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, biointeractive materials. Project Background The Walther Lab at JGU Mainz pioneers life-like materials and systems at the interface of systems chemistry, chemical reaction networks, DNA nanoscience, artificial
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, and how strain rate influences material behaviour. The resulting experimental data will be used to validate numerical models and contribute to certification by analysis of future composite structures
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | 2 months ago
benefit from the hardware and software resources of the lab experimental platform. The student will be supervisedthroughoutthePhD by Margot Vulliez and David Daney, researchers specializing in modeling and
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of machine-learning-infused atomistic modeling techniques and their application to important problems in chemistry, physics and materials science. Together, you will help advance a key scientific
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instabilities to enhance actuation authority. The work will combine design, modelling, fabrication, and experiments to deliver design principles for instability-enabled electroactive morphing. The PhD will
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on the WMG pilot run-out table. The project builds a four-layer signal chain: (1) a composition-parameterised electromagnetic forward model valid across industrial steel grades at 500–950°C; (2) a multi
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they negotiate changes to their work and business models. Through ethnographic fieldwork you will research what practitioners value within the activity of making creative work, and how that changes
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. These computational models can provide crucial mechanistic insights into the key parameters governing these processes, inform targeted in vitro experiments, and help design better biomaterials and TE strategies
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-like dynamics in synthetic systems remains a major challenge across physics, chemistry, biophysics, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D
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Impact – From climate modelling and sustainable energy to advanced materials and biomedical systems, HetSys projects apply cutting‑edge computational and mathematical techniques to problems with global