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development and metal speciation would be a plus. The candidate must have a good level of English and the ability to work independently. Implementation of advanced speciation methods for the study of selenium
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aims to address the full diversity of condensed matter physics. The research activity is organized around three main areas, each involving approximately the same number of scientists: • New electronic
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: To develop powerful tools for the synthesis of innovative thermodynamic cycles. The project combines a methodological study and a practical application to harness the potential of deep learning in process
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provide a comparative mapping of these processes across all major archaeal phyla. Scientific objectives: - Identify and characterize de novo genes within the main archaeal lineages and their associated
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physics, structured around three main axes: Novel electronic states of matter (correlated systems, unconventional superconductivity, magnetism, metal-insulator transitions, etc.) Reduced-dimensionality
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between photometric variability and astrometry suggested by recent studies in our team to, finally, be able to select the best reference sources on the basis of their intrinsic properties and apply
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conditions. Profile: Required degree: Master's (M2) in Ecology and Evolution - Specialization: Modeling in ecology and evolution, theoretical ecology Expected skills: - Statistical analysis - Mathematical and
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validation of the simulation models. Candidate Profile Applicants must hold a Master's degree or equivalent (Bac+5) in mechanical engineering, thermal sciences, energy engineering, or a related field. They
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offering a postdoctoral position in multi-messenger astrophysics related to the KM3NeT, SVOM, and COLIBRI detectors. The main objective is to complete the development and optimization of the KM3NeT neutrino
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animals. Your Mission You will co-develop a new class of OECT-based battery-free implantable devices that combine: • Wireless analog communication based on backscatter-modulation architecture. • Co-design