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versatile structures with numerous applications in microelectronics, MEMS (Microelectromechanical Systems), and nanotechnology. These membranes are produced by selectively etching the top silicon layer of SOI
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composition and atomistic modeling of materials. The main activities will include: - formulating new descriptors of critical temperature (Tc) incorporating electronic fluctuation effects, evaluated by
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from cells, and their structures will be determined by cryo-electron microscopy (cryo-EM) in Dr. Innis's team. The candidate will conduct research within G. Boël's team in the unit “Microbial Gene
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another, the electronic properties of the resulting heterostructure can change dramatically. Remarkably, a large-bandgap insulator can become ferroelectric, solely due to this relative twist—without any
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Leica SP8 confocal microscope equipped with the FALCON module for FLIM-FRET and STED, as well as transmission and scanning electron microscopes. The host team has a strong international reputation in
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and bacterial genetic approaches required for the project. - To perform the approaches related to protein biochemistry required in the frame of the project. - To perform the optical and electronic
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workshops, seminars, and other dissemination activities ; - Assist other members of the hosting team, including more junior researchers (phds) in their research. The selected candidate will be based
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people, including researchers, PhD students, engineers and technicians, within a multicultural and international environment. The person recruited will join the DYNAMOP group (https://www.ibs.fr/en
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. Skills and requirements PhD in Oceanography or equivalent Expertise in coastal ocean dynamics and modeling Proficiency in programming, with a minimum requirement of Fortran and Python Excellent English
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is the foundation of thermometers designed for measurements down to temperatures close to absolute zero (10 mK). Within the CRYONEXT project, close collaborations with CEA for electronics, CNAM