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are redundantly entangled. The realization of a gate operation on one qubit, followed by its measurement, influences the other qubits with which it was entangled, thereby effectively performing an operation on them
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disproportionate effects on certain ecosystem processes. The main objectives are: 1. Conduct a critical synthesis of existing approaches that distinguish between species-specific effects and those linked to overall
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Process: designing, preparing, shaping and characterizing materials in order to discover, control and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or
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biology and is resolutely interdisciplinary, integrating approaches in (bio)informatics, (bio)physics, and (bio)mathematics. The “genome mechanics” team is interested in the process of DNA break repair by
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, computer science (medical image processing), medical physics. Computer skills: Python, C++ (ITK, RTK). Languages: English required, French optional. Website for additional job details https://emploi.cnrs.fr/Offres
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researcher will join the bioinformatics team at the MMSB Laboratory (UMR 5086; MOMS team). Responsibilities: (1) computer simulations as part of the SELDOM project, focusing on interactions between lipids and
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of these communities to ecological and biogeochemical processes. This work will feed into wider project goals to understand the role of dormancy as a regulator of biogeochemical cycles, and to link dormancy
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of proteins by applying a simple electrical potential in solution. This electro-bioconjugation reaction occurs within minutes, providing a fast and biocompatible process for the functionalization of viral
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. This will be made on different Cu-FR4-Cu laminate test-structures with a FR4 thickness ranging between 35 to 100 μm. A preliminary assembly process optimization will be performed (e.g., temperature
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laser deposition (PLD); • Implementing partial and total reduction processes of the films, with or without capping layers; • Performing structural and electronic characterization using X-ray diffraction