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. Scientific objectives - Advances in broadband laser technology are fueling hopes of achiev-ing inertial confinement fusion in a regime largely free of parametric instabilities, paving the way for more robust
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order to optimise catalyst inks and functional coatings for future energy applications more quickly and effectively. Such inks and coatings form a crucial basis for high-performance fuel cells and
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on the development of advanced energy converters and high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state
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of computational modelling of battery materials and fabrication and electrochemical investigations of new battery materials and complete battery cells. Responsibilities and qualifications For decades, battery
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applications such as fuel cells and fluid manipulation in microfluidic devices. Due to its strong relevance to reducing carbon emission and energy transition, and the presence of rich physical mechanisms at pore
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PhD position | Sustainable Energy Materials | Electrochemistry 30.06.2023, Academic staff We test novel catalysts for sustainable energy conversion processes such as polymer electrolyte fuel cells
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” concentrates on the understanding of structure-performance indicators in electrocatalytic reactions. Our catalysts are the heart of sustainable energy conversion processes such as in hydrogen fuel cells
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. We are looking for a PhD student (m/f/d) to start at the TUM between now and March 2023. Your Task From animals’ circulatory system to random porous media in fuel cells, morphological network
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within body organs. We are looking for a PhD student (m/f/d) to start at the TUM in September or later. Your Task From animals’ circulatory system to random porous media in fuel cells, morphological