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carbon capture simulation through advanced modelling tools—CapSim”. This project aims to improve CO2 capture simulation technology by apply state‐of‐the‐art techniques for evaluation of uncertainties in
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Leticia Hosta-Rigau at DTU Health Tech. The group works across materials science, organic/polymer chemistry, and molecular and cell biology. Our focus areas include drug delivery, cell mimicry, and tissue
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Leticia Hosta-Rigau at DTU Health Tech. The group works across materials science, organic/polymer chemistry, and molecular and cell biology. Our focus areas include drug delivery, cell mimicry, and tissue
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–property–performance simulation platform, and (iii) a theoretical framework for design of AM-defect tolerant microstructures. The focus of the current postdoc position will be on applying all
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. However, powerful as it is, MagTense is at present limited in its capability to model complicated magnetic systems for two reasons. First, all magnetic sources in a simulation interact, leading to
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of the zwitterionic polymeric binders. The work will entail polymer characterization, electrode casting, electrochemical characterization, microstructural investigations using spectroscopy, electron microscopy, X-ray
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be guided by molecular dynamics simulations to understand the structural origin of the observed variations in mechanical properties. Experimental testing methods will also need to be developed
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The postdoctoral researcher will work on a variety of projects within topology optimisation for multiphysics problems. The postdoctoral researcher will join the ‘Multiphysics Simulation and Optimisation’ (MSO