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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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of the position. The successful candidate will have a solid theoretical foundation in one or more of the topics: Computational Mechanics, Finite Element Analysis (FEA), Numerical Optimization
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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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assigned. (2%) Required Education and Experience Master’s Degree in relevant field of engineering 3 years of related professional experience to include non-linear finite element modeling and simulation
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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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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
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experiments on structural frames, members, and components Conducting thorough investigations utilizing finite element analysis Assessing seismic performance through macro modeling of structures Disseminating
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formulation, at a continuum-scale, of a suitable poro hydro-chemo-mechanical model to describe the above-mentioned phenomena and the numerical implementation of the same, within the LAGAMINE Finite Element code
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(including, but not limited to, phylogenetic analysis, morphometrics, or finite elements modelling) are expected. Extensive participation and / or experience in leading fieldwork is expected. The successful
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programming skills (C++ or Python) and experience with numerical modeling (for instance, Finite Element Analysis or Computational Fluid Dynamics); A strong interest in—and willingness to learn and perform