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Experience in modeling hydraulic fracturing and carbon sequestration Experience in Multiphysics modeling in solid mechanics framework Experience in non-linear solid material response and fracture modeling
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Carnegie Mellon University is a private, global research university that stands among the world’s most renowned education institutions. With ground-breaking brain science, path-breaking performances
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scientist with a strong biological background to lead experimental work at the nano–bio interface. The ideal candidate brings a track record evidenced by a solid publication record. Our research centers
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potential lends itself to this. Required profile: · With a PhD in physics or mechanical engineering, the successful candidate will have acquired solid skills in the mathematical and numerical methods
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, understanding degradation mechanisms, and improving electrochemical performance. The postdoc will work with state-of-the-art facilities for materials synthesis, structural and electrochemical characterization
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degradation mechanisms, and improving electrochemical performance. The postdoc will work with state-of-the-art facilities for materials synthesis, structural and electrochemical characterization, and in-depth
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sensitive battery materials, in particular: - solid-state NMR - electron microscopy - lab-based and synchrotron-based x-ray techniques • solid-state
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ore characterization techniques (mechanical, mineralogical, physical). Solid knowledge of comminution technologies and mineral beneficiation processes. Strong analytical and problem-solving skills
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: - solid-state NMR - electron microscopy - lab-based and synchrotron-based x-ray techniques solid-state electrochemistry, in particular: - electrochemical