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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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generation, based on four-wave mixing (FWM) processes that take place within the gain medium, render QCLs as ideal candidates for the generation of on-chip multi-mode squeezed states of light. The successful
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of various existing datasets (picking files of local earthquakes and shots), recording of P-waves converted to S-waves on OBS, construction of an a priori model based on available tomographic grids and
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• Coupling of the release of the active ingredient and the dissolution of model clots (fibrin matrices from commercially available plasma) • Analysis of the results INPHYNI's activities are based on three main
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using advanced statistical methods. The goal is to improve our understanding of wave-driven turbulence processes, which are crucial for accurate climate modeling The Institute of Environmental Geosciences
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approaches to model polarization. The aim of the project is to develop methodological tools to characterize and exploit the polarization information extracted from bivariate signals (i.e. two-dimensional
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transient motions at the top of Earth's core. The benchmark will be the subject of an international call to candidate models. It will lead to an evaluation of the various methods when applied to synthetic
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found in these enzymes, as well as on trapped radical catalytic intermediates. To this end, various electron paramagnetic resonance (EPR) spectroscopy techniques will be employed (in continuous wave or
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for vehicular communications, with a focus on wave propagation characterization and radio channel modeling. • Contributing to the implementation and preparation of measurement campaigns. • Analyzing measurements
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focuses on particle physics, gravitational waves and the equation of state of nuclear matter, and is supported by the concurrent development of data science and analysis methodologies. L2IT is operated by