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. Title: Stochastic Dynamics of Living and Active Matter: Theory, Inference, and Applications Biological systems and active matter — living tissues, cells, self-propelled particles, micro-organisms
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adapted during the course of the thesis to enable phase-resolved measurements and to investigate various interfacial dynamics. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5306-EMMBEN
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to environmental disturbances. The MULTICHEM-HOLO project aims to test the hypothesis that post-fire resilience is an emergent property of this holobiont, resulting from dynamic interactions between the plant, its
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a focus on understanding cell division, genome stability, chromosome dynamics, mitochondrial function, and the molecular mechanisms underlying human health and disease. Cohesin, cellular adaptation
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interfacial phenomena. The project is part of the ERC Starting Grant EMBIOMO, which focuses on the dynamics of embolism propagation within leaf vascular networks and on the development of biomimetic models
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | about 2 months ago
whole-body quadruped architecture that embodies the use of alternative mechatronic concepts, to improve overall system manipulation and dynamic locomotion capabilities, impact tolerance, and energy
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Website https://emploi.cnrs.fr/Offres/Doctorant/UMR9002-ROBRAG-003/Default.aspx Requirements Research FieldBiological sciencesEducation LevelMaster Degree or equivalent Research FieldBiological
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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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to Excitons: Ultrafast Dynamics and Fine Structure in Metal Halide Perovskites Metal halide perovskites (MHPs) have emerged as a disruptive class of semiconductors, combining exceptional optoelectronic
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observations of material evolution during ion interactions remain largely unexplored. Such knowledge is crucial to understand transient processes and defect dynamics, in order to design next-generation materials