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mechanisms of functional nucleic acids and the various proteins that interact with them. This multidisciplinary research environment integrates concepts from biology, chemistry, physics, computer science, and
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will lead to fundamental advances in human-water systems theory and applied research benefits for local water and land managers. Thus, the ideal candidate would have strong quantitative skills
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investigation of solvation structures and interfacial alignment. Additional responsibilities include developing computational tools for force field parameterization and simulation workflows, collaborating with
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Structural Biology Center and the Mass Spectrometry & Analytical Proteomics Laboratory. Office space adjacent to the laboratory and a desktop computer will be provided. Job Description Work directly with PI