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and numerical. Experimental component The main objective will be to leverage a newly developed automated fiber preparation device, recently designed at the laboratory, to perform specific mechanical
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Research FieldEngineeringEducation LevelMaster Degree or equivalent Skills/Qualifications - excellent knowledge in the field of finite element methods in general and especially for computational
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both diffusive and nondiffusive simulations including hydrodynamic transport effects with a Finite Element solver. The final goal is to identify deviations from macroscopic diffusion in a range of
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electromechanical systems; - Knowledge of pneumatics; - Knowledge of the finite element method Minimum requirements: - Master's degree average of 16 or higher. - Professional experience in the creation
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VALIDATED IN CLINICAL SETTINGS. To develop the following tasks: Development of a predictive model based on finite element simulations of vertebral metastasis. Simulation of different configurations
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publications (45%); - Experience in CFD simulation and finite element software for the analysis of building components; energy and thermal simulation; knowledge of digital technologies for geometric definition
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SolidWorks and/or Inventor software – 4 points; no proven experience – 0 points. d) Proven experience in finite element model development in industrial projects using Abaqus software – 4 points; no proven
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and specialist in the areas of composite materials, structural mechanics, optimisation and finite element analysis. Apart from computational expertise, the role holder will also be comfortable in
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procedures for multi-physics and multi-scale finite element simulations in porous media. About us The Doctoral student position is to be placed at the Division of Material and Computational Mechanics , which
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tools, optical imaging and finite element modelling of flows in poroelastic media. At the Matsunaga lab, our mission is to understand and characterise how blood and lymphatic barrier functions