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on developing advanced chemical characterization and analytical chemistry tools, data and research materials related to the comprehensive measurement of inorganic, organic and particulate chemical tracers in
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. In this project, we are developing metrology needed for the synthesis, processing, and characterization of low-dimensional materials to enable reliable nanoscale device development and manufacturing
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, oxidation, and mechanical wear of chain scission in fibers are required to support the development of predictive models. This project seeks to utilize and develop novel chemical and mechanical techniques
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Tytus Dehinn Mui Mak tytus.mak@nist.gov 202.360.6799 Description In the past decade, the rapid pace of development in mass spectrometry technologies has accelerated the rise of metabolomics and resulted
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Communications Technology Laboratory (CTL) are seeking a Postdoctoral Fellow to develop high-pressure NMR spectroscopy for the measurement of intermolecular interactions of ions in solution. Measurements of ion
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@nist.gov 301.975.2860 Description New developments in detector technology have made possible the acquisition of the full electron scattering distribution at each pixel in a scanning transmission electron
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Technology Laboratory (CTL) is seeking a Postdoctoral Fellow to develop new spectroscopy for intermolecular interactions. The team is pioneering an electric-acoustic spectrometer that selectively drives and
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, plays an important role at NIST in the development and interpretation of new measurement techniques, as well as aiding the understanding of the behavior of new materials in existing measurements. In
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parameter space challenging due to the sheer number of possible compositions. To enable rational design of these materials, we have developed a highly adaptable sample environment that can be programmed
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david.bunk@nist.gov 301.975.5071 Johanna Camara johanna.camara@nist.gov 301.975.4672 Description Research focuses on understanding and developing advanced techniques in mass spectrometry and applying them