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methods and scientific computing is required. Prior experience with high-level finite element packages such as FEniCS or Firedrake will be especially helpful. This assignment is for one year, with
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using asymptotic methods. Numerically solving the models using, for example, the finite element method. Collaborating with experimental researchers to validate and refine the modelling. Contributing
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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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designing for the complete product life-cycle. Topics in parametric design and design optimization using Finite Element Analysis (FEA), Computer-Aided Design (CAD), and Manufacturing (CAM) are introduced in
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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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closely related field. Knowledge of human biology especially skin with experience developing biological application an additional plus Experience coding / applying finite difference, finite element or
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experience developing biological application an additional plus Experience coding / applying finite difference, finite element or finite volume methods Experience using optimization software such as GAMS
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experience in microstructural analyses. Familiarity with mechanical testing procedures and, ideally, experience in numerical simulation (e.g., finite element methods). Strong analytical skills, an independent
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utilise numerical techniques including the finite element method to describe biofluid flow and deformation in the human brain tissue. Parameters are inferred from clinical data including medical images
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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