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developed jointly by LEM3 in Metz and the BIOS laboratory in Reims. The former, with its expertise in simulation and ex vivo experimentation, draws on the clinical expertise of the latter while incorporating
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quantum dots. In particular, based on our recent result in small arrays, we aim at exploiting coherent control of spin qubit in larger arrays to perform quantum simulation or algorithm. Therefore
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of planetary systems. The successful candidate will contribute to experimental studies simulating interstellar ice environments under controlled laboratory conditions, using advanced radiation sources including
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at the interface between two teams with expertise in plant cell biology and plasmodesmata (Bordeaux, Bayer) and in protein/membrane interaction by molecular dynamic simulation (Taly, Paris). To gain mechanistic
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/simulation programming - characterisation of various samples - supervising student (intership, PhD candidate) - writing articles - taking part in conferences This work will take place at ISMO within
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resistance of these magnets in an aqueous atmosphere and over a temperature range simulating that seen by magnets used in means of transport. Corrosion resistance will be assessed with regard
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oil reserves of the coalition together with its partners'. This will provide a first indication of the energy security that the partners would bring to the coalition. The researcher would also simulate
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framework currently under submission, which serves as the foundation for this research. The post-doc will enhance this framework by developing advanced methodologies, primarily using gem5 simulator as the
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molecular dynamics simulations with LAMMPS, and data curation. Scientific context: Our current understanding of polymer viscoelasticity is founded on single-chain models [2]. Such models draw on the fact
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accessible observables in attoscience. The postdoctoral researcher will carry out methodological developments and advanced numerical simulations to explore these ultrafast dynamics in exotic systems. -Develop