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micromechanical behavior under loading conditions (e.g., tension, compression, creep). Perform detailed microstructural characterization using SEM, EBSD, TEM, XRD, and related techniques. Analyze lattice strain
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computing, dynamical systems, and applied mathematics to develop new mathematical frameworks for representing, compressing, and computing with complex physical systems. The project is carried out in close
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National Energy Technology Laboratory (NETL) | Albany, New York | United States | about 15 hours ago
, to investigate dislocation core structures, dislocation mobility, and dislocation-driven mechanical behavior such as tension, compression, creep, and fatigue as functions of compositions, temperature, stress, time
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printing experience in MRI image reconstruction (nonuniform FFT, compressive sensing, etc.) a good publication track record experience in supervising students. Your benefits You will have access
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will be part of a research team working on the development of a prototype of liquid piston for isothermal compression/expansion. Villanova is a Catholic university sponsored by the Augustinian Order. The
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for representing, compressing, and computing with complex physical systems. The project is carried out in close collaboration with researchers in Electrical Engineering working on emerging memory architectures and
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the integrity of compressed storage solutions. Plan and execute research tasks, analyzing data, publishing findings in peer-reviewed journals, and presenting research at scientific conferences. May participate in