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of solar physics Experience in modelling and simulations Experience in using parallel computing facilities Desirable: Experience with kinetic plasma simulations. Knowledge of computational methods
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, applied math, computational math, or a related field at the time of the appointment. Experience in computational plasma physics, numerical methods, and HPC. Ability to function and thrive in a collaborative
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genomic methods to investigate the extent, and the timescale of parallel genome evolution associated with repeated transitions to parasitic lifestyle. They will have a head start since the genomic sequence
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through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Cyanobacteria play a major role in our
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to the greatest extent possible. Since we require the solutions in hand pure theory can only take us so far, however. For the rest we rely upon advanced computational methods, informed by numerical analysis
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experience in intensive and parallel computing (Fortran, C, C++, Python). Applicants with a previous background in at least one of the following techniques, • Quantum Monte Carlo (either DQMC, PQMC, DCA, SSE
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#, FORTRAN, Perl, Python) as well as parallel computing; Ability to work effectively in a team environment with a multidisciplinary group of scientists Ability to conduct research with limited supervision Good
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13 Feb 2025 Job Information Organisation/Company Télécom Paris Research Field Computer science » Other Researcher Profile Recognised Researcher (R2) Positions Postdoc Positions Country France
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) that independently adapted more than fifteen times to live in symbiosis with termites. The successful candidate will apply comparative genomic methods to investigate the extent, and the timescale of parallel genome
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, as well as numerical methods for partial differential equations, especially finite element methods, both theory and implementation. A successful candidate will work in the topics of interests, which