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contract is part of a collaborative project aiming at the fabrication of dense clusters of plasmonic nanoparticles and polymer with non-linear optical properties. The objective is to demonstrate
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candidate will work with the PI of the project (André Belotto da Silva) and with the Singularity Theory group at the IMJ-PRG. Research activities in the fields of Singularity Theory, Algebraic Geometry, and
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with experimental groups. The activities will be centered on engineering of topological states for photonic modes, including non-linear and non-Hermitian effects. Another crucial ingredient will be
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and disseminating results * Epoxidation of erucic acid and direct polymerization of epoxidized fatty acid * Synthesis of linear and branched polyesters from erucic acids mono-hydroxylated at different
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angularly Broad Line Region, at sub parsec scales, and provide model dependent dynamical measures of the SMBH mass. Combined with Reverberation Mapping linear size measures, angular spectro astrometric sizes
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to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications
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to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications
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developed in solid and structural mechanics. In the course of their previous experience, they will have developed knowledge in one or more areas of non-linear physics or solid mechanics, such as fracture