355 web-developer "https:" "https:" "https:" "Fraunhofer Gesellschaft" positions at NIST
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trade-offs that severely compromise the overall efficiency and lifecycle of flow battery technology. We are working to develop strategies to improve on those performance trade offs. We are using rheology
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course-grained simulations of nanotubes with large adsorbed dispersant molecules in solution. It is expected that the challenging nature of these simulations will require the development of novel
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spin dynamic simulations are available to develop approaches compatible with industrial environments. Applications in topic areas can be broad reaching with examples (but not limited to): energy
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(1) development of nanoscale characterization techniques to measure mechanical, chemical, and rheological properties of microscopic volume elements with nanoscale spatial resolution using atomic force
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are not sufficiently accurate, or the methods are too expensive to accurately model sufficiently large systems. As a result, these computational problems are ideal for developing machine-learned potentials
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challenge to design around. This project will focus on microstructural modeling approaches, including both conventional phase field, phase field crystal; and level set methods, to understand the evolution
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additives, plastic species, and degradation products, among others. This opportunity is focused on the measurement development and subsequent application of mass spectrometry (e.g., pyrolysis-GC-MS, ambient
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bacteria typically reproduce asexually, they have developed multiple methods to share genetic information via Horizontal Gene Transfer (HGT, also called Lateral Gene Transfer). These mechanisms operate
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Edward Ryan Sisco edward.sisco@nist.gov 301 975 2093 Description This opportunity covers a range of research avenues focused on developing and increasing the use of chemometric techniques for the treatment
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NIST only participates in the February and August reviews. Research focuses on the development and application of advanced multi-detector separation science techniques. Topics include characterizing