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- ICN2
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Field
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the field of chemistry committed to solving major social and economic challenges by conducting top quality research in three main areas: SustainableCatalysis, Renewable Energy and Health. The institute also
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broad experience in the development of electronic structure methods and their application in order to perform atomistic simulations of molecules and materials. These include (but are not restricted
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the structure and behavior of catalytic nanomaterials critical for green hydrogen and energy technologies. The candidate will design and perform real-time in-situ TEM experiments using gas and liquid sample
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OF SCIENCE, TECHNOLOGY AND INNOVATION, FUNDED BY THE UPV RESEARCH STRUCTURES (PAID-10-22)113157 Where to apply Website http://www.vrain.upv.es/index.php Requirements Research FieldEngineeringEducation LevelPhD
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will comprise five innovative tools: The SHARECITY200 Database, an interactive automated mapping, tracking and monitoring database of food sharing initiatives that will add more than 100 new locations
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morphological, structural, and optical characterization of III-V compound semiconductors is mandatory. * Experience on the processing of semiconducting materials for the fabrication of optoelectronic devices is
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simulation and modelling of semiconductor devices is mandatory. * Experience in the morphological, structural, and optical characterization of III-V compound semiconductors is mandatory. * Experience
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complex challenges in Earth system modeling and environmental monitoring by leveraging Europe's leading High-Performance Computing (HPC) infrastructures, including BSC's MareNostrum, LUMI, JUPITER, and
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group (Nanosfun, www.nanosfun.com) is research group at the ICN2. Nanosfun is aimed to develop novel (supra)molecular and polymeric functional nanomaterials with application in Health, Energy-Efficient
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Materials group (Nanosfun, www.nanosfun.com) is research group at the ICN2. Nanosfun is aimed to develop novel (supra)molecular and polymeric functional nanomaterials with application in Health, Energy