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will create impact through transfer between science, engineering, design, arts and industry and by connecting multiple levels of STEAM education from middle schools to doctoral education. Understanding
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to develop new architectures for porous electrodes to improve the power density and energy efficiency of redox flow batteries (RFB), enabling affordable and durable long-duration energy storage. The approach
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to judge the applicant’s contribution for publications with multiple authors, a short description of the applicant’s contribution must be included. Additional relevant documentation of knowledge and skills
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recruit a total of 17 doctoral candidates for project work lasting for 36 months. SPACER aims to develop new architectures for porous electrodes to improve the power density and energy efficiency of redox
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candidate will drive the full experimental pipeline: computationally guided construct design; expression and purification of proteins; structural determination to resolve active-site architecture; activity
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opportunities for embedding storage at multiple points within the HVDC architecture—on the AC side, DC side, or directly within converter submodules. The research will tackle several key technical, economic, and
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of sedimentological concepts to reconstruct depositional history, paleogeography, and sedimentary architecture. Presentation of results at national and international conferences. Publication of approximately two peer
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-18 months will be carried out at Chalmers University of Technology at the end of the previous period, to complete the PhD studies. SPACER aims to develop new architectures for porous electrodes
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of the previous period, to complete the PhD studies. SPACER aims to develop new architectures for porous electrodes to improve the power density and energy efficiency of redox flow batteries (RFB), enabling
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monitoring and health monitoring of the different machine components. To this end, multiple dedicated measurement campaigns have been performed throughout the Belgian offshore zone, resulting in a large in