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on physics-based computational modelling. Key activities include crystal-plasticity-based finite-element (CPFE) simulations, unit-cell and microstructure-resolved models, and the development of modelling
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Fellowships Training in joining dissimilar materials using the Friction Stir Welding process and experience in numerical simulations using Finite Elements; to hold a PhD degree obtained in the 3 years
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. Admission Requirements: 3.1.3. Students enrolled in doctorate 3.2.1. Study Area: Physics, Physics Engineering and related areas 4. Other Requirements: Experience in Finite Element simulations
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techniques such as finite element modelling. For example, plastic flow of steel is measured experimentally and the data embedded in the model to handle aspects where fundamental plasticity models struggle
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tests and column tests Active laboratory work and coordination of experimental activities Advanced 3D nonlinear finite element modelling using Abaqus, including ambient and fire conditions Model
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ministerial journal list, 4) experience in numerical modeling of single-step sintering processes of thermoelectric modules using the finite element method, 5) experience in 3D design and experimental
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acting on operators, such as computational methods for fractional powers of differential operators. A particular emphasis will be on the development, implementation and error analysis of finite element
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in hydrodynamic modeling tools (e.g., WAMIT, ANSYS AQWA, OrcaFlex) and finite element analysis software (e.g., Abaqus, ANSYS). Experience with stability and mooring system design. Strong analytical
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, structural optimization, coupled problems, and experimental mechanics, with applications to metals, polymers, fibrous materials, and granular materials. Numerical methods, such as the finite element method
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implant positioning influence stresses in the bone and risks such as wear, impingement, and dislocation. By combining innovative motion analysis techniques with finite element modelling, the research will