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Model. Int. J. Hydrog. Energy 2014, 39 (9), 4516–4530. https://doi.org/10.1016/j.ijhydene.2014.01.036.  ; [3] Carral, C.; Mele, P. Modeling the Original and Cyclic Compression Behavior of Non-Woven
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multi-layer systems using a strip casting process. The project is divided into 2 tasks, as follows: 1) Development of an optimum casting formulation based on the starting powder supplied. Optimization
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systems on the path towards a sustainable future. The position is initially limited to 6 months, but can be extended (there is funding for up to 4 years). You can expect: Creation of optimization models
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Your Job: Strategic development of the research field on material availability in global energy system transformations, building on the content of the ERC Starting Grant Independent project
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(SEADS) directorate. The SEADS directorate contributes to an exciting portfolio of energy analysis and grid futures studies, applying advanced modeling and simulation tools to optimally plan, design, and
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engines Investigating optimization algorithms for heterogeneous architectures (e.g. AI engines in combination with programmable logic) Deployment of optimization algorithms for energy optimization and
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the critical challenges of integrating wind energy into modern power systems, ensuring grid stability and sustainability through multidisciplinary collaboration between 8 beneficiaries and 12 industrial partners
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of Molecular Chemistry and Catalysis for Energy (LCMCE), a research group within the NIMBE unit located at CEA Saclay (France), in immediate proximity to the Université Paris-Saclay campus. The group comprises
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innovative solutions. By leveraging advanced optimization tools and engineering methodologies, He/she will ensure the resilience of the supply chain against disruptions while minimizing its energy consumption
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technology from clean energy and AI to electronics, biomedicine, defense, and space exploration. The Center for Materials Innovation and Technology (CMIT) aims to become a leading hub for research and