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French National Institute for Health Research (INSERM) | Paris 15, le de France | France | 2 months ago
The INSERM Chair “Regulation of the Immune System” aims to identify new mechanisms regulating the immune system by considering the global context of the host and the tissues in which immune cells reside. The project will be based on studying tissue–immune cell interactions under homeostatic and...
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be acquired soon: GCMS (2027) and glove box (2027). Synthesis of enantioenriched heterocycles by insertion of carbon atoms bearing a stereogenic center or axis by asymmetric catalysis Where to apply
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project is to overcome these limitations through the design of a flexible, quantum sensing foil based on an atomically-thin two-dimensional (2D) material. Our approach consists in using optically-active
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. The mechanisms governing the growth of Sn on InAs and other III-V semiconductors remain poorly understood. Imaging Sn/InAs interfaces at atomic resolution using a transmission electron microscope (TEM) gives
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wall erosion and plasma contamination with heavy atoms (such as tungsten). Despite its benefits, several important questions arise concerning the implementation of boronization in ITER, such as hydrogen
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be examined: glass beads and iron alloy objects. This thesis will specifically focus on the study of iron alloys. The proposed study area is comparable to the extent of the Kingdom of Austrasia
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nanoseconds to microseconds with near-atomic spatial resolution. The project will pioneer the direct observation of high-energy ion-induced atomic displacement cascades and the associated ultrafast atomic
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the details of the interaction at atomic resolution, including the full length receptor. The goal is to understand the structural and dynamic properties of the complex, the impact of the lipid environment and
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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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demonstrated ion trapping of single Yb+ ions. Optical clocks based on ultra-narrow transitions in trapped ions and neutral atoms have reached fractional uncertainties in the low 10-18 range, enabling landmark