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topology optimization, generative design, and bioinspired design, SC3DP creates optimized products using a variety of novel materials and printing processes, including hybrid printing, post-processing, and
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-sensing concrete. Lab test and analysis of self-sensing concrete. Optimize and evaluate the performance for field trials. Publish several papers in top journals. Write proposals for further development
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of land lost due to sea-level rise. The role will focus on conducting laboratory and field tests on sustainable construction materials, as well as writing project reports and scientific papers. Additionally
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modelling and optimization techniques, this research aims to identify optimum design and operational strategies that enhance system flexibility, improve resilience to variable supply and demand, and minimize
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to deliver on a collaborative research project, Proteins for Singapore (P4SG), where you will be part of the research team to establish and understand the structuration of algae/soybean/mung bean
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, building structure-activity relationships (SAR) around our hit compound. Advance our lab’s radical/photochemical synthetic methods and use to access new sugar-based chemical probes. Evaluate inhibitor
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crystal structure analysis Proficiency in at least one programming language for optimization (e.g., scikit-optimize using Python) Interpersonal skills such as collaborating with internal and external
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and gradient-based optimization methods in optimization of complex structures are significant. The knowledge of programming languages, numerical methods, material properties including their tribological
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characterization, data analysis, and interpretation, ensuring alignment with project objectives and timelines. Configure, operate, and optimize experimental setups for nanophotonic and optoelectronic measurements
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include analysing material structures at the atomic level, conducting failure analysis, selecting materials for new products, and optimizing manufacturing processes Responsibilities R&D: Lead material