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rotor motor. You will do research on noise and vibration reduction due to the harmonics injected in electric machine due to switching converters. You will use advanced finite element analysis techniques
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hydrodynamic load and structural finite element model against experimental results, investigating uncertainties and sensitivities. Assess structural static and dynamic performance under 50-year return period
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advanced modelling approaches—such as finite element analysis —to capture the nonlinear, multi-physics nature of soft materials. By integrating experimental data and validating simulations, your work will
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element analysis, or related computational methods is considered an advantage, but is not required Clear motivation to conduct structured research and to produce documented and publishable research outcomes
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research area: Python or C#, robotics, additive manufacturing, finite element analysis, or computational fluid dynamics. Experience in teaching and co-supervising thesis students at university level
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material testing, and simulation tools such as musculoskeletal modeling, multibody dynamics, finite element analysis and numerical methods in general. The Department of Materials and Production (MP) is a