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Laboratoire Interdisciplinaire des Energies de Demain - Université Paris Cité | Paris 15, le de France | France | 18 days ago
scale to model and optimize the optical and mechanical properties of both the photoswitch and the photomorphon (the photoswitch and its neighboring polymer chains), the latter governing how
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continuous-fibre-reinforced polymers (composites) under monotonic and cyclic loading, in particular using acoustic emission and thermography. Derivation of service life models for composites. Involvement in
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polymer composites. This project is a direct, high-impact follow-on from our published work on Composite Fibre Additive Manufacturing (CFAM), a novel sheet lamination technique. The initial research
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analysis At least 5 publications in peer-reviewed scientific journals or patents Modeling in polymer processing, particularly injection molding and extrusion; numerical simulation of transport processes
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experimental design, identify technical challenges, and contribute to project planning and feasibility assessments. • Conduct polymer synthesis and perform comprehensive material characterization using
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framework for the modeling of polymer nanocomposites under nonlinear elasticity at large deformations. The microstructure will be explicitly described at the microscopic scale through nonlinear micromechanics
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externally funded, convergence research at the intersection of polymer chemistry, surface science, sensor technologies, environmental engineering, with Omics-driven approaches for materials discovery. This is
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at the design, characterization, and modeling of a new class of electrostatic devices based on the interaction between dielectric fluids and dielectric polymers... Where to apply Website https
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RAP opportunity at National Institute of Standards and Technology NIST Hydration of polymer dielectrics Location Material Measurement Laboratory, Materials Science and Engineering Division