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particles) and to the NanOx model for biological dose prediction developed at IP2I. As part of your mission, you will: • Develop the low-energy Monte Carlo code (Geant4-DNA) by transferring cross sections
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the merger of five UMRs located on the university campus of Orsay. The research themes of the laboratory are nuclear physics, high energy physics, astroparticles and cosmology, theoretical physics, particle
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dynamics simulations, to help advance theories describing the scaling behavior of polymers. This project will employ such generic, particle-based, models to simulate polymer dynamics in the search
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the Coulomb barrier. The VAMOS spectrometer can be coupled to gamma-ray or charged-particle-detector arrays allowing many physics opportunities, ranging from nuclear dynamics to the nuclear structure
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features to behavior using GLMMs/Bayesian models; conduct sensitivity and robustness checks. * Method validation: benchmark alternative pipelines (filters, burst detectors, forward/inverse models); perform
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the strong light-matter coupling, giving rise to the formation of exciton-polaritons, which are the quasi-particles providing interactions in this system. Carry out theoretical research in topological physics
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clouds are key players in tropospheric chemistry. These tiny particles suspended in the air, with a radius ranging from a few nanometres to tens of micrometres, impact atmospheric composition, represent
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the external porous medium (chemical nature, particle size, specific surface area, morphology, etc.) on the debinding process • Improve understanding of the appearance of defects during this stage. Reducing
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the clusters using microfluidic tools and steps of controlled particle suspension drying, ii) studying in details the structure and the linear optical properties of the clusters (absorption and scattering), and
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here is the prediction of the composition of communities of marine entities (zooplankton, marine snow particles, and coral reef fishes) from environmental data taken around the point of the biological