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the Warsaw University of Technology/the Centre for Advanced Materials and Technologies, CEZAMAT | Poland | about 16 hours ago
properties of various systems involving atomistic and continuous methodologies such as: (i) ab initio methods in the framework of density functional theory (DFT) and employing various numerical packages, (ii
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the Warsaw University of Technology/the Centre for Advanced Materials and Technologies, CEZAMAT | Poland | 3 days ago
the framework of density functional theory (DFT) and employing various numerical packages, (ii) tight-binding methods, (iii) valence force field methods, (iv) effective hamiltonians for electronic and magnetic
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opportunities for parallelism of the completion process, highlighting the potential for significant speedup in computations. Job responsibilities Research and Development: Conduct research to develop novel
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targeting large-scale computational resources that involves numerical methods, parallel algorithms, inter-process communication and synchronization, and at least one traditional high performance computing
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Is the job funded through the EU Research Framework Programme? Horizon Europe - MSCA Reference Number DC5 Marie Curie Grant Agreement Number 101225914 Is the Job related to staff position within a
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offer 9 fellowships and participate in numerous graduate school and the MD/PhD program of the School of Medicine. Why work for the University? We have AMAZING benefits and offer exceptional amounts
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these nanocomposites, we are looking for a postdoc to further develop high performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core
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on methods development in machine learning, uncertainty quantification and high performance computing with context of applications from the natural sciences, engineering and beyond. It is embedded in
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Knowledge of Matlab, and web-based technologies is of advantage Knowledge in using high-performance compute architectures Experience in implementing and optimizing scientific numeric analysis methods and
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plasma. The main methods used are computer simulations for studying dust dynamics and analysing in situ measurements by spacecraft that carry a dust detector on board. We collaborate with researchers in