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for a reduction to a period-finding problem. Design of quantum algorithms exploiting the algebraic structure, based on the proposed reductions. Complexity analysis (qubit count, circuit depth
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to develop, optimize and apply advanced mass spectrometry approaches for the structural and molecular characterization of ARDCs, and to analyze and interpret the resulting data. - Develop and optimize mass
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? Horizon 2020 Is the Job related to staff position within a Research Infrastructure? No Offer Description This scientific project aims to synthesize organometallic complexes containing rare earth elements
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of studying and optimizing the microstructural and mechanical properties of granular materials bonded by a solidified foam, within the framework of the ANR project BONDINGFOAM. This mission is structured around
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organelles, and macro-complex structures in their cellular context (in situ structural biology). The laboratory Cell and Plant Physiology (LPCV), which aims to understand the adaptive response of microalgae
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chemistry: synthesis and characterization of new cobalt complexes (inorganic synthesis, mass spectrometry, structure determination by X-ray diffraction) • Molecular electrochemistry (cyclic voltammetry
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on signals and complex systems. Gipsa-lab develops projects in the strategic fields of energy, the environment, communication, intelligent systems, life and health technologies, and language engineering
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of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm
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/F) will work within the “RNA Architecture and Reactivity” unit and join the “Structure, Dynamics, and Targeting of Biomolecular Machines” team. This team currently consists of 6 researchers, 3
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covering discovery of new therapeutic mechanisms for complex diseases, early detection of pathologies, and comprehensive prevalence and prediction of pathologies, all based on the mechanistical understanding