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elucidating the molecular and cellular mechanisms of the late phase of long-term potentiation (LTP), a key process in learning and memory. The project is based on the development and use of an innovative
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that a population of such systems should be able to undergo Darwinian evolution. The aim of this project is to develop, for the first time, synthetic chemical systems with all of these features. This ERC
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concerned are solid mechanics, mechanical design, and materials mechanics. The missions are twofold: to develop experimental tools for studying materials at very low temperatures (design work); to model
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to develop a new generation of fluorescence microscopy methods aimed at overcoming current limitations in acquisition time for single-molecule imaging. The project explores original strategies for temporal
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(including ERG and OCT), development of additional functional assays, locally conducted histological analyses, and preparation of samples for collaboration with the Lyon-based team, including quality control
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? Horizon 2020 Is the Job related to staff position within a Research Infrastructure? No Offer Description The Nanobio team develops innovative fluorescence microscopy techniques designed to push the limits
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; Identification of functional, technical, performance, economic criteria, goals and indicators for classifying/comparing UPB methods. Development of a comparison multicriteria method. For the solutions emerging
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Team (CDT), and possibly to the Bordeaux University Campus for collaboration with the Exa-SoFT research and software development teams. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The main objective of the project is to develop an instrument model to predict
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, materials science, and advanced nanofabrication. This project focuses on the development of functional optical metasurfaces with engineered responses tailored for selective optical camouflage. The targeted