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on the development and application of high-resolution measurement methods to study fundamental problems with broad industrial impact in areas such as the service life prediction of polymeric materials. Recent projects
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quantitatively. Methods and reference materials are developed and tested to understand the reliability and uncertainty of the methods and interpretation of measurement results. Example application areas include
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focus on the development and application of new and emerging technologies to solve forensic problems and facilitate technology transitions within the forensic community. key words Sequencing; Capillary
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This research focuses on investigations of surface and interface electronic structure and ultrafast dynamics at organic heterojunctions with potential applications for organic electronics and LEDs. Topics
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is exchanged between organisms (e.g., between virus and host cells or between bacteria) and on adapting single nanopores for novel biological and biotechnological applications. It was recently shown
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. Applications will include benchmarking, verification, and error analysis of magnetic resonance imaging simulators and electromagnetic scattering codes. References Vico F, Gimbutas Z, et al: IEEE Transactions
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on the development of nucleic acid-based standard materials and the application of emerging technologies to assist clinical testing efforts. key words Sequencing; Capillary electrophoresis; DNA; Clinical; Genotyping
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attempts to detect, localize, and quantify nanoparticles in three-dimensional cellular environments. Successful applicants will have access to a multiphoton microscope with spectral capability, a focused ion
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lane.sander@nist.gov 301.975.3117 Lee L. Yu lee.yu@nist.gov 301.975.4127 Description This research is centered on the development and application of analytical methods to the characterization of nanomaterials
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Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials