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Description The Communications Technology Laboratories (CTL) at NIST is looking for a research assistant to work developing mm-wave components from complex oxides. This project will involve dc to 110 GHz
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evan.groopman@nist.gov 301 975 2139 Description Nuclear Safeguards is a process by which States’ nuclear activities are verified to conform to their international commitments. One aspect of Nuclear Safeguards is
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to predict materials properties is essential to improve materials design methods. This research will focus on the development and integration of first principle calculations; atomistic simulations; and/or
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to this research is the development and application of real-time data analysis pipelines to process the vast, high-speed XRD datasets generated during AM processes. These pipelines will utilize
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edward.sisco@nist.gov 301 975 2093 Description This opportunity focuses on developing new methods, metrics, approaches, and techniques for the forensic analysis of seized drugs. Seized drug analysis is the most
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structure-mechanical property relationships are needed to enable diverse applications of these materials. There is a need for quantitative measurement methods to study the interfacial properties of the filler
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NIST only participates in the February and August reviews. Many industrial processes generate carbon dioxide as a by-product, which is released to the atmosphere and contributes to global warming
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240.314.6361 Description Despite the great promise for the field of proteomics, technologies for identifying and quantifying low abundance proteins remain limited. Mass spectrometry (MS) is the most widely used
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NIST only participates in the February and August reviews. The roll out of high-speed, low-latency communications networks is expected to drive economic growth through automation while creating new
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physics, such as transduction efficiency, nonlinear and coupled mode dynamics, and energy dissipation mechanisms. key words MEMS; NEMS; Microelectromechanical systems; Nanoelectromechanical systems