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. Opportunities exist for (1) the development of simple yet accurate modeling approaches that enable rapid collapse analysis of large structural systems, (2) comparison and quantification of the progressive
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@nist.gov 301.975.6740 Description With the development of nanoparticle and colloidal technologies that include processing in the dispersed phase (or are fundamentally liquid phase processes), there is a need
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) to develop new imaging and metrological capabilities for studying nanoscale electronic properties. In particular, we are interested in combining time-resolved optical techniques with our microwave methods
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303.492.5291 Description Single molecule studies are revolutionizing biophysics. The Perkins group focuses on developing and applying high-precision single-molecule studies based on optical traps and atomic
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measurements of these systems. Theory and simulations are being done to develop this understanding. We are investigating the electronic and optical properties of quantum dots and wires, metallic and
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biotechnology. Yet, the translation of technologies requires greater measurement confidence underpinned by SRMs. Data produced by the NIST-led Genome in a Bottle Consortium led to the development of the first
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6361 Description This research opportunity focuses on developing and improving the state-of-the-art methods for analysis, modeling, and simulation of structural responses for performance-based seismic
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problems, including ensuring the reliability of our nation’s infrastructure, development of methods for storage and transport of alternative fuels, and development of critical data on radiation’s effects
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Actinic Optical Dimensional Characterization of Deep-Subwavelength Nanostructures NIST only participates in the February and August reviews. This research opportunity centers on the development
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NIST only participates in the February and August reviews. NIST has recently launched a program to develop high accuracy 3D thermal imaging and control using thermosensitive magnetic nano-objects