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to the prospective employee should include: • Strong background in structural engineering. • Background in numerical modelling for structural analysis using the finite element method. • Experience in computer
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vacuum simulation tools (e.g., Molflow, Monte Carlo gas dynamics codes). Familiarity with ANSYS or similar finite element analysis (FEA) tools. Experience leading or organizing small engineering or
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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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Engineering/Materials Science. You will also have good experience of finite element analysis techniques, programming (C++/FORTRAN and Python) and composites manufacturing and production processes. Appointment
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Manufacturing ME 335 Fluid Mechanics II ME 352 Engineering Analysis III ME 450 Finite Element Analysis ME 460 Automation and Robotics in Manufacturing ME 462 Structure Texture and Properties of Engineering
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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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colleagues to understand the stress distribution at the bone-implant interface through finite element analysis. Work collaboratively with other colleagues to validate finite element models based on in situ
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engineering, finite element modelling • Probability theory, stochastic process modelling, statistical tools • Artificial Intelligence and Machine learning approaches • Programming (python) A first experience
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, research, and outreach elements. Direct line management will include the two project bibliographers and any other project staff appointed into Research Collections (e.g. Fellows, Research Assistants
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. Develop multi-physics material models, implement them in a finite element code, and conduct experimental characterisation. The balance between modelling and experiments can be tailored to your interests