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harness the nonequilibrium correlation between structural, charge, and spin/pseudospin degrees of freedom in two-dimensional (2D) materials. The success of this program will lead to new means to control
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to play a leading role in at least one of these two aims, as well as participate in the development of experiments to test the methods. The multi-disciplinary team in this project includes researchers from
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completed within the last 0-5 years) in engineering, chemistry, or similar degrees. Understanding of lithium-ion batteries and how they work. Understanding of the materials used to make lithium-ion batteries
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Position Requirements Ph.D. in experimental nuclear or particle physics with 0 to 3 years of experience or equivalent (by the time of the appointment). Degree must have been received within the last 5 years
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simulation laboratory as well as supporting ongoing DOE projects. Candidates will be required to work in at least 4 of the following areas: Develop a functioning test bed using Opal-RT PHIL real-time platform
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at scientific conferences and in peer-reviewed literature. Position Requirements Ph.D. degree level with 0 to 5 years of experience or equivalent in geochemistry, materials science, or a related field Knowledge