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@ IDRIS, ADASTRA @ CINES) to carry out numerical simulations. The doctoral student will be registered at the École Doctorale d'Astrophysique d'Île-de-France (ED127) and will have to follow the mandatory
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This PhD project is at the intersection of electromagnetism, numerical methods, and high-performance parallel computing, with application towards the design and optimisation of integrated circuits
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to the team on national high-performance computers (e.g. Jean Zay @ IDRIS, ADASTRA @ CINES) to carry out numerical simulations. The doctoral student will be registered at the École Doctorale d'Astrophysique
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simulation of the LAFP process while accounting for the aforementioned complexities. In this project, you will: Develop and implement a multiscale – both spatial and temporal – numerical framework that enables
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simulation of the LAFP process while accounting for the aforementioned complexities. In this project, you will: · Develop and implement a multiscale – both spatial and temporal – numerical framework
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numerical simulations using a GRMHD-PIC technique, which allows to track VHE ions on the fly. These simulations will be supplemented by cutting-edge analytical methods for injecting particles onto the grid
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about the development of simulation tools. Prior research experience in semiconductor physics, numerical methods, and programming in C++ is highly desirable. We are looking for a motivated scientist who
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calculation of wave propagation phenomena (e.g. acoustics, earthquake waves, structural dynamics) Development of numerical methods for structural mechanics (beams and shells) Interaction of CAD and simulation
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Université de Versailles-Saint-Quentin) specializing in high-performance computing and numerical simulation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UAR3441-JERCHA-006/Candidater.aspx
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mixtures. It will leverage multiphysics Direct Numerical Simulations (DNS) with detailed chemical kinetics and coupled thermal radiation to improve chemical mechanisms for NH₃–H₂. The influence