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remodelling events, thereby generating the mechanical forces required for its motility. This motility also relies on the dynamics of adhesion structures to the extracellular matrix. Genetic evidence
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systems still face major challenges when operating in fluid environments such as air or water. Unlike ground robots, aerial and underwater robots exhibit dynamics that are strongly coupled with
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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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focuses on the structural and dynamic characterization of intrinsically disordered and multidomain proteins involved in major biological processes, combining experimental biophysics approaches (SAXS, NMR
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architecture by modulating the dynamics and functions of cohesin, thereby enabling the cell to adjust its transcriptional programme in response to stress. The project is structured around a three-year thesis
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the team “Solid-State Quantum Technologies” at the Laboratoire Charles Coulomb (L2C, UMR5221) in Montpellier. This PhD thesis is funded by the Quantera project TEMISIS. A novel type of individual quantum
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(ILM), interacting with PhD students, postdocs, and master's students on related topics. We seek a motivated candidate holding a master's in physics, with skills in ultrafast/nonlinear optics or soft
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for ambitious PhD research, with rigorous scientific supervision. The PhD student will join the transverse SiC research axis, which is highly dynamic and internationally recognized. He/She will benefit from a
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research spans a wide range of topics, including experimental and theoretical molecular physics, the dynamics of complex systems, photonics, and quantum science. This PhD project lies at the interface
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through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD candidate will join the MATICE