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composition of incoming radiation, thereby affecting photovoltaic performance and the urban energy balance. Existing Earth observation datasets remain fragmented across scales. Copernicus reanalyses (ERA5, CAMS
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energies usually spanning from few tens of eVs to few hundred eVs. These ultrashort pulses serve as a powerful tool for studying light-matter interactions, functioning as either a 'pump' to initiate
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interactions, dynamics and function of membrane proteins, protein folding and aggregation. The master internship and following PhD will be performed in close collaboration with the team of Yohann Boutte in
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at LPICM on new generation semiconductor, plasma and AI We are looking for a PhD student (fully funded for 3 years) to work on a new project dedicated to ultrawide bandgap semiconductors deposition using
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The candidate will work at the pluridisciplinary Hubert Curien institute
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for applying this approach at two sites, where he or she will spend three months each immersed in the daily activities of the communities (participant observation), to better understand their functioning and
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laboratory is studying the behavior of hydrogen in the first wall materials of the International Thermonuclear Experimental Reactor (ITER). This subject is part of a strongly structured European framework
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Description The successful candidate will join the Glycomaterials Structure and Properties team at the Center for Research on Plant Macromolecules (CERMAV) in Grenoble. He/she will work under the supervision
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/Doctorant/UPR2940-FLOPOI-155/Default.aspx Work Location(s) Number of offers available1Company/InstituteInstitut NEELCountryFranceCityGRENOBLEGeofield Contact City GRENOBLE Website http://neel.cnrs.fr STATUS
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                Centre de Mise en Forme des Matériaux (CEMEF) | Sophia Antipolis, Provence Alpes Cote d Azur | France | 2 months ago
applications, including minimally invasive medical procedures and targeted delivery [1]. Precise magnetic actuation requires the use of bottom-up fabrication techniques in which magnetic interactions are well