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. The current state of the art [5] shows that there are efficient algorithms to factor the reduction L mod p ∈ 𝔽_p(x)[∂] of the operator L modulo p. A first task is to lift this algorithm into a p‑adic
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to develop a new generation of fluorescence microscopy methods aimed at overcoming current limitations in acquisition time for single-molecule imaging. The project explores original strategies for temporal
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(attenuators/shutters, low-profile and highly directional antennas) with a view to surpassing the current state of the art. The work will be carried out at the XLIM laboratory, UMR 7252 CNRS/University
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applications for a two-year postdoctoral position on the topic “War and Peace.” This topic has been identified by CNRS SHS in its foresight exercise as a scientific priority (https://www.inshs.cnrs.fr/fr