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functions associated with the failure mechanisms using high-fidelity Finite Element Analysis. Perform sensitivity and uncertainty analysis to uncover the most significant variables in the derived limit states
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–structural models and/or FEM workflows). Develop and validate hydrodynamic load and structural finite element model against experimental results, investigating uncertainties and sensitivities. Assess
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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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mechanics Computational modelling and finite element analysis Active dissemination of the results in scientific articles and participation in national and international conferences is integral to the job
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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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structural analysis and design. The candidate must have experience in probabilistic modelling and structural reliability methods, as well as non-linear finite element modelling. Mastering of programming
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mechanics and finite element analysis. Additionally, teaching may extend to other study programs offered at the University. Your competencies We are looking for applicants with independent research-related
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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
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structural engineering is essential. Candidates must have expertise in material modelling, structural analysis and design, including Finite Element Method (FEM) calculations for assessing the structural
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engineering (CAE, e.g., Abaqus, Ansys) software tools commonly used in additive manufacturing, structural design and related research (e.g., parametric design tools, finite element simulation tools, path