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expertise from control theory, machine learning, optimization, and network science, spanning diverse application domains such as energy systems, biomedical systems, neuroscience, and safety and security
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Institut National des Sciences Appliquées de Lyon | Villeurbanne, Rhone Alpes | France | 15 days ago
with the physical principles of structural dynamics and (vibro-)acoustics and the related numerical modeling techniques, such as the Finite Element Method (FEM), as well as numerical optimization
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reality to provide a holistic understanding of artworks’ condition and structure. The objects of interest in this project will be sculptures, architectural columns and porcelain parts. First step is to gain
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responsible for understanding the impact of the object nanostructuring on electronic dynamics in order to better control them within nanostructures optimized for the recycling of CO2 into methane. The PhD
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for the design and optimization of advanced structural materials. [1] https://www.pepr-diadem.fr/projet/ammetis-2/ [2] https://www.pepr-diadem.fr/ Where to apply E-mail mohamed.jebahi@ensam.eu Requirements
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otoacoustic emissions) will be recorded before and after exposure, and the cochlea will be examined with super-resolution imaging techniques that can visualise structures as small as 50 nm. This will reveal
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of ion conductivity in complex battery materials on a large scale. Model‑generated data will be used to identify key relationships between material structure and ionic conductivity through advanced data
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dynamics. Particular emphasis is placed on opinion dynamics as well as distributed problems in coordination, optimization, and learning. The research encompasses both theoretical and computational aspects
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therefore a key challenge for the green and digital transition. In this project, you will apply state-of-the-art AI methods to optimize functionalized membranes for selective rare-earth recovery, helping
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Palmas de Gran Canaria (ULPGC) is seeking a Doctoral Researcher (ICP1 level) to join the research project: “Optimal Design of Multipolar Stimulation Patterns in Cochlear Implants through Numerical