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numerical methods such as lattice Boltzmann method, finite difference (element, volume) method, phase-field method. Demonstrated programming skills in one or more languages or platforms, such as Matlab, C
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structural components iv. Data acquisition, instrumentation and monitoring during laboratory testing Perform numerical modelling and simulation, such as finite element modelling, parametric studies, and
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: Experience with Finite Element Analysis with ANSYS and/or SolidWorks Simulation Experience with manufacturing using modern methods include CNC mill and lathe, CNC press brakes, laser cutters, and 3D printers
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to hear from you if you have experience or qualifications in any of the following areas: Experience with Finite Element Analysis with ANSYS and/or SolidWorks Simulation Experience with manufacturing using
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material systems knowledge of numerical methods used in materials modeling (e.g., finite difference methods, finite element methods) ability to perform computer simulations of liquids and liquid crystals
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high grades) in continuum mechanics, the finite element method and the mechanics of fibre-reinforced polymers. *for students with an education earned outside of Sweden, a 4-year Bachelor’s degree is
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-destructive testing (NDT) techniques for structural materials is desirable. Experience with structural modelling and analysis tools (e.g., finite element modelling, structural simulation) is desirable. Good
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that harness mechanics and geometry. As a PhD candidate, you will adopt and extend in-house homogenized constrained-mixture (finite element) models for cardiovascular tissues towards simulating cartilage G&R
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data, a physics-based train–track–embankment interaction model will be developed using finite element (FE) and/or multibody dynamics (MBD) approaches. The model will be used to investigate the mechanisms
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mechanical modelling, such as finite element analysis (FEA). experience of working with healthcare professionals and patients. strong knowledge of statistical methods, including non-parametric methods