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experiments. For example, a mixing model development for EOS, transport properties and opacities will be added, and compare with experiments with laser interaction on gaz jet or burried layer, or experiments
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their impact on processor microarchitectures. These experiments suggest that clock glitches induce sampling faults on sensitive sequential elements, but the corresponding fault models remain to be formally
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experience and/or skills: - Experience in simulation/emulation, especially with QEMU - Knowledge in Linux kernel development; - Experience in other scripting languages (bash, tcl) would be a plus. - Knowledge
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and numerical modelling; · Experimental thermal or fluid systems; · Scientific programming and data analysis. Experience with absorption systems, ammonia–water mixtures, injectors/ejectors or phase
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Physics, Applied Mathematics, or Computer Science, with experience in deep generative models (VAE, diffusion) and Python/PyTorch. Applications from statistical physicists are welcome. STILL HESITATING? The
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physics, microwave engineering, electrical engineering, physics or a closely related field. The ideal candidate will have: A solid background in plasma physics and/or microwave diagnostics; Experience in