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complex analysis, perturbation theory, variational techniques, and applied analysis will be useful for excelling in this work. Knowledge of electromagnetic field theory, numerical electromagnetics
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 15 days ago
Mathematics Lab integrates mathematical theory and numerical simulation with in-house experiments conducted in our dedicated wet lab. This collaborative environment extends throughout UNC’s Department
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(CFD) simulations. More information on Prof. Liselle Joseph and the PHASE research group can be found at the following link: https://www.aoe.vt.edu/people/faculty/liselle-joseph.html. This role offers
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looking for two qualified postdoctoral researchers that are self-motivated, creative and enthusiastic to work on experimental measurements and numerical simulations of heat transfer in micro/nanomaterials
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and optimization of measurement-based quantum computing protocols for quantum simulation of quantum many-body models. Preference will be given to candidates familiar with the stabilizer formalism and
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functional inversion. Additional applications are possible on quasi-exact nonadiabatic nuclear dynamics simulations using tensor network states (ML-MCTDH) of vibronic coupling models. Of particular interest
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into existing high-performance frameworks, the fast prototyping of new ideas in individual code, an interest in the entire simulation pipeline: starting from simple algorithms to state-of-the-art applications in
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practical and laboratory tests as well as sophisticated simulations. We not only publish research results gained at numerous conferences and in journals, but also make our software available in open source