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and synchrotron radiation, with the goal of informing component design, shielding, and electronics protection strategies. The successful candidate will work closely with the beam optics, lattice, and
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. Qualifications Required Qualifications: Ph.D. degree in engineering, mathematics, physics, or computer science. Successful publication records in thermos-fluids area. Expertise in model development using lattice
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materials and their unique physical phenomena, such as metal-insulator transitions, charge-spin-lattice correlations, and the critical role of defects and interfaces. Utilizing state-of-the-art electron
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into such questions, with an emphasis on exploiting x-ray wavefront coherence at short wavelengths. Areas of focus will include quantification of lattice quality and growth dynamics during chemical vapor deposition
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states, such as heavy fermions in a Kondo lattice, integer and fractional Chern insulators, and orbital ferromagnets. "An electronic quantum simulator-Programa Fundamentos de la Fundación BBVA 2022". Share
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scenarios; building network models in one or more platforms (e.g., loop analysis/qpress; fuzzy cognitive maps/Mental Modeler; Bayesian belief networks; etc.); and interpreting, communicating to broad