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especially for the growth of optimized devices. For these atomic structural characterizations, the laboratory has a latest-generation MET JEOL ARM200F Cold FEG corrected (Cs), equipped with ADF/ABF detectors
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management. Responsibilities: 1. Structure-guided engineering and optimization of novel proteins 2. Extensive characterization of proteins both in vitro and in vivo, including Cryo-EM 3. The use of advanced
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& Modeling: Develop and simulate numerical models of damage and failure in aerospace structures, including FEA for metamaterials. Materials Design & Characterization: Study and optimize metamaterials and
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are designed, constructed and operated to provide optimal spaces for living and working. The industry needs tools, metrics, and processes to create buildings that are more than just static structures but living
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and ML driven screening and optimization workflow to improve the generality of modern synthetic methods. Our first objective is to identify structural patterns and scaffolds that are accessible by
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of chemically storing and releasing hydrogen, using methanol as a reservoir. Main activities: • Utilize global optimization codes and perform DFT calculations on supercomputers. • Analyze results and
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for structural analysis of metabolites and lipids, creating metabolomics knowledge graphs, and inferring fluxes from MS data. The group collaborates with mass spectrometry vendors and technology partners
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Your Job: Digital methods for inverse materials design are essential to efficiently create new, sustainable and recycling-adapted structural metals. Alloys with a reduced number of elements, so
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filing, continuation, and abandonment, providing structured recommendations to the Head of KTT in coordination with the relevant Innovation Managers. Optimize resource allocation by identifying non
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable