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Field
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with benefits. Qualifications 3 or more years Mechanical design experience focused on cost and manufacturability (Required) Experience in finite element analysis and mechanical simulation (Required
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of developing novel computational frameworks that seamlessly integrate machine learning techniques with established methods in computational mechanics, such as the Phase-field Finite Element Methods. Potential
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; expertise in computational mechanics and finite element simulation and modeling; expertise in laboratory and multi-scale experimental testing at the material, component, and structural levels. The candidates
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below, attaching as a separate document: Essential A PhD in materials science, photovoltaics, photonics or a closely related discipline Expertise in optical modelling using finite element and ray tracing
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to assess the overall efficiency. Modelling the overall behaviour of the device will be required, through finite element modelling (Comsol). The majority of the work will nonetheless be experimental, by
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structures i.e. in aircrafts, containing adhesive and disband damages. The research activities will initially include one or more of the following areas: Advanced finite element modelling of disband damaged
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design practice. Experience and knowledge related to quantitative modeling of physical systems, such as finite-element techniques. Experience with very large research or industrial facilities. Programming
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Biomechanics (e.g., Finite Element Analysis, Computational Fluid Dynamics). (5) Biofabrication of hydrogel-based scaffolds. Cell-seeding of porous polymer (3D printed) scaffolds. (6) Support of animal model
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, press/shrink fits, reliability and uncertainty analysis, failure theories, fatigue, and fracture mechanics. Computational methods of analysis, such as finite elements analysis are covered as well
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such as finite element analysis, computational fluid dynamics or tribology. Applicants with an interest in thin film lubrication, wear modelling, fluid-structure interaction and/or the applications on human