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Field
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sector coupling across electricity, heat, and fuels, including Power-to-X pathways (e.g., hydrogen and synthetic fuels). Design and apply advanced optimization and control methods, including model
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) - implement and use a local test-setup for experiments with ultra-cold quantum gases of Rubidium and Potassium - work closely with postdoctoral fellows, other doctoral candidates and Masters students
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scientific publishing is regarded as beneficial. Interest and willingness for, or experience with, field work in high-mountain/cold environments is an advantage. Language requirement: Good oral and written
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frequency high temperature operation of Wide Band Gap (WBG) SiC Semiconductor devices and applications. (2) Establish foundational work in the modelling, design, performance evaluation, and benchmarking
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, such as use of high temperature furnaces. Demonstrable expertise in the analysis of materials using techniques such as X-ray diffraction, Raman spectroscopy, scanning electron microscopy and porosimetry. A
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These tools will be used to obtain high-resolution insights into fuel-air mixing, spray break-up, heat release, soot formation, and in-cylinder flow structures. The purpose of a postdoctoral position is to
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scientific publishing is regarded as beneficial. Interest and willingness for, or experience with, field work in high-mountain/cold environments is an advantage. Language requirement: Good oral and written
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coordinating electricity, heat, cooling, and hydrogen flows in distributed energy networks. While the primary focus is on developing a scalable and economically viable energy management solution, potential case
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schemes using combinations of electro-optical modulators and high-finesse optical resonators - organize and participate in GAIN measurement campaigns - work closely with other postdoctoral fellows
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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