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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 21 hours ago
assimilation Integration (JEDI) framework for atmospheric data assimilation Develop machine learning foundation models based on simulated observations from high fidelity atmospheric simulations for developing
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direct support to NASA’s Space Radiation Program. The selected candidate will conduct research focused on developing computer models to simulate the interaction of high charge (Z) and energy (HZE) ions
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of the EPSRC CDT in Developing National Capability for Materials 4.0, with the Henry Royce Institute. ‘Agent-based’ modelling (ABM) simulates large numbers of autonomous yet interacting entities and in Sheffield
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activity concerns the development, implementation, and analysis of continuous stochastic mesoscale models for the description of phase change processes, such as evaporation, condensation, and nucleation. In
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will focus on diffuse interface models based on the Navier–Stokes–Korteweg equations. Activities include the study of droplet and bubble dynamics in multiphase flows. Numerical simulations will be
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simulations provide a gold standard method for quantifying radiation exposure, offering precise modeling of particle interactions with matter. Through this approach, it is possible to characterize exposure
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of this research is to develop improved methods for updating simulation models for decision-making, through integrated knowledge of reservoir engineering and geology. The fellow will work within the scope
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Inria, the French national research institute for the digital sciences | Villers les Nancy, Lorraine | France | 3 days ago
Framework Programme? Not funded by a EU programme Reference Number 2026-09703 Is the Job related to staff position within a Research Infrastructure? No Offer Description Our team is working on imitation
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Method (DG) for higher-order temporal discretisation. It is necessary to implement models of various Wells and impulse turbines. The project tasks are: Development of a simulation code in Julia
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models developed as surrogates for the computationally expensive KMC simulations. The existing workflow will be extended to include the additional photo(electro)chemical variables. Where to apply Website