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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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daniel.sunday@nist.gov 301 975 4921 Description Conventional optical-based photolithography is reaching the limits of scaling for the patterning and fabrication of nanoscale devices. The semiconductor industry
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used to construct custom geometries. Arthritic disease states are induced with lipopolysaccharide and glucose. Osteoporotic states are induced by knock out. Mechanisms of disease and repair will be
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memory, batteries, catalysts, flexible devices, alternate computing paradigms, and quantum phenomena. In order to take advantage of the promising properties of these heterogeneous systems, holistic study
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. A key component of the project is high sensitivity magnetic scanning microscopy of these nano-objects, most likely using SQUID magnetometers. We are seeking a postdoc with background in scanning
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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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but inaccurate, leading to overconfidence in position data.This fundamental issue is becoming more important as localization microscopy matures, requiring not only novel methods but also reliable
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spectra and to suggest new avenues for experimental study. As the number of atoms in a molecule increases, calculations become correspondingly expensive. One means of addressing this problem is through
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of methane, ammonia, and nitrous oxide and DCS offers the ability to simultaneously measure multiple gases in a field environment. Not only is this indispensable for testing gas mitigation strategies, but