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activities include performing microstructural characterization using electron microscopy, atom probe tomography and other advanced characterization techniques, and developing an understanding
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analysis, and GPU/FPGA-based acceleration. Ability to work in a multidisciplinary team, collaborate with industry and international partners, and contribute to the design of next-generation electron imaging
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of physical metallurgy and mechanical behavior of materials. Basic understanding of irradiation on materials. Preferred Qualifications: Hands-on experiences in focused ion beam (FIB), transmission electron
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challenges facing the nation. We are seeking a Postdoctoral Research Associate who will focus on Advanced electron microscopy research for energy materials. This position resides in the STEM group in
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to the performance of high-power accelerators such as the Spallation Neutron Source (SNS). The goal of this work is to demonstrate predictive modeling of beam distributions in a realistic accelerator, and as such
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probing the crystalline, electronic, and magnetic properties. Your emphasis will be on the development and characterization of new material platforms to understand and control emergent phenomena in
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leadership. Demonstrated ability to manage project schedules, scopes, and budgets. Special Requirements: Applicants cannot have received their PhD more than five years prior to the date of application and must
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completed within the last 5 years. Expertise in power systems and power electronics. Experience in C/C++, Matlab, and Python programming. Experience in power systems software like PSCAD, PSS/e. Preferred
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measurements and data analysis. Experience in hyperspectral imaging. Excellent written and oral communication skills. Motivated self-starter with the ability to work independently and to participate creatively
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the next generation of high efficiency power generation and transportation. As part of our research team, you will coordinate laboratory work on high temperature oxidation in various environments (e.g