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supervision across both institutions. The project will be conducted within the following research teams: the “Fluids and Complex Flows for Industry and Nature” team at LEMTA, and the “Waves, Flows and
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and guidance system for these micro-swimmers, interacting with real-time optical visualization in a microfluidic network. • Study of the fidelity of the movement of micro-swimmers to the set trajectory
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multi-period network planning in a competitive environment, taking into account the actions of other operators. The project builds upon previous research that addressed this problem through the lens
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description This position concerns a 2 years contract for the development of experiments on complex biomolecular
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crystallography. - Biochemistry and molecular biology techniques, - Protein purification, - Analysis of DNA-protein complexes - Interpretation of results and writing of articles - Presentation of results
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products (luxury goods, chemicals, medicines...) and to secure protocols in communication networks. Plasmonic PUFs rely on random deposition of many nanoparticles with a high degree of stochasticity in
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shown that VRM is associated with changes in the dynamical state of layer (L) 4, but how these changes occur remains unknown. New data suggest that the essential modifications are complex and require
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these active modules in complex networks have been proposed [1] and are being studied by the SPARKS team at I3S [2-3]. The mission of the recruited researcher will be to develop a method for identifying active
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network contracts upon local stimuli to orient fluid transport where it is needed. This enables autonomous functionalities without the need for a complex nervous system. These organisms use fluid transfer
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of this work is to develop the collaborative quantum computing research network within the university and its European alliance, EUTOPIA. Objectives: The goal of this PhD will be to adapt quantum systems to real