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, tides, currents). 2. Finite Element and Structural Modeling Develop and implement finite element models to evaluate structural integrity under load conditions. Perform stress, strain, and fatigue analysis
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, steel tubular joints, fatigue, steel fracture, experimental testing and finite element analysis. Applicants are invited to contact Prof. Zhao Xiao Lin at telephone number 2766 4474 or via email at xiao
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-physics systems, particularly thermal-mechanical analysis in metal additive manufacturing. Familiarity with finite element/finite volume methods, high-performance computing, and simulation data processing
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theory of the finite element method is an advantage. Competence in the theory of numerical optimization is an advantage. Experience from high-performance computing is an advantage. Applicants must be able
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that the master's degree has been awarded. Programming skills, e.g., Fortran or C++, is a requirement. Competence in the theory of the finite element method is an advantage. Competence in the theory
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application of finite element modeling (3D FEM) and discrete element modeling (3D DEM) for structural analysis of transport infrastructures, incorporating alternative materials such as steel slags (EAF) and
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to one component of the R35-funded mechanobiology project, which may include: - Computational modeling and quantitative analysis of multicellular morphogenesis. - Experimental studies using multicellular
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Norwegian). Desired qualifications Good experience/knowledge in electrical machines, synchronous generators, applied signal processing, applied mathematics, and finite element analysis. Programming experience
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mathematics, and finite element analysis. Programming experience in coding e.g. Python, or MATLAB Writing skills for research papers. Experience in applied machine learning, fault diagnosis, laboratory testing
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structure for integration into cardiac catheters. Conduct finite element analysis (FEA) to simulate force/strain responses under clinical conditions. Assist in the setup and execution of in-vitro and in-vivo