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experiments with active load control and interpreting the resulting microstructural evolution. Experience studying corrosion effects on materials relevant to nuclear systems. Experience with advanced materials
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bench scale micro-computed tomography and ultrasonic sensing methods to evaluate the state of charge and state of health of iron- and lead-based electrodes. Your research will be complemented by studies
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methods with optimization and decision-support models. Background in one or more of the following: time-series analysis, neural networks, forecasting, uncertainty quantification, sensitivity analysis
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harness the nonequilibrium correlation between structural, charge, and spin/pseudospin degrees of freedom in two-dimensional (2D) materials. The success of this program will lead to new means to control
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optimization, etc. Familiarity with electrochemical instrumentation suite (potentiostat, cyclers, electronic load) and materials characterization is welcomed. The applicant is expected to think and work