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and hardware. Preferred Qualifications: Experience with solid modeling and finite element analysis codes as it relates to electromagnetic interactions of coil assemblies, the modeling of cryogenic
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developing finite element simulation libraries with comprehensive documentation and user-friendly interfaces Experience in software integration of advanced numerical solvers and imaging and simulation tools
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professional experience to include: Non-linear finite element modeling and simulation Design and testing of roadside safety devices Preferred Qualifications LS-DYNA, HyperMesh, Solidworks, computer programming
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materials. The primary focus of this work is on mechanical characterization, microstructural analysis, and finite element analysis (FEA) and artificial intelligence (AI)/machine learning (ML) modeling
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fundamental, and expert knowledge of CAD and finite element design is absolutely needed (preferably Creo Parametric and Ansys). A strong understanding of accelerator systems or similar complex, large-scale
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techniques and associated tools (examples include, but are not limited to machine learning, density-functional-theory, materials informatics, finite-element modelling, phase-field modelling), and demonstrated
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background in computational methods, including finite element analysis and other advanced modelling techniques, would be advantageous. The successful candidate will be expected to deliver research-informed
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calculations. Experience with reactor system codes such as RELAP5 or other CFD experience. Experience with finite element codes such as COMSOL or ANSYS. Preferred Qualifications: Experience in a research and
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examples include using finite element and classical atomistic modeling to study nanoindentation, and using density functional theory and semiempirical tight binding to study the deformation, band structure
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and utilize equipment such as high- and low- field NMR/MRI systems and non-traditional systems such as single-sided magnets. In addition to this equipment, techniques such as finite-element modeling and