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device development, photocrosslinkable hydrogels, PRIMO 405 nm light-based photopatterning, advanced imaging, and technological integration. RESTORE will contribute its expertise in human adipose tissue
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or ferromagnetic as well as its competition with other correlated phases (superconductivity, charge orders etc..), we propose to use the powerful method developed in our group, based on exquisitely sensitive magneto
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representation language. The thesis will particularly investigate approaches based on attributed graphs to model infrastructures, their topological relationships, inspection-derived observations, and the levels
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dining hall on the Cronenbourg campus, with meal subsidies provided by the CNRS Doctoral school 222 This PhD project focuses on (solar)-light driven photoreduction of CO₂ to ethylene, using Cu-based
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model of magmatic oceans on forming planets based on laboratory experiments. At present, high-pressure molten silicates are modelled only in a rudimentary manner, due to a lack of data on activity
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based on earth-abundant metals has been revolutionized by the development of metal-mediated oxidative hydrogen atom transfer (MHAT) reactions. However, our understanding of the mechanism and our knowledge
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polymers. In addition, the candidate will actively participate to the evaluation of these polymers by a various techniques based on nanopores and optics, in close collaboration with different physics partner
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, their transformations and their interactions with living organisms, our laboratory uses various analytical chemistry techniques (hyphenated techniques based on mass spectrometry, isotopes, etc…), as well as imaging and
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lines, as well as high-resolution live-cell imaging techniques. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5237-JERBOU-001/Default.aspx Requirements Research FieldBiological
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Superconductivity High-temperature critical superconducting (HTS) materials, particularly those based on REBCO, enable the development of fully superconducting magnets capable of generating very high magnetic fields