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treatment and reaction conditions. The work will involve the use of state-of-the-art transmission electron microscopes, together with advanced data acquisition and analysis methodologies, to achieve high
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at the IPCMS (Institute of Physics and Chemistry of Materials of Strasbourg), which investigates the electronic, optical, and magnetic properties of atomic-scale structures. The research will be carried out
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microscope featuring a Falcon 3 direct electron detector. Our results establish that HibA is a key mediator of ribosomal hibernation in archaea. They provide a mechanistic and functional framework
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fusion devices. However, microscopic studies revealed a porous morphology of these targets, not adequately reproducing the thin film deposit found in tokamaks. This might be responsible of a spurious
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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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family of single photon emit-ters in hBN with excellent properties in terms of brightness, coherence and reproducibility. These emitters can be locally created using an electron beam in a scanning electron