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Field
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grant-funded position involves conducting research through multidisciplinary approaches to investigate host immunity to pathogens, bacterial physiology, structural biology, macrophage biology, host
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optimization schemes. From developing AI models to uncover structure-function relationships with limited data sets, to building automated electrode-electrolyte interface discovery workflows and implementing full
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. Given the medicinal chemistry–driven nature of this project, we are specifically seeking a candidate with documented experience in lead optimization, including structure–activity relationship (SAR
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reactors and the study of sonochemical reaction engineering. We excel at controlled experiments aimed at determining the driving forces for optimally efficient sonochemistry across different reactor scales
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that seeks to link material structure, transformation processes, performance properties (mechanical, thermal, fire resistance, absorption, etc.), and their evolution throughout the product lifecycle
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development at Ames National Laboratory that address domestic supply-chain resilience. The role will pursue mechanisms, structure–property relationships, and phase evolution, associated with the discovery
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development spanning areas such as optimization, Fourier analysis, numerical linear algebra, statistics, machine learning, and high-performance computing for one or more of the following: (1) reconstruction
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configurations in Energy applications. Lead the development of a unique experimental platform for in-situ characterization under environmental loading of laminated structures. Plan and execute research tasks
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: * Design, construction, and optimization of a high-throughput, multiplexed setup for single-particle spectroscopy based on SPAD arrays. * Quantitative characterization and mitigation of error sources
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Posting Details Position Information Fiscal Year 2025-2026 Position Title Postdoctoral Associate Classification Title Postdoctoral Associate Department Structural Biology Department Posting Number