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                Employer- CNRS
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                , particle accelerators and detectors, as well as technical research and development and related applications for energy, health, and the environment. The facility has significant technical capabilities 
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                to widen the use of III-Vs in the industry and not only to serve niche applications. This relies on our ability to develop low-cost and eco-friendly deposition methods for growing high quality UWBG thin 
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                and development, as well as for the general public. The PhD student will fabricate graphene-based samples in a cleanroom environment and perform low-temperature electronic transport measurements in 
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                by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The thesis will be developed within the Institut des NanoSciences de Paris, a joint 
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                students benefit from working in an institute with long-standing expertise in chemistry and radiopharmaceutical development, providing a strong foundation for cutting-edge research in nuclear medicine 
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                Responsibilities: (1) Conduct X-ray diffraction (BCDI) and electron microscopy experiments to analyze the crystalline structure and strain distribution of protein-superlattices in sponge spicules. (2) Develop and 
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                developed at the Timone Neuroscience Institute (INT), a joint research institute between the CNRS and Aix-Marseille University, located on the Timone health campus in Marseille. The successful candidate will 
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                and 4 of Restore. This institute brings together more than a hundred people divided into five teams whose objective is to develop integrated and multidisciplinary research (cell biology, physiology 
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                , development, and applications; valorisation of natural products and industrial applications - MIM team (Molecules, Interactions, Materials): inorganic molecules, molecular materials – synthesis, properties, and 
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                . Our research project at FEMTO-ST At FEMTO-ST, we are developing a new experimental platform for superradiant lasing on the ytterbium clock transition. The setup includes a cold ytterbium magneto-optical