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/ Finite Element / Finite Difference Method (SUPG–FEM–FDM) framework to model the evolution of the average saturation of each phase within the aquifer. Applicants should hold a PhD in computational
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, the use of the finite element method (FEM) to predict deformations and residual stresses stands out as a particularly promising approach, as it enables the anticipation of defects and the optimization
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oral communication skills Proficiency in MATLAB, FEM, numeric and analytical skills Competence in laboratory testing design and implementation Publication track record is an advantage Ability to work
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conducting solid oxide cells (E) Skills & Abilities Practical experience of applying computational techniques to the modelling of microstructure in solid oxide cell technologies (e.g. FEM, Gaussian, Bayesian
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Experience with either optical wave propagation simulations (e.g., Finite-Difference Time-Doman, Rigorous Coupled Wave Analysis, FEM) for metaoptics or experimental experience with metaoptics Department