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Postdoc – Performance requirements for biobased construction materials used in the building envelope
existing materials as well as new products, covering both new buildings and renovation. Focusing on developing robust solutions that enhance the sustainability of construction, including increased use
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hyperpolarized 13C magnetic resonance spectroscopy, nanodiamond-based quantum sensing of ROS, and advanced label-free optical microscopy to establish robust experimental workflows for studying infection biology
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machine learning models directly on these edge devices for real-time anomaly detection and identification. You will develop robust signal acquisition and processing pipelines, translate research-grade
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-energy interactions to evaluate cross-sector optimization and CO₂ reduction potential. Conducting scenario-based simulations to assess system performance, flexibility potentials, and robustness under
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potentials, and robustness under different future energy configurations. Identifying and optimizing integrated energy solutions that improve the efficiency and operational value of the CO2 hub. Contributing
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view of GGR and SRM in the transition to climate neutrality in Europe. The project will conduct world-class research and generate robust, scientific resources for evidence-based policy advice and global
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lead the image processing and computational analysis efforts, developing robust methods to register, segment, and analyse spectral micro-CT data, and — where relevant — advance reconstruction and
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on the synthesis and optimization of a proprietary thermodynamic promoter for gas hydrate–based CO2 capture. Improve synthesis routes to significantly increase yield, robustness, and reproducibility while reducing
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-integrated monitoring and diagnostics from electrical signatures, physics-informed and probabilistic learning methods for robust adaptation across varying mission profiles, and experimental validation on state
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on the synthesis and optimization of a proprietary thermodynamic promoter for gas hydrate–based CO₂ capture. Improve synthesis routes to significantly increase yield, robustness, and reproducibility while reducing