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for implementation in finite element simulations of material failure. These models will be applied to study the ductile-to-brittle transition in HSLA steels. Qualifications Requirements A doctoral degree or an
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related field in hand by May 2026. Preferred Qualifications: Experience in Thermal Spray Materials/Processes/Characterization/Modeling. Experience in Solid Mechanics/Thermomechanics/Finite Element Analysis
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QUALIFICATIONS: • PhD in Electrical and Computer Engineering, Mechanical Engineering, Physics, or a closely related field. • Demonstrated expertise in MEMS/NEMS design and modeling, including finite element
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, detectors, tunable laser sources, RF equipment). 3. Numerical Modeling & Device Design Perform theoretical design and finite-element modeling of electromagnetic fields, spatial phase profiles, and optical
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related field in hand by May 2026. Preferred Qualifications: Experience in Thermal Spray Materials/Processes/Characterization/Modeling. Experience in Solid Mechanics/Thermomechanics/Finite Element Analysis
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or acoustic forces and torques, unconventional materials, unpolarised fields, or developing experimentally testable theoretical predictions. 4. Experience with finite-element, FDTD or commercial
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related field. Experience with finite element simulations and developing constitutive models. Knowledge of high temperature creep crack growth. Knowledge of engineering design codes such as the ASME Boiler
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well as the physical and numerical modelling including the finite element modelling, confirmed by publications. Experience, confirmed by publications in conducting laboratory experiments and testing, including design of
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-domain, finite element, or method of moments, and you use these tools to translate ideas into robust antenna concepts. It is natural for you to work with advanced antenna architectures, for example
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to demonstrate and translate these devices to practical medical applications. Core Responsibilities: Simulation and design of piezoelectric ultrasonic transducers using the finite element method (FEM)Conduct