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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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response under representative loading conditions, while simulations will provide a framework for predicting long-term performance. By integrating experimental and numerical approaches, the research will
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the IRDS roadmap for metrology . The project will involve mathematical modeling, numerical simulations and, potentially, measurements. You will mainly do your programming work in a mixed programming
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, which is time-prohibitive and therefore impractical for large parts. This project therefore aims to develop numerical methods that enable the efficient simulation of the LAFP process while accounting
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. This project explores the complex physics of plasma-material interactions, powder ablation, and plasma turbulence in fusion devices. The aim is to develop a novel numerical simulation tool that integrates DTU’s
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institutions. PhD topic: Numerical simulation techniques for the analysis of arrays of RTD oscillators Further details on the doctoral programme and the individual PhD topics can be found here . The aim