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, psychology, movement science and signal processing. Main Responsibilities The PhD candidate will be involved in all stages of the research, from the design and implementation of the experiments to data
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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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biological mechanisms that control it remain largely unknown. The aim of this PhD project will be to understand how changes in pressure drive this extremely rapid three-dimensional reconfiguration of a tissue
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sources to test advanced inertial fusion concepts, particularly in direct-drive geometries. This thesis is part of this effort, exploring the use of broadband inco-herent sources to drive the implosion
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of instruments. . The year 2026 will mark the start of the first observing campaign of the cosmic microwave background (CMB) with the Simons Observatory Large Aperture Telescope. Equipped with a 6-metre primary
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diasporic contexts. In line with new theoretical and methodological orientations, the project revisits the notion of embodiment and is interested in the movements of human bodies as bearers of memorial
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of biophysics, non-equilibrium statistical physics, and cancer biology. Its objective is to understand how stochastic fluctuations and cell-cell interactions combine to drive the spontaneous emergence
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dynamics; Movement, reproduction, and mortality processes; Intervention scenarios. Parameterization and structuring of input data. Support for participatory modeling - Preparation of stakeholder workshops
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existing defects or malfunctions in networks, but also to better understand the factors likely to cause them. Particular attention will be given to integrating contextual information related to the urban
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provides access to individual dynamic parameters (cell cycle, fate, motility). - ISMO (UMR 8214), where metallic nanoparticles (Gd, Pt, etc.) are developed to locally amplify the effects of ionizing