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of wiretap coding in highly directive links and to obtain new bounds for the finite-blocklength secrecy rate under a mutual information secrecy constraint. Context : Physical layer security techniques
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of an external magnetic field into the phase-field model and to simulate the microstructural evolution for different cooling rates. - Phase-field modeling of the phase transition in the Fe-Ni alloy. The selected
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catalysis, such as enzymes or polyoxometalates (POMs), will be combined with metal–organic frameworks (MOFs) in order to stabilise and heterogenise these species. The syntheses will be carried out in
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hydrides (MH). Their formation is exothermic, while their decomposition is endothermic. The hydrogenation process causes embrittlement, leading to pulverization of the alloy. When MHs are used in large-scale
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programme. Transposable elements (TEs) are defined as mobile genomic DNA sequences and are ubiquitous in all living organisms studied to date. These elements can constitute varying proportions
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knowledge of numerical methods - knowledge of free-surface flows, granular flows - proven experience in numerical simulation (finite elements, finite volumes, CFD, LES, etc.) - proficiency in basic scientific
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tools • Modeling of devices with the finite element method • Micro-nano fabrication in the IEMN's clean room • Physical / Electrical characterization of devices • Participation in the ANTARES project
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Opening and Innovations' Department. GPM (Materials Physics Group, UMR CNRS 6634) is organized in 5 departments: Metallurgy- Mechanical Microstructures, Scientific Instrumentation, Functional Materials and
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, along with approximately 20 to 22 PhD students and postdoctoral researchers. The laboratory is located at IRCOF in Rouen (CNRS, University, and INSA of Rouen), France. The IRCOF hosts around 60 CNRS
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des Platinoïdes dans l'Aval du Cycle) project, which aims to develop processes for recovering platinum elements (ruthenium, rhodium, palladium), molybdenum and technetium from spent nuclear fuel