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are: - Analytical development of new formalisms in relativistic quantum chemistry - Implementation in the open-source/open-access PySCF platform (Python) - Application to model systems - Supervision of students
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the dynamics and statistics of topological defects in active systems, using continuum theories of active ordered states. This project will require both numerical and analytical work. The position will be based
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physics. Analytical and numerical calculations/ Laboratoire Jean Perrin theory group Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8237-RAPVOI-005/Candidater.aspx Requirements Research
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editions have been produced to fill the gaps in the documentation. There is therefore an urgent need to provide the community with new analytical tools that meet current needs. The end result will be an open
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of definitions (and axioms), challenging the classical view according to which definitions play no role in axiomatized theories other than that of abbreviation, since axioms can be considered as definitions
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Chassande-Mottin (one of the co-leaders of RICOCHET) on the development of analytical methods for gravitational polarimetry based on observations from the gravitational wave detectors Virgo and LIGO
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models that account for the dynamics of the actin polymer population in the cell cortex. The analysis will be carried out using probability theory and simulation tools, and will be based on a real effort
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with the main field of application being topological photonics based on microcavities. Analytical calculations Numerical calculations Analysis of experimental data The work will be carried out
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polaritonic waveguides and cavities, and will contribute to the theoretical (i.e. analytical) and numerical simulations of the GaN architectures in collaboration with the theory groups in the consortium. In