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Field
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wicking structures using additive manufacturing and nanostructuring for two-phase heat transfer and heat pipe applications. Potential fabrication techniques include 3D metal printing, electrodeposition, and
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using additive manufacturing and nanostructuring for two-phase heat transfer and heat pipe applications. Potential fabrication techniques include 3D metal printing, electrodeposition, and other relevant
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visualizing heat transport at the nanoscale, energy-transfer dynamics in low-dimensional materials, energy-efficient switching pathways in nanoelectronics, and atomistic structural dynamics in next-generation
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combustion, heat transfer, combustion, and emissions. The successful candidate’s research will involve synergistic collaborations within a multidisciplinary team comprised of fellow postdoctoral appointees and
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careers in the field. As a Postdoctoral Research Fellow / Research Officer within the Pyrometallurgy Innovation Laboratory you will be responsible for undertaking high temperature experimental studies
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: Description: MIE1210 is an introductory course that will teach a Finite Volume (FV) and Finite Difference (FD) approaches to Computational Fluid Dynamics (CFD) and Heat Transfer. Since the advent
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martensitic-austenitic transformation). The cyclic loading and unloading (with intermediate heat transfer phases to/from the heat sink/source) of elastocaloric material can therefore ensure active cooling
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solving, (b) design and operation of experimental thermal/fluid systems, (c) mechanical systems and instrumentation, (d) knowledge in fluid dynamics, combustion, and heat transfer, and (e) thermal
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of the Earth and the other planets. Job description This is a fixed term 3-years postdoc position with a possible start after July 1st 2024. The project will involve high-pressure and high temperature
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of complex systems involving modeling of multiphase flows, heat transfer, external aerodynamics, and low-carbon propulsive systems by further developing commercial/in-house codes and high-performance computing