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electrochemical interfaces for electrocatalysis and batteries. You will investigate how the properties of the electrode-electrolyte interface can be leveraged to optimize the activity, selectivity, and stability
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engineer to significantly redesign it and build the next generation of the OpenML platform. Key publication: What you will do Goals and core tasks: Optimize accessibility for all experience levels via
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, and high-tech companies covering the full energy value chain. Your main focus will be on modeling systems essential for the design and optimization of hydrogen production processes. Accurate
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understanding with applied research and close collaboration with industrial partners, we develop solutions that contribute directly to the optimization of industrial-scale electrolyzers. More information about
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researcher, your responsibilities will include: Optimizing, and running head-fixed mouse behavioural tasks for harm-aversion and self-fear. Acquiring and analysing functional ultrasound imaging data from ACC
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experimental PhDs and Canon Production Printing to enable data-driven ink optimization. Why Join? Work in the multidisciplinary Processing and Performance of Materials group Work at the forefront of sustainable
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possible? What are the optimal laser and target properties? Project goal The goal of this joint experiment-theory project is to elucidate the properties of beyond-EUV radiating plasmas. The work will entail
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from clinical specimens; Develop, optimize, and apply DIA- and PRM-based proteomics methods; Perform quantitative data analysis, normalization, quality control, and statistical interpretation
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with relevant reuse- and replacement-oriented decisions: (i) an interactive geographical map, (ii) a calculation/optimization module, and (iii) a scenario engine. Main activities Your work will consist
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, structure-preserving discretisations, optimal transport, and the numerical analysis of partial differential equations. The second position will focus primarily on the geometric representation of complex data