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will enable 3D environmental scanning, enhancing the wearer's situational awareness. 2. Develop real-time reconstruction algorithms for portable devices, that address the challenges arising from
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aims to develop innovative compounds to protect, vectorize, and release molecules of interest in a controlled manner under a stimulus for applications in plant nutrition and phealth. The selected
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to identify key mechanisms and to guide the development of simplified models for the combustion and sound-generation processes. ----------------- 2- ACTIVITIES: The ultra-lean annular burner will be studied in
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-based devices such as magnetic memories or spin valves for information storage. In this PhD work, we aim to develop novel chiral hybrid systems based on helical molecules bearing organometallic and
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climatic conditions, using machine learning approaches based on isotopic data. SSIAs for δ13C, δ15N and δ34S in dentin collagen and δ66Zn in enamel to reconstruct the evolution of seasonal habitats and the
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, Dr. Ipek YALCIN's laboratory, where this PhD project will primarily take place, has developed a murine model of neuropathic pain that induces an anxious-depressive phenotype. The laboratory has also
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– Developing theoretical models for wave propagation and control in complex, lossy biological environments. Adaptive Wave Control Architectures – Designing and implementing reconfigurable radiating structures
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instruments on satellites. We develop instruments that have flown or are flying on several space missions such as Cluster, Solar Orbiter, BepiColombo, Parker Solar Probe. The LPC2E is located on the outskirts
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premixed CH4-air flame already characterized in the laboratory. This study will notably serve to prepare optical diagnostics for the second phase. These optical diagnostics will measure fundamental
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. Photoluminescence and Electroluminescence). - Adjusting the formulation of the inks developed from these materials to be compatible with inkjet printing process. - Analyze the charge transport properties