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designing sustainable P2X value chains. In this position, you will actively shape the development of innovative stack designs for high-temperature electrolysis and fuel cells (SOEC, SOFC). With the help
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, and systems for sustainable energy technologies. The technologies include fuel cells, electrolysis, power-to-x, batteries, and carbon capture. The research is based on strong competences
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. The technologies include fuel cells, electrolysis, power-to-x, batteries, and carbon capture. The research is based on strong competences on electrochemistry, atomic scale and multi-physics modelling, autonomous
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electrocatalysis, organic electrochemistry, engineering of electrochemical devices, such as flow batteries, fuel cells and electrolyzers is a plus. Sufficient level of written and oral professional English is
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detail: Planning, supervision and implementation of innovative experiments with solid oxide cells, in both electrolysis and fuel cell mode Characterization of the repeating units during stack operation
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on the marine environment. A key focus is on propulsion systems for road vehicles and ships, including combustion engines, fuel cells, and electrified drivetrains. The work combines modelling and experiments and
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Job Description Join the Multi-omics Network Analytics Research Team as a Postdoc in Computational Biology at the Danish Technical University (DTU) Are you an experienced scientist with a passion
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, electrodialysis, capacitive deionization, fuel cells, or redox flow batteries. A strong background in ion transport, membrane processes, and (electro)chemical characterization is highly desirable. Experience
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of synchronous collaboration to create breakthroughs that rapidly transform the unimagined into the possible—to fuel a pace of discoveries and advances previously thought impossible. Park laboratory is interested