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, is available at https://isem-evolution.fr/equipe/equipe-environnements-extremes/ . This research project will simulate the risks of vegetation and fire in the Landes de Gascogne region of France from
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understanding of the mechanisms that support their development in humans is therefore of major therapeutic interest. The aim of the thesis project is to decipher the cellular and molecular mechanisms supporting
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forest regeneration, as well as the demography and evolution of seed-consuming animal species, triggering cascading effects on community dynamics and overall forest ecosystem functioning. Understanding
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modelling or numerical simulations. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7342-MARBRA-012/Candidater.aspx Requirements Research FieldEngineeringEducation LevelPhD or equivalent
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90 countries. Member of the "University of the Greater Region" (UniGR) A modern and dynamic university. High-quality equipment. Close ties to the business world and to the Luxembourg labour market. A
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interventions, creating environmentally sustainable devices, and developing simulators to reduce reliance on in vivo testing. The training network is interdisciplinary, integrating various fields such as
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suitability for this specific research project; A copy of your MA transcripts; University degree certificates; A copy of your MA thesis; Proof of ID (passport, identity card); A declaration of Honor stating
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Inria, the French national research institute for the digital sciences | Saint Martin, Midi Pyrenees | France | 6 days ago
, copy of diploma and valid proof of disabled worker status. Applications must be submitted online via the Inria website. Processing of applications submitted via other channels is not guarantee Website
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extensive magnetic and electrical characterization of 300mm fabricated devices, potentially with support of micromagnetic simulation. In this course, alternative materials and methods will be developed using
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collaboration with Hospices Civils de Lyon, France. Research activities include: Characterization of nanostructured surfaces Simulating biofilm model/host interactions via a flow cell co-culture system with