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of the fabricated fibers within optical networks. - Design of innovative hollow-core fiber structures using the finite element method. - Fabrication of specific optical fibers on a fiber drawing tower. - Linear
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, electron microscopy, ultrasonic methods, optical spectroscopies, pump-probe techniques). - Proven experience in modeling planetary internal structure and dynamics, using thermodynamic, finite element, or
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fields. - Groups of finite Morley rank. - Research in mathematics. - Interactions with the researchers in model theory at IMJ-PRG and ENS. - Participation in the Logic group's activities at the IMG-PRG
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The postdoc will realize an EPR analysis on DNA-based enzymes, using 1D and 2D techniques. Two main systems will be investigated, having Copper(II) and Manganese(II) as metal co-factor. Structural and
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resistance genes (ARGs) in the environment. However, the mechanisms underlying the global dissemination of ARGs remain unresolved. The presence of heavy metal resistance genes (HMRGs) alongside ARGs in
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-dimensional (2D) materials of type MX2 (M=Metal, X=Chalcogen, type WS2, WSe2) and MX (InSe, In2Se3). The scientific aim is to understand the interactions between these different materials according
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molecular metal catalysts for the synthesis of polycarbonates from CO₂ and bio-sourced molecules. Organic and organometallic synthesis Physicochemical characterization Catalytic testing The recruited
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of trace element behavior in zircon-melt system. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5563-ANABOR-011/Candidater.aspx Requirements Research FieldGeosciencesEducation LevelPhD
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Offer Description The LCPME is looking for a qualified and motivated postdoctoral researcher to participate in a research project involving the development of antibacterial coatings on 3D metal parts
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benefiting from both academic and industrial research environments. The work will be done in collaboration with Nathalie Bertrand and Ocan Sankur (Inria DEVINE team https://devine.inria.fr/ ) and Benoît Boyer