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study the structure and dynamics of proteins. The main objective is to design and implement nanodevices to study biological molecules and analyze light in the THz range. This work focuses on improving
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responsible for constructing and maintaining synthetic microbial consortia of various microbial partners. The design of long-term co-culture experiments will allow for the evaluation of reciprocal adaptation
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, Action and Perception (RAP) team (https://www.laas.fr/en/teams/rap/ ) at LAAS-CNRS, Toulouse, France. The research conducted in the RAP team focuses on the design, prototyping, implementation, and
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the reconfigurable logic gates designed by artificial intelligence. The candidate will carry out nanofabrication by deposition, UV or maskless lithography and etching of the waveguide circuit and e-beam lithography
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population structure, detect molecular signatures of selection, and contribute to the design and analysis of in vivo experiments aimed at functional validation. The candidate has solid experience in the field
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on piezoelectric substrates. By patterning the magnetic layer, we aim to create a new type of phased-array shifter designed to lower the energy consumption of RF technologies. In addition, we will work toward
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from the excavated material, i.e. Callovo-Oxfordian argillite that would have been stored at the surface during the exploitation period, and mixed with sand or expansive clay to reach the target design
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vision researchers to design algorithms specifically tailored for the extraction and analysis of these historical diagrams. EIDA considers these diagrams both as visual heritage and as tools
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iii) produce homogeneous and dense thin films on transparent solid substrates by deposition of the clusters. - Design, fabrication and use of microfluidic chips - Structural studies of colloidal
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" design, replacing heterojunctions with homojunctions. SMOOTH concerns the realization of metal-free printed devices, using oriented polymer semiconductors (PSCs) and doped PSC regions as electrodes