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developed a unique nanoelectromechanical resonator (NEMS), consisting of a silicon nitride drum capacitively coupled to an Al drum resonator, so called double-drum resonator. Its unique device design gives
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implantable devices, combining: - Wireless communication using a backscatter-modulation architecture - Co-design of front-end electronics and miniature RF antennas for chronic implantation - Prototyping and
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project on bedload metrology. He will be responsible for: 1) Designing and supervising the implementation of experimental devices to measure bedload transport. 2) Coordinating field activities, data
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present scientific results. # Software and tools - Proficiency in standard computer tools. - Experience with mass spectrometry data processing and analysis software. # Personal skills - Autonomy, rigor, and
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suitable for the evaluation of biopharmaceuticals (antibodies, nanobodies, …) • Develop and validate protocols for the formation of multicellular liver organoids in microfluidic devices (hepatocytes, LSECs
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of the monetary union Publishing articles in leading journals, book, and guides for computer coding Work location: Martinique UMR CNRS 8053 PHEEAC (Power, History, Slavery, Environment, Atlantic, Caribbean) is a
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provided (equipment, IT, etc.): An office equipped with a computer workstation and shared equipment from the Institut Curie research team Key contacts (within and outside the CNRS): Team leader (Scientific
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, they will be involved in: • the implementation, optimization, and operation of cryogenic devices and systems; • performing low-temperature experimental measurements; • the development and experimental