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well as holography and tomography capability. Experience in STEM/TEM imaging and microanalysis is preferred. key words TEM, STEM, XRD, superconductors, quantum computing Eligibility citizenship Open to U.S. citizens
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, roughly), where the blackbody field is 10,000 times smaller. In this regime, Rydberg atoms could represent a factor of 100 improvement in sensitivity to 300 K blackbody fields, while being primary. Proving
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or cell culture media) can be used to identify markers relevant to human health or biomanufacturing success. A critical step in the metabolomic analysis of any such biological mixture is the confident
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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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/STM equipped with a tuning fork style probe for dynamic force spectroscopy. This system will be used to explore single atom break junctions where we attempt to accurately measure the rupture force of a
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require novel materials that have ever-increasing demands on fabrication compatibility and performance. One of these demands is for materials that combine both high perpendicular anisotropy (i.e., remanent
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to alcohol consumption have been set and alcohol concentration in the breath is easily determined by non-invasive field tests. However, intoxication and thus, impairment indicators from other types of drugs
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john.kitching@nist.gov 303.497.4083 Description The combination of MEMS microfabrication processes and precision spectroscopy is opening the door to highly precise instruments and sensors that are also very small
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. Silver richard.silver@nist.gov 301.975.5609 Description Controlling the quantum state of individual electrons is a challenge central to many fundamental measurements and future computation architectures
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@nist.gov 303 497 5530 Nikolas Wilson Hrabe nik.hrabe@nist.gov 303.497.3424 Description Additive manufacturing (AM) is a transformational technology for fabricating complex metallic shapes directly from 3-D