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French National Research Institute for Agriculture, Food, and the Environment (INRAE) | Angers, Pays de la Loire | France | 2 months ago
regarding the effects of the recent insertion of TE (natural or induced in the laboratory) near genes, in particular their level of expression and methylation, and ultimately on the evolution of plant
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thermal stresses. Moreover, being able to correlate these properties with each other and link them to the microstructure of the fibers is an essential element for the development of new materials. Objective
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on the materials used, the manufacturing processes and the subsequent end of life requirements. This holistic approach to the system development will allow for a novel e-textile interconnection system that will
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contribute to the development of fundamental aspects of computer science (models, languages, methodologies, algorithms) and to address conceptual, technological, and societal challenges. The LIG 22 research
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the development and function of organs and organisms as well as in human disease etiologies (cancer, inflammation, cardiometabolic disease, aging, immune and neurological disorders) and plant-microorganism
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carried out under high voltage at LAAS to demonstrate the advantages of these new devices. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7073-MICPEF-095/Candidater.aspx Requirements
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. Understanding hydrogen diffusion and segregation across scales is essential for the development of efficient embrittlement mitigation strategies. The postdoc is offered within the project ANR Hy-Style focused
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theoretical formulation Year 2: Metrics and theoretical development o dependence quantification (IF, Shapley, MI) o first publications Year 3: Verifiable unlearning and system integration o cryptographic proof
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will be extended to three-dimensional roughness configurations, requiring the development of dedicated numerical tools optimized for high-performance computing environments. Results will be
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) the creation of new-based DNA nanostructures as a molecular template to hold proteins to facilitate molecular imaging by single-particle Cryo-Electron Microscopy (Cryo-EM) (2) the development of DNA-based nano