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- Institute of Chemical Research of Catalonia ICIQ
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renewable energy technology. Carrying out life cycle assessment and life cycle sustainability assessment of four hybrid renewable energy pilot plants for the green transition of industrial energy users (ports
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Infrastructure? No Offer Description MDEA Energy Institute is a María de Maeztu Center of Excellence whose objective is to develop R&D activities in the fields of renewable energies and clean energy technologies
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) Electrochemical characterization of LMBs Area: Electrochemical energy storage (EES) Requirements Research FieldChemistryEducation LevelPhD or equivalent Specific Requirements CANDIDATE PROFILE: PhD in
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, particularly for energy storage systems for electric vehicles, and renewable energies and its integration and optimisation of smart distribution networks. In addition to technical skills, the candidate should
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improve the capabilities of future trigger systems. Candidates should have a PhD in High-Energy Physics or in a closely related discipline. Previous experience in trigger, pattern recognition algorithms
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to solving major social and economic challenges by conducting top quality research in three main areas: SustainableCatalysis, Renewable Energy and Health. The institute also aims at training the future
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for the discovery and development of novel electrocatalyst materials for the conversion and storage of renewable energy, as well as the production of sustainable fuels and chemicals. We offer stimulating working
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for the discovery and development of novel electrocatalyst materials for the conversion and storage of renewable energy, as well as the production of sustainable fuels and chemicals. We offer stimulating working
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related to modelling (e.g. integrated assessment models, stock–flow consistent models, system dynamics, input–output analysis, econometrics, machine learning, material/energy flow analysis, etc.) Motivation
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Vilatela (IMDEA Materiales, Madrid). The project main objective is to advance the development of the next generation of Lithium-ion batteries by achieving high capacity retention in high energy density cells