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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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. Collaboration: Work closely with materials teams in AWESOME Subprojects 2 and 3 as well as other project collaborators. Professional Development: Present research at national/international conferences, contribute
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. Proficiency in at least one of the following: hydrologic modeling, energy systems modeling, systems simulation, or machine learning/AI. Ability to work effectively on interdisciplinary, team-based research
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collaborators. Publish high-impact research in top-tier materials science and applied physics journals. Present research at national/international conferences. Participate in reflective mentoring practices in