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circular economy by promoting earthen masonry construction, recognized for its low environmental impact and its ability to preserve local identity. However, the development of this material remains limited
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. This includes the controlled synthesis of nanocatalysts, their advanced characterization (TEM, XRD, operando spectroscopies), and analyzing the relationship between their structure and catalytic activity
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to simple structures. This bottleneck has held back the large-scale application of these promising compounds. This project directly addresses this synthetic challenge by developing advanced tools to transform
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and process behavioral and electrophysiological data • Model behavior based on diffusion models and make explicit link with neurophysiological data • Conduct detailled statistical analysis • Write
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) and translational (M. Cheminant and A. Touzart, Necker) researchers focused on resistance in hematological malignancies. The partner teams share a strong interest in advancing fundamental knowledge
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at the interface of materials chemistry, nanotechnology, and oncology. The project, NANOZEOXY, focuses on the design and development of nanosized zeolites as advanced carriers of oxygen and contrast agents
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. The team has the expertise and tools required for structural and optical characterization, as well as the cleanroom technology needed for photonic structure fabrication. Advanced optical characterizations
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to guideline analysis, the construction of simulated trials, and the feasibility assessment in French databases (SNDS, CONSTANCES, EDS-APHP). Activities : Contribute to the design of simulated trials (target
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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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the spectrum and mutually coherent. Frequency combs have enabled many scientific advances, first in metrology and then extended to many fields. Dual comb spectroscopy has been proposed as a powerful technique