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electronics, serving in tunable microwave devices, microwave circulators, optical insulators, etc. The manufacture of integrated magnonic devices, which extend the above applications to micro-and nanometric
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, · quantifying uncertainty in causal links, · integrating the resulting models into neural networks (or other machine learning models) to detect and predict anomalies or anticipate failures. The research
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years) from the host team projects which focus on the study of infrared nanocrystals and their integration into devices The work will be carried out at the “Institut des Nanosciences de Paris” (INSP) in
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of promoting integrative approaches to basic auditory neuroscience, and developing innovative diagnostic tools, and preventive and curative treatments for hearing disabilities. The Hearing Institute brings
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translational medicine and bioinformatics through innovative data integration, visualisation, and advanced analytics. Our research integrates bioinformatics, data science, and IT solutions to advance digital
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experience severe speech-in-noise difficulties, likely due to disrupted neural synchrony and impaired transmission along the auditory pathway [3], [4]. This research will integrate modeling and empirical ABR
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-effectively integrated into advanced technology nodes for sensor, nonvolatile memory, logic, and neuromorphic applications. Currently, hafnium-zirconium mixed oxide (HfxZr1-xO2) offers the widest stoichiometry