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polymerization and electropolymerization. The structures will be confirmed, for example, by 1H and 13C NMR titration, FTIR, mass spectrometry, UV-vis and fluorescence spectroscopy, electrochemistry, size exclusion
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the boundary layer and the turbines, but also at the center. This should shed some new light on the dissipative structures and extreme events possibly responsible for the large scale evolution of the flow
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from the advantages offered by the CNRS. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5280-FRABES-003/Candidater.aspx Requirements Research FieldEngineeringEducation LevelPhD
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edges,...) with high temperature structural applications. Knowledge of thermomechanical properties (coefficient of thermal expansion) and thermophysical properties (diffusivity, heat capacity, thermal
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, energy, transportation, and construction. The laboratory focuses on describing the relationships between processing, microstructure, and properties, using both experimental and modeling/simulation
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, experimentation and modelling. The research aeras are structured through 4 main unifying themes: Interiors of the Earth and Planets, Natural Hazards, Earth System and Origins. The IPGP is in charge of labelled
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the first objective is to extend these findings to silicon solar cells. Two emerging concepts will be investigated and compared: (1) Multi-resonant absorption induced by perfectly ordered structures
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(based for instance on classical and/or ab initio molecular dynamics, combined with ONIOM-type QM/MM approaches) to gain deeper insight into the structure of the HFIP solvent, its coordination properties
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structure as well as the location and depth of the transformations. The researcher (M/F) will be in charge of material interaction experiments and/or electromagnetics and thermal simulations with femtosecond
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system housing the two arms of the PET-SCAN system - Develop a simulation tool to optimize the prototype structure - Develop software tools for data acquisition and processing This work is being carried