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structural materials (both metals and ceramics), computational solid mechanics, and thermohydraulics. The successful candidate will develop automated frameworks for finite element analysis of high temperature
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. in Materials Science, Mechanical Engineering, Chemical Engineering, or a closely related field. Demonstrated expertise in techniques, e.g., electron microscopy, finite element analysis, or other
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: Research excellence. Ideal candidates will be published research in at least one of the following areas: adaptive finite element methods, discontinuous Galerkin methods, multigrid methods, domain
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various ceramic materials. Demonstrated experience in implementing nonlinear constitutive models in commercial finite element (FE) codes is desirable. You will be expected to collaborate with research staff
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mechanics, FEA, CFD, or equivalent field. Proficiency in one or multiple finite element analysis software (e.g., ABAQUS, LS-Dyna, ANSYS), and in computational fluid dynamic software (e.g., Fluent, CFX
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are formed in bone-conduction. We perform intracochlear measurements of sound pressures and vibrations in human cadaveric ears. We develop circuit network models and finite element models to assist data