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Post-Doctoral Associate in Sand Hazards and Opportunities for Resilience, Energy, and Sustainability
of the following areas: Large-deformation numerical modeling (e.g., Coupled Eulerian-Lagrangian (CEL), Material Point Method (MPM), or advanced Finite Element Methods). Physical modeling of tunnel
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and specialist in the areas of composite materials, structural mechanics, optimisation and finite element analysis. Apart from computational expertise, the role holder will also be comfortable in
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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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with the finite element code code_aster and the PSHA code openquake as well as knowledge in Engineering seismology are an appreciated plus. Website for additional job details https://emploi.cnrs.fr
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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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colleagues to understand the stress distribution at the bone-implant interface through finite element analysis. Work collaboratively with other colleagues to validate finite element models based on in situ
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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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simulation and optimisation. Programming (MATLAB, Python, C++, Fortran) for model development and Finite Element simulations. Statistical experimental design and analysis of data (i.e Design of Experiments and
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to the prospective employee should include: • Strong background in structural engineering. • Background in numerical modelling for structural analysis using the finite element method. • Experience in computer
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automated simulation and analysis workflows 4. Developing a detailed mechanistic understanding of the interactions between oxidative and reductive processes in metal-ion batteries 5. Communicating scientific