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Institut de Recherche en Génie Civil et Mécanique (GeM) | Saint Nazaire, Pays de la Loire | France | 10 days ago
ASCLEPIOS, which can be adapted for locally evaluating the aging mechanisms of polymer-based composites under aging conditions. Applications has to be submitted through the Amethis platform (https
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modelling-focused research associate to fully harness the synergy between the mathematical and experimental sciences. More information about the CFM Lab and the ONE Group can be found at: https
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@nist.gov 301.975.5421 Description A wide variety of phenomena in soft matter including phase equilibrium, self-assembly and aggregation are studied in biological materials, colloids, polymers, ionic liquids
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proteins and bacteria need to pass to reach the cell surface. In terms of physical interactions, a repulsive term arises from the need to penetrate through the dense glycocalyx polymer brush, while
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technology, materials science, renewable energy, to chemical engineering processing, material recycling, nuclear chemistry, theory and modelling. Our research at the Division of Applied Chemistry focuses
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, or in the Department of Mechanical and Aerospace Engineering, which houses ongoing work in advanced additive manufacturing of polymer composites, multifunctional ceramics, and metallic laser powder bed
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additives, electrochemical evaluation, and mechanistic studies to advance the fundamental understanding and industrial scalability of CO2-to-methane conversion. Where to apply Website https
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manufacturing Optimization of parameters for additive manufacturing of polymers Expansion of the model to other materials, such as cement and ceramics. . WORKPLACE AND SCIENTIFIC SUPERVISION: The work will be
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on the development of new paradigms for deep generative modeling of polymers. Current representations and polymer design strategies are non-scalable, non-modular, and fail to capture the complex binding patterns and
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, neural interfaces, energy harvesting and storage, and optics. From AI modelling of materials and biological complexity to the design of multifunctional micro- and nano systems, we combine theory