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. The postdoctoral researcher will develop numerical simulations that couple viscous flow in a magmatic dike with fracturing of the surrounding elastic lithosphere, building on existing numerical frameworks
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collaboration, dedicated to the direct detection of dark matter. They will contribute to various activities including data taking, data analysis, and Monte Carlo simulations. The candidate will be involved in
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Infrastructure? No Offer Description The postdoctoral researcher will apply the mathematical tools developed by the ANR TeMPlex project team to the study of simulated or observed hydrological dynamics, with
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where appropriate. Building on proof-of-concept simulations previously developed at LJAD, the postdoctoral fellow will perform dimensional analyses of the nonlinear governing equations, followed by new
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-doctoral fellow will work within the framework of the project with the aim of both (1) performing Monte Carlo simulations (with established codes such as GEANT4, MCNP, FLUKA, or others) in order to project
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, and includes the potential to become a co-founder of Lightspring. We are looking for someone with complementary skills in photonics, optical design, numerical simulations of photonic circuits
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partners. He/She will take a leading role in bringing the Large Ingot Simulator (LIS) – a novel lab scale experimental setup, currently at an advanced stage of development – to full operation and will
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ingredients for Earth-like magnetic fields on millennial time scales in dynamo models. The research activities are two-fold. First, the candidate will run numerical dynamo simulations with various combinations
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to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications
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Inria, the French national research institute for the digital sciences | Montbonnot Saint Martin, Rhone Alpes | France | 6 days ago
provide unprecedented quantitative observations, but they still cannot fully access the internal material state (e.g. contact forces, grain deformation). High-fidelity particle simulations represent