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fabricating porous iron electrodes Performing electrochemical evaluation in relevant cell configurations Applying advanced characterization methods to relate material properties to electrochemical behavior
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and derive new research directions from the results. Characterize the geometric, structural, and electronic properties of promising electrocatalysts using advanced materials
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. The focus of this PhD position is the development, characterization and experimental evaluation of advanced sensing hardware. Signal processing and Artificial Intelligence are applied as enabling technologies
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numerical simulations and machine learning in order to better understand and characterize active matter systems. A possible direction is to use physics-informed machine learning techniques to connect
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and proven experience in organic chemistry and/or polymer chemistry or catalysis Experience with analytical methods for polymer characterization Very good written and spoken English skills You
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You will work in a highly interdisciplinary research environment, with access to world-class nanofabrication and characterization infrastructure. For deeper insights, please have a look at our
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protective or hydrogen atmospheres Characterization of the microstructure, phase composition and surface quality of the coated layers
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the approach along the dimensions of reliability, robustness, transparency, and fairness, and characterize its opportunities and limitations Extend the indicator to further notions of research quality, using
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abilities while empowering everyone to reach their full potential. TUD embodies a university culture that is characterized by cosmopolitanism, mutual appreciation, thriving innovation and active participation
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of many-body physics, realizing unprecedented phases of matter characterized by their quantum-information content. This doctoral project addresses a central question for quantum technologies: how can the