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design workflows for nanoporous carbon electrodes for sodium-ion batteries. The objective is to accelerate the exploration of virtual carbons with varied microstructures by combining numerical structure
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–2 at LMA, Marseille– Device design and construction, supervised by Renaud Côte with support from Vincent Roggerone and Sandrine Rakotonarivo. Year 3 at CRNL, Lyon– Live-animal experiments supervised
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validation tests of experimental results related to developed prototypes. Designing conversational solutions and for the assessment of conversational solutions after having worked on LLM's. - ISOL, M. Penco
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–Science research-creation project bringing together engineering, life sciences and design. This interdisciplinary framework will enable the candidate to develop innovative experimental models while engaging
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embolism events, trigger high-speed acquisitions, and measure their dynamics over timescales ranging from several hours down to a few microseconds. The work will include designing and automating
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chemical processes related to the energy transition. Combined approaches of advanced characterization will serve in the design of porous materials while providing a better understanding of their performance
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of research. We propose a novel approach: to design solid cellular materials (3D-printed), whose shape and mechanical properties evolve in a controlled manner in response to internal depressurisation; using
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program on Working Package 3, which focuses on a demonstrator illustrating the application of the mathematical theory of multi-agent viability in monetary economics. Designing a Model for Applying multi
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remaining biologically interpretable? The PhD candidate will design and apply integrative computational workflows using methods such as multi-omics integration, spatial modelling, representation learning
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for the precise design of quantum dots while retaining the exceptional mechanical properties of graphene. The electronic structure of bilayer graphene has been the subject of extensive study in recent years