferences. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5295
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the species., as well as the order of their redox potentials [1,2]. A recent study from Murali et al. [3] has confirmed the great structural diversity in the cytochrom bd family. Moreover, the analysis
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of 3D crystalline structures; – depending on the candidate's profile, implementing machine learning methods (AI & machine learning) for the analysis of physicochemical data from the hpmat.org database
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solar tornadoes. The main objective of this project is to provide 3D directional energy flux maps of the solar atmosphere. It will be achieved by tracking the intricate interplay between plasma flows and
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, thermal, depth, LiDAR, acoustic, sonar and radar sensor data, with established research lines in 3D reconstruction, and Edge AI for resource-constrained deployments. Where to apply Website https
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networks. Through these efforts, ANCHOR will not only deepen fundamental theories but also provide practical, scalable solutions to improve 3D coverage, mobility, latency, network capacity, energy efficiency