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of Energy Sciences. At the division, we conduct research and education on energy production, conversion, and utilization in different electro- and thermo-mechanical systems where the study of heat transfer
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-ray, neutron, and charged-particle flux; material selection for structural and functional reactor components; exploration of advanced and conventional cooling systems; energy extraction and conversion
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technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems
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, conversion and storage, and organic optoelectronics intelligent and advanced polymers and materials. About the project: This project aims to lower energy consumption and increase the water recovery of
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high-temperature and pressure energy systems (e.g., supercritical CO2 [sCO2]), experimentation or modeling of supercritical fluids, thermomechanical design, and/or experimentation or modeling of additively