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matrix prepared by PIP must allow for optimal gas permeability. Objectives and Methods ------------------------- This study aims to investigate the infiltration of porous matrices obtained by PIP using
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. Science 352, 208–212 (2016). In ICE-EEVOLVE, we seek to unravel how chiral organic molecules, trapped in amorphous ice matrices, evolve from molecular clouds through star-forming regions to planetary
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for sample formulation (by developing new polarization sources such as radicals or polarizing matrices) and ii) developing new methods and multi-nuclear, multi-dimensional NMR pulse sequences that will enable
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• Coupling of the release of the active ingredient and the dissolution of model clots (fibrin matrices from commercially available plasma) • Analysis of the results INPHYNI's activities are based on three main
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. Science 352, 208–212 (2016). In ICE-EEVOLVE, we seek to unravel how chiral organic molecules, trapped in amorphous ice matrices, evolve from molecular clouds through star-forming regions to planetary
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complex matrices [1-5]. To achieve this objective, the production of calcium carbonate grease will be replicated on a laboratory scale to reproduce the particle morphology. This system will be coupled with
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performance. The impact of this process will be investigated, considering its impact on the compressibility and transfer properties of the mixtures. Successful candidate will engage in interdisciplinary
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, such waste is more reactive than massive parts. The debris and powders are likely to react significantly by redox reaction with the water contained in the porous network of the cementitious matrices, thus