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the underlying physical phenomena with a view to optimizing the internal surface of the tube for antibacterial anti-biofilm functionality. Experimental work. Design and construction of the experimental setup
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program (PEPR) Forest Resilience (FORESTT – https://www.pepr-forestt.org/ ), funded by the France 2030 Investment for the Future Plan (PIA). FORESTT aims to support the transition of forest socio-ecosystems
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will be evaluated by structural and electrochemical characterizations to estimate their reuse potential. This project is backed up by a research project being developed in Hauts-de-France, involving a
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enables high activity in olefin polymerization, while providing precise control over composition and molecular weight distribution. However, this activator remains a poorly defined solid at the structural
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2%/sqrt(E) can be reached and that a constant term better than the 1% could be achieved. The next step of the project is the development and the construction of a demonstrator of the electromagnetic
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printing creates objects or structures with shape- and/or property-changing capabilities over time. Since its inception in 2013 at the Massachusetts Institute of Technology and the University of Colorado
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policies, under the supervision of Kévin Jean (junior professor at IBENS and associate researcher at Cnam Paris) and within PARSEC (Paris Research Health Environment Climate), a new research structure
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the molecules studied (different lengths of the alkyl chain) self-assemble into perfectly monodisperse nanodomains (NDs) forming, under the effect of surface pressure, hexagonal crystal structures. We also
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Structural characterizations: X-ray and electron diffraction, electron microscopy, atomic force microscopy Study of electronic and magnetic properties: SQUID magnetometry, X-ray and angle-resolved
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accessible by metro (line 12, Front populaire station, or RER B, La plaine-Stade de France station). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8083-CATGOU-005/Candidater.aspx Requirements