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crystal-rich magma bodies (mush), while crystal-poor domains (magmatic suspensions) are limited to localized lenses and are probably ephemeral. In such systems, the separation between crystals and liquids
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. The synthesis will be carried out by crystallisation of glass or molten liquid at high temperature. The applications sought are optical (transparent ceramics and single crystals with luminescent properties) and
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themes "Physics of chiral cholesteric liquid crystals: design, optics and structure" and "Biological liquid crystals and their biomimetic versions". The experimental methods of the project include a major
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of several thousands of molecules to correctly model interfaces, phase change phenomena, crystallization and dissociation. To achieve this objective, the PhD student will develop potentials based on deep
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extends the concept of “soft matter” to biological systems. The themes therefore range from complex systems to living tissues, from liquid crystals to foams, including polymers or granular systems
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synthesis facilities are available. In addition, we have an easy access to the Spectropole platform, which provides powerful solid and liquid NMR spectrometers, mass spectrometers, circular dichroism, single