219 evolution "https:" "https:" "https:" "https:" "https:" "University of Warwick" positions at NIST
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focus on the development and application of new and emerging technologies to solve forensic problems and facilitate technology transitions within the forensic community. key words Sequencing; Capillary
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. This research space seeks to identify resilience strategies that achieve other community goals (e.g., economic development, safety, and equity) through co-benefits, some of which may not have a straight-forward
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characterize, manufactured particles suffer heterogeneity issues which hinder treatment efficacy and safety. To speed treatment development and improve efficacy and safety we are developing interferometric
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LC-MS/MS instruments and custom software tools. Individuals with a background in proteomic sample preparation, mass spectrometry, and software development are encouraged to apply as well those who have
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will have opportunities for participation in instrument/technique development projects. key words Radionuclide metrology; Digital data acquisition; Si(Li) detector; HPGe detector; Coincidence counting
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been in development over the past 15+ years and their capabilities have grown significantly. An important effort within the LPBF community is the use of high-fidelity multiphysics models to predict melt
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system. We are interested in a range of research topics, from the applied to the fundamental, covering such areas as understanding epitaxial growth of III-nitride nanostructures and development of new
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to differentiated states. This project involves a team working in live cell imaging, data analysis, and probabilistic model development. References Sisan D.R., et al. (2012) Predicting rates of cell state change due
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methods, and digital signal processing and network modeling. Other research topics are High-Tc superconductive Josephson junction array waveform synthesizers and compact cryogenic design for the development
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are seeking researchers to contribute to the development and application of advanced measurement and automation techniques for exploring processing-structure-property-performance (PSPP) relationships in