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or morphodynamic applications in estuarine and coastal environments.. Proven experience in scientific programming of numerical methods (the finite element method in particular) is a strong asset. Please submit any
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Research FieldEngineeringEducation LevelMaster Degree or equivalent Skills/Qualifications - excellent knowledge in the field of finite element methods in general and especially for computational
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or physics. It is a condition of employment that the doctoral degree has been awarded. Experience from the finite-element method is a requirement. Experience from computational structural dynamics is a
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the Fourier Modal Method (FMM), Rigorous Coupled-Wave Analysis (RCWA), and the Finite Element Method (FEM). A numerical code will also be written to establish the correspondence between the reflection
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to the scoping, delivering and reporting of research projects, as well as engineering tasks such as programming for modelling development, implementing numerical techniques such as the Finite Element Method, and
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, electron microscopy, ultrasonic methods, optical spectroscopies, pump-probe techniques). - Proven experience in modeling planetary internal structure and dynamics, using thermodynamic, finite element, or
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differences, finite volumes, finite elements, spectral methods) - At least one experience in developing a numerical solver for a differential equation or in developing a diagnostic for a numerical simulation
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both diffusive and nondiffusive simulations including hydrodynamic transport effects with a Finite Element solver. The final goal is to identify deviations from macroscopic diffusion in a range of
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Engineering Master Degree in Earth Sciences Experience in programming and high-performance computing (HPC). Experience in finite element numerical modelling and stabilisation techniques. Experience in
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publications (45%); - Experience in CFD simulation and finite element software for the analysis of building components; energy and thermal simulation; knowledge of digital technologies for geometric definition