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Python and/or object-oriented programming Basic knowledge of the theory and methods in the Finite Element Method (FEM) or similar methods is advantageous Good language skills in English, German is
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: Course number and title: MIE320H1 - Mechanics of Solids II Course description: Three-dimensional stress transformation, strain energy, energy methods, finite element method, asymmetric and curved beams
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expertise in interdisciplinary mathematical modelling, inverse problems, finite element methods (especially in complex and applied settings), machine learning techniques in scientific and industrial
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satisfactory performance. Essential Duties Perform applied research duties, including advanced finite element modeling and simulation, engineering design and analysis, crash testing, and project coordination and
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computational mechanics and numerical modeling methods such as finite element analysis (FEA) and multi-body dynamics for hydro-mechanical drilling systems Proficient in structural dynamics modeling and system
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outlined in the Job Purpose, and a comprehensive theoretical and practical knowledge of the mathematical theory of continuum mechanics and associated finite-element numerical methods implemented in ABAQUS
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with other disciplines for developing deeper insight into the physical behavior of materials and structures, such as through combinations of finite element methods with machine learning. Tasks also
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public speaking ability. Experience with finite element method and solid mechanics necessary. Past TA duties must include marking or demonstrating or tutoring. Proficiency in English required as assessed
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impact. You have experience in dynamic analysis of aeroelastic structures, modelling of flexible structures (in MATLAB, Python or similar), and conducting Finite Element Analysis. You have excellent oral
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for: The development of multi-scale models of polyelectrolyte gels using asymptotic methods. Numerically solving the models using, for example, the finite element method. Collaborating with experimental researchers