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lifetime. An initial multiphysical modeling approach was developed at LCTS during a recent doctoral research project (https://theses.fr/s346508 ), characterizing oxidation diffusion/reaction mechanisms and
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way of achieving high mechanical strength by combining an ultra-fine granular structure and spinodal decomposition. The post-doctoral fellow will conduct a microstructural characterization of new high
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University of Lille, whose main field of application is the study of complex physico-chemical systems using molecular spectroscopic, analytical, and advanced modeling methods (https://lasir.cnrs.fr
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coordination polymers. These studies will provide atomic-level insights into the structure and dynamics of these materials, combining NMR with computational analyses (DFT) to refine structural models and
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, electrical, and thermal properties, and the production process (conventional and solar). • To accurately model and optimize the nano and macro structure of the graphenic carbon-metal system in relation with
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prediction using diffusion models, genetic/evolutionary algorithms or even random algorithms (etc.). Binary and ternary phase diagrams under pressure will be explored. From the crystal structure generated, he
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-AES, CEC, total C and N, organic C, pH). - Characterization of soil microbial activities related to biogeochemical cycles (C, N, P, and S). - Characterization of the structure and diversity of bacterial
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environment ... etc. Recent advances in genomics associated with the development of increasingly accurate geographic information systems are leading to large-scale genomic and environmental data that allow
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thunderstorm structures, delving deeper into these issues is becoming necessary to develop a conceptual model of rain-generating systems and estimate their response to climate change. The aim is to link
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); - Training a ML-based model using these simulation results; - AI-assisted topological optimization of lattices to improve overall performance. Additively manufactured “lattice” structures, composed of periodic