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including strongly correlated fermion materials, high-temperature superconductivity, topological electronic states of matter, developments and applications of computational methods at the density-functional
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conductivity of ionic liquids. 6. Measurement of density. 7. Measurement of thermal profiles using Differential Scanning Calorimetry. 8. Maintaining a laboratory notebook with records of all procedures
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candidate would work on projects in methods development for coupled electron-nuclear dynamics based on the exact factorization approach and time-dependent density functional theory. Projects involve theory
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