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to the viscoelastic behavior of polymeric foams under large deformations dynamic loadings. The objective is to simulate, using the finite element method, the response of these porous microstructures under complex
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at the Mechanics of Composites for Energy and Mobility Lab. (MCEM, https://composites.kaust.edu.sa ). Field of study A Postdoctoral opening is available in the area of Insitu Multiphysics
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collaboration with Special Melted Products (https://specialmeltedproducts.com/) using the unique Royce metals processing capabilities in Sheffield (https://sheffield.ac.uk/royce-institute), that range from alloy
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research. We are looking for a Research Fellow to assist the PI in conducting research specified in a sponsored project. The
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research. We are looking for a Research Fellow to assist the PI in conducting research specified in a sponsored project. The
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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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Institut de Recherche en Génie Civil et Mécanique (GeM) | Saint Nazaire, Pays de la Loire | France | 5 days ago
plateformes expérimentales de pointe. Les candidatures doivent être déposées sur la plateforme Amethis (https://amethis.doctorat.org ). This PhD thesis lies at the interface between materials mechanics
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spray-drying and freeze-drying, linking molecular/colloidal interactions in the feed formulation to process-driven microstructure, and ultimately to stability and release kinetics. The work will deliver
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), microstructural evolutions, phase transitions, and the rehydration behavior in dense colloidal dispersions. Tight interactions are expected with other members of the project who will produce complementary
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microstructural characterization, and opportunities focused on acoustic nondestructive evaluation of existing structures. We apply fracture mechanics and materials science principles to model data, furthering