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heterogeneous media (Bodart et al., 2016) in order to account for fractures or reservoir-type sources located in a fully three-dimensional medium. Both methods are currently capable of calculating stresses and
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to unravel the atmospheric importance of this interfacial chemistry by means of (i) laboratory-based investigations, (ii) field observations and (iii) modelling. These activities will take place in the frame
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-dominated or reversing). Other goals include unravelling the current pattern of heat flux at the CMB, characterizing the Earth's magnetic field on millennial time scales, and identifying the necessary
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porous media (imbibition, wetting, flow, etc.). The approach will be essentially experimental, combining model debinding tests on various specimens with characterizations. • Determine the main mechanisms
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instruments and high throughput genomics that informs advanced numerical analysis methods (modeling, statistics, machine learning). Plankton encompasses all organisms roaming with marine currents. Those
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flow, and a theoretical/numerical part on “fluid mechanics” focusing on transport by complex flows (e.g., turbulent flows). Depending on the profile of the person recruited, their activities will
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). The group currently hosts 2 PhD students. The group is publishing about 10 articles a year in high-impact journals (PRL, Nature, Nature Photonics, Nature Physics, Optica, ...): http
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Description We are looking for a motivated post-doctoral researcher to work with us on an ANR-funded project (FLOW-sens) aimed at better understanding the role of thalamo-cortical brain oscillations in