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Field
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to understand deformation-controlled hydrogen systems by integrating seismic observations and THMC physical modeling at three complementary sites: Comminges (primary target), Oman, and New Caledonia. The central
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. Investigation of tool wear and damage mechanisms under severe thermo-mechanical loading conditions. Numerical modelling of crack initiation and crack propagation in tools using advanced fracture mechanics
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accurate modelling and understanding of damage at this length scale can help inform life assessment at the component scale. Current models are able to capture grain-averaged mechanical behaviour effectively
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with natural systems. This interdisciplinary project will combine laboratory experiments, numerical modelling, and advanced artificial intelligence (AI) techniques to improve predictions of the coastal
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impact. Furthermore, working at AMADE is not only a professional opportunity, but also being close to a stimulating environment with all our research lines in simulation and numerical modeling
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scales through advanced numerical modeling. Our research foci are located at both plate boundaries and within the plate interiors, inside the deep mantle and at the surface. To approach our aims, we
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of thermal effects on force generation, material properties, and geometric clearances. Validate numerical models against experimental results and data available in the scientific literature. Disseminate
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and numerical models that predict material deformation, force transmission to cells and the resulting changes in cellular mechanics and signalling. The position is primarily computational, but a
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PhD Scholarship Non-persistent rock discontinuities, rock bridges, and rock mass stability: numerical modelling and analysis. Water flow in rock discontinuities, discontinuity mismatching, and shear
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-vapour experiments, gaining hands-on experience in optical-setup design, III–V semiconductor physics, atomic physics, quantum optics and numerical modelling. The research targets scalable components