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computational simulations to understand how bacteria communicate, acquire nutrients, and cause disease—and to translate these mechanistic insights into new strategies for targeting bacterial virulence
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Leadership: Drive both computational and experimental aspects of spiking neuromorphic architecture design. Cross-disciplinary Integration: Bridge measured material properties and device behaviors with
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and energy systems simulations, and scenario forecasting-to evaluate dynamic energy-water futures and resilience strategies for diverse Idaho communities. Job Summary/Basic Function: The Postdoctoral
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duration of 2.5 years. Department Overview: This fellowship will be housed in the Atomic Films Laboratory of Professor Elton Graugnard in the Boise State Micron School of Materials Science and Engineering