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Field
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-domain transfer, and creating human-in-the-loop optimization pipelines that incorporate expert feedback—aligning with the multi-year research roadmap (WP1–WP3) . As a postdoctoral researcher, you will take
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” group, we work on digitizing building data and making it usable for automated applications and optimizations. To this end, we have developed a web app that uses an AI-based pipeline (computer vision, LLMs
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validate it with experimental data Integrate your model into an ammonia synthesis process Identify optimal operating conditions by conducting sensitivity analyses and evaluate the performance of the overall
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on model surfaces In situ and operando (surface) X-ray scattering studies of catalyst/polymer interfaces Design, optimization, and testing/benchmarking of reactors for in situ and operando studies
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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Stein bei N rnberg, Bayern | Germany | about 1 month ago
platform Implement and optimize system architectures, including optical setups, control systems, and measurement pipelines Characterize, benchmark, and iteratively improve system performance using advanced
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printer driver Cuttlefish which prepares data for 3D printing to achieve the optimal color reproduction. In addition, we develop data-driven design software to establish a digital process with additive
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well as cooperation of science and economy. GSaME offers the optimal conditions for graduates to earn the titles of Dr-Ing and Dr rer pol. Young scientists have the opportunity to be integrated
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optimization, and technological applications. Research in the field of neuro-inflammation would be desirable. The applicants should strengthen this focus by incorporating existing research networks
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: University degree in veterinary medicine, agricultural science or a comparable field of study Sound knowledge of animal nutrition, animal physiology and feed science Practical experience in working with
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sensors, actuators, transducers, etc. Fundamental knowledge of the structural mechanisms behind electromechanical coupling will allow for their systematic exploitation and go beyond the empirical approaches