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devices. Characterize optical performance and losses in fabricated devices and heterostructures and develop a deeper understanding for sources of loss and mitigate their impact. Work in a fast paced and
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/device models into open-source software tools for integrated system dynamic and transient simulations. Integrate post-processing measures for simulations to help with automation. Deliver ORNL’s mission by
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salt breeders) is a plus. Experience in the analysis of heat transfer systems. Working knowledge of computer languages such as C++, FORTRAN, or Python. Experience with computer aided design (CAD
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. in Hydrology, Earth system science, Water resources engineering, Computational sciences, Computer sciences or a related field completed within the last 5 years (or expected soon). Demonstrated
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science, computer science, computer engineering, electrical engineering, and optical engineering, and frequently collaborates with partners in industry, academia, and other government organizations
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integration. This role offers a unique opportunity to contribute to the development of novel nanoscale metrology frameworks with direct implications for the design of next-generation optoelectronic devices
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Postdoctoral Research Associate - Energy materials synthesis and exploration with neutron scattering
scatterings including phase formation, evolution, and elemental site occupancy in crystal structure etc. will be transferred to help to develop process of fabrication of large energy storage device. This work
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engineering or equivalent field and 0-2 years of research experience. Background in quantitative analysis, mathematical modeling, data science and simulation techniques with expertise in optimization techniques
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, fabrication, and testing of integrated photonic devices and circuits. Excellent written and oral communication skills Motivated self-starter with the ability to work independently and to participate creatively
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efforts across DOE scientific applications. Develop and apply distributed intelligence methods on heterogeneous computing resources from edge devices to leadership-class systems. Develop novel