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of solids and the finite element method and/or spectral solvers Practical experience in at least one programming language (preferably Python) and experience with the use of Unix/Linux operating systems
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: Task 1: Damage survey and mapping, based on the on-site surveys, and processing of the existing monitoring data. Task 2: Develop and calibration of a 3D numerical model, based on the Finite Element
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mechanical components optimized for structural integrity and cost efficiency using analytical and numerical modelling computer aided techniques such as Finite Element Analysis – ANSYS; selection and
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by working to develop novel algorithms on finite element method, isogeometric analysis, geometric modeling, machine learning and digital twins to study various applications such as computational
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methodology for steel fibre reinforced concrete structures assisted by nonlinear finite element analysis and artificial intelligence tools”, project number 16782, operation code COMPETE2030-FEDER-00796500
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-aided design (CAD) experience and demonstrated proficiency. Finite-element analysis (FEA) experience and demonstrated proficiency. Required Documents Cover letter summarizing your relevant experience and
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and wave phenomena. Experience designing and tuning dynamic systems for sensing applications. Experience with linear dynamic system analysis and advanced computer modeling using finite elements
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or tutoring. Proficiency in English required as assessed by the instructor. MECH 321 - Mechanics of Deformable Solids Requires public speaking ability. Experience with finite element method and solid mechanics
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for simulating such complex geometries. For example, the memory and computation time required become prohibitive with standard “black-box” finite element methods. The objective is therefore to develop a dedicated
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dynamics, finite element analysis, and material behaviour. Eligible applicants: Students who are enrolled, or who commit to enroll by the time of hiring, in a PhD degree-awarding study programme offered by a