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Post-Doctoral Associate in Sand Hazards and Opportunities for Resilience, Energy, and Sustainability
of the following areas: Large-deformation numerical modeling (e.g., Coupled Eulerian-Lagrangian (CEL), Material Point Method (MPM), or advanced Finite Element Methods). Physical modeling of tunnel
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divisions and users. Our core tasks include mechanical design, feasibility studies, finite element analysis (mechanical, thermal, and vibrational/modal), and contributing to design review meetings with
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Element Method. Numerical methods. Ship/rigid body dynamics. Marine wind turbines. Anchoring systems. Professional Experience: Analysis and simulation of Offshore Wind Turbine Platforms: FOWT. Code
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are looking for a strong candidate to work in a team on the interdisciplinary StochMan project that integrates elements of stochastic analysis, geometry, partial differential equations, and computational
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advanced modelling approaches—such as finite element analysis —to capture the nonlinear, multi-physics nature of soft materials. By integrating experimental data and validating simulations, your work will
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Engineering, or Aeronautical Engineering. - Knowledge of static and dynamic structural analysis using finite element software. - Knowledge of programming languages applied in engineering. - Experience in
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analysis processes and simulator environments. -Knowledge of modeling and analysis using finite element tools. LanguagesENGLISHLevelExcellent Research FieldEngineering » Electronic engineeringEngineering
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expertise in the analysis and design of concrete structures. Advanced proficiency in Finite Element Modelling (FEM) using tools such as Abaqus, ANSYS, RFEM, SAP2000, MIDAS or equivalent. Solid understanding
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micro-electro-mechanical device (MEMS) dedicated to the manipulation and measurement of micro-samples, the coupled gripper-sample modelling using numerical analysis and finite element methods, and the
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are seeking two motivated researchers or engineers with expertise in finite element programming to join an ambitious project modelling the complete neuromuscular dynamics of Drosophila larvae. This position