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, IINS is one of the major players in the neuroscience community in Aquitaine. Ultrastructure and 3D model of dopaminergic synapses. Activities: Preparation of biological samples (synaptosomes, striatum
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simulations in 3D MHD of the propagation of solar jets, in close connection with solar and in-situ observations. This should lead to the development of the next generation of solar jet propagation models, from
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using 3D MHD numerical simulations with the ARMS code. For the first time, such a model will self-consistently generate induced jets in a realistic magnetic topological configuration, including polar
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systems are still struggling to convey compelling tactile sensations for 3D interaction. The project ADVHANDTURE aims at introducing an original computational approach for handling multimodal tactile
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projects aim to gain a better understanding of how unicellular photosymbiosis works by combining subcellular microscopy approaches (3D electron microscopy). This thesis is funded by a European ERC
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generators concepts. The research plan includes: Development and implementation of a computational methodology integrating fluid–structure coupling in 2D and 3D unsteady flow regimes Cutting-edge experimental
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will explore different soundscapes, 3D models, forms of interaction, and their influence on perception, attention, emotional load, and critical reflection. The methodology will combine design and
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platform at GPM. The activities will be : - Define, set-up and test the experimental protocols for the 2D and 3D investigation of hybrid Ga-oxide/zeolite beam-sensitive materials, in terms of data
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bench (optical, electronic and mechanical) and multiphysics analysis using high-performance on-site instruments (optical spectrum analyzer, 3D intensity profile, wavefront, RF spectrum, field polarization
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of helical ballistic edge states. For 2D systems or 3D higher order topological insulators (TI), they form one dimensional conducting channels on the edges with two time-reversed spin-momentum-locked states