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aviation fuel thru gasification processes. However, these high-temperature technologies remain costly, energy-intensive, and sensitive to the heterogeneity of raw materials. Smoldering or slow solid
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advance low-temperature Cu/dielectric hybrid bonding for fine-pitch, high-density interconnects by developing and validating a new flow with reliable dielectric sealing under ≤200 °C. The role integrates
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group’s research advances polymer network design to achieve high mechanical performance for the evolving demands of modern technologies. For more details, please view https://www.ntu.edu.sg/mse/research
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advanced battery technologies with strong translational and commercialization potential. The project focuses on next-generation batteries in three parallel research directions: extreme-temperature (high
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materials prediction and synthesis workflow to find high-temperature superconductors since 2022 (SuperC ). Our CEO spent over 15 years in the chemicals and energy industry in executive roles and has
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. Exposure to extreme temperature changes. Ability to work outdoors in all weather conditions including in the heat and cold. Some overtime, including nights, weekends, and holidays may be required. Frequent
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properties of nanostructures with atomic-scale precisions. The project will rely on the use of an Atomic Force Microscope (AFM) operating at low temperature (4K) and under ultra-high vacuum, that will be used
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study on the influence of shell geometry and tube eccentricity on phase change material melting in shell and tube heat exchangers, Int. J. Heat Mass Transf. 227 (2024) 125571. https://doi.org/10.1016
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corridors and limits the reliability of design evaluations. Pedestrian heat stress during the warm season is rising significantly also in the continental climate of Nordic cities. In the cold season, winter
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ceramic materials with low electrical permittivity and lower sintering temperature based on project proposal guidelines Performing solid-state synthesis and developing slurry compositions for ULTCC tape