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employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. Research project on Design, synthesis, and multiscale
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, enhanced damage tolerance, and superior performance under complex and uncertain loading conditions. This PhD project aims to surpass conventional periodic design by developing a new generation of multiscale
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structures but also free energies. The work sits at the interface of statistical mechanics, molecular simulation, and deep generative modeling, and is embedded in SIMPLAIX, a research initiative on multiscale
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interpret novel two-dimensional multiscale mathematical models of mechanical regulation of plant development and regeneration in close collaboration with members of the GreenTE consortium, in particular
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advanced multiscale mechanical–transport modelling with experimental validation to quantify and predict the structural evolution of both the selective skin layer and the polymeric support layer under
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various aspects of the process—such as thermodynamics, dissolution/growth kinetics, growth interface dynamics, and the generation and elimination of defects—through a multiscale and multiphysics approach
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structure and hydrogen migration pathways. Integrated Approach and Modeling Framework The project is based on a multiscale observation strategy that combines dense nodal seismic networks, distributed acoustic
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for Molecular Sciences (HIMS) at the University of Amsterdam. Our research focuses on the development and application of advanced molecular simulation and multiscale modelling methodology to obtain novel and
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About the project: Multiscale Molecular Dynamics: a mathematical exploration of coarse-graining Supervisor: Dr Thomas Hudson, University of Warwick When applied to molecular dynamics simulations
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suboptimal thermal performance and energy inefficiencies. This programme focuses on the development of multiscale models that will improve our understanding of how microstructural changes in materials and