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operating currents and conductors composed of multiple REBCO tapes in parallel. It is therefore necessary to develop experimental and numerical study capabilities for quench dynamics in REBCO conductors and
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macrophages recognize, deform and internalize microplastics and other microparticles. In parallel, the project will incorporate a design-driven research perspective exploring how forms, objects, images and
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framework, covering a wide spectrum from RANS approaches to high-fidelity LES with automatic mesh adaptation. In parallel, recent work has led to the development of multi-fidelity modeling strategies
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the production and dissemination of a film presenting the project. Supervision Prof. Radouane EL YAGOUBI – Neuroscience, CLLE Laboratory Dr Amel AISSAOUI – Signal Processing, IRIT Laboratory Contact Prof. Radouane
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CNRS 6144), a leading laboratory in process engineering, particularly in electrochemical engineering for environmental applications such as water treatment and reuse, as well as the valorization
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d'Azur. The team is composed of computer scientists but has a strong interdisciplinary focus, particularly in linguistics, philosophy, sociology, and law. MARIANNE proposes innovative methods for natural
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neuronal circuits requires the coordinated execution of several developmental processes, including neuronal migration, axon growth and guidance, and synaptogenesis. These processes critically depend
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catalytic processes in homogeneous solution and on surfaces. EMPRe team students are trained in the synthesis of ligands and transition metal complexes. They then apply methods of molecular electrochemistry
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to artifacts such as non specific absorption, parasitic reactions, or diffusion based resolution loss. In this project, we will design and control a surface modifcaiton process based on a double, photo
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for the heliophysics component, and LISN in Orsay for the computer science and natural language processing component. Status meetings every two weeks, alternately at LIRA in Meudon and at LISN in Orsay. The PhD thesis