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plants with material co-production in energy system optimization models including, e.g., reservoir productivity predictions, novel surface processes for CRM extraction, CO₂ reinjection, and reconversion
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Your Job: Create a novel catalyst design, based on state-of-the-art thin film technologies and subsequent delamination of atomically defined oxides. Demonstrate the transfer process for
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evolution reaction (OER), a major bottleneck in current electrolysis processes, and explore stabilization strategies based on protective layers. Study the electronic structure of the hybrid catalysts and
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understood because of lacking sufficient in situ data. In addition, the dynamics and transport processes across the UTLS adds complexity to unveil the role of UTLS aerosols in cirrus formation and the life
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projects are within the overall theme of neuromorphic computing and analog signal processing, targeting applications in the fields of communication, sensing, geo-localization, space and biomedical. This PhD
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projects are within the overall theme of neuromorphic computing and analog signal processing, targeting applications in the fields of communication, sensing, geolocalization, space and biomedical. This PhD
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Your Job: Scientific analysis of additive manufacturing in the context of future production, material, and energy systems Research on the state of the art in additive manufacturing processes with a
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, engineering, physics, biophysics, applied mathematics, computational biology or a related quantitative field Strong background in deep learning for image analysis / computer vision, ideally on microscopy time
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want to hear from you! Your Job: Work on a wide range of computer vision and machine learning methods and applications focusing on the aspects outlined above, inspired by the needs of societally relevant
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a soldering station, hardware tools, as well as using a computer You are willing to expand your knowledge to cover the entire range of sample environment at JCNS You are a good team-player when it