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-destructive testing (NDT) techniques for structural materials is desirable. Experience with structural modelling and analysis tools (e.g., finite element modelling, structural simulation) is desirable. Good
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of their operating conditions make it challenging to predict component health under poorly represented or previously untested conditions. Modern prognostics approaches rely either on physics-based models or on data
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. This postdoctoral position focuses on developing high-fidelity Finite Element Method (FEM) simulations to characterize mechanical properties and deformation behavior in advanced packaging applications. It involves
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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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AQWA or equivalent) and finite element analysis software (e.g., Abaqus, ANSYS). Experience with stability. Experience in designing connectors or mechanical interfaces is a plus. Familiarity with 3D
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of precursor transport, heat distribution, the nucleation, and growth of thin films in atomic layer deposition (ALD) reactors. The range of simulations focuses on finite element methods and can include Monte
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Research Assistant (m/f/d) with a Ph.D. in Civil Engineering, Engineering Physics, Physics, Mathemat
analysis of parameterized finite‑element models. By integrating data‑driven and FEM‑based approaches, a hybrid model is developed that accurately represents physical relationships while providing real‑time
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presents a challenge, especially in a highly non-linear case. The aim of this project is to advance further one of the methods to handle problems with propagating interfaces – the cut-finite-element method
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of the design using both finite element packages and mathematical tools. Oversee modelling work of others on the team in particular mentoring junior members of the team. The design and modelling work will include
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fibers, resins, adhesives, and other constituent materials Proficiency with modeling approaches for composites such as solid mechanics, micromechanics, laminate plate theory, and finite elements methods