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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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include expertise in igneous and metamorphic petrology, thermodynamics, major and trace element analysis, computing, and modeling. The department houses key instrumentation, especially a LA-ICP-MS system
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the impacts of precursor selection, surface preparation, and process conditions using experimental and computational techniques. Fundamental mechanisms will be studied in detail using in situ and ex situ
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