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films with controlled thicknesses (from a few atomic layers to a few hundred nanometers) and morphologies—where the few-atomic-layer regime is particularly relevant to borophene-related structures and
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, etc.), (iii) Evaluation of interactions and potential conflicts between subsurface uses, (iv) Monitoring of subsurface structures (sensors, passive seismics, etc.) and surface impacts (satellite
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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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of the team are structured around 3 research aeras: • Research Area 1: On-line analytical methods via microfluidic devices for the quantification of air pollutants; • Research Area 2: Off-line analysis methods
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of organized multicellular structures, with a particular focus on microtumors. The originality of the project lies in its systems-level approach, which integrates concepts from statistical physics and
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nanomaterials would be particularly appreciated. An interest in interdisciplinary approaches at the interface of chemistry, nanoscience, and biology is also highly desirable. Where to apply Website https
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. Their nonlinear evolution can lead to the emergence of large-scale coherent structures or turbulence, resulting in significant radial plasma transport—and thus degradation of plasma confinement. Understanding
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cellular changes. Advanced imaging techniques, including structural and functional-MRI, developed by Dr. Emmanuel Barbier (GIN director), will be used to optimize rSynES and monitor neuronal changes over
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modified under the influence of an external electric field (E). Antiferroelectric materials, on the other hand, have an antipolar dipolar structure corresponding to a net polarization of zero and undergo a
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with the Institute of Pharmacology and Structural Biology (IPBS), which will provide expertise in macrophage biology, cell biology and the mechanobiology of phagocytosis. Where to apply Website https