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technologies and affiliated hyphenated analysis techniques such as liquid chromatography coupled to HRAM-MS for chemical fingerprinting; (3) investigation of chemometric and other data analytical methods
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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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interested in investigations of new approaches for detecting and measuring drugs of abuse in tissues and body fluids. Research is encouraged on the analysis of hair for drugs of abuse to determine whether
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include (but are not limited to) biomolecules, transition metal surfaces, and nanoparticles. Chemical Reactivity Theory provides a framework for the calculation of a number of indices which characterize
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for size-resolved analysis of nanoparticle core and surface composition; (4) the development of analytical methods for detection and monitoring of engineered nanoparticles and their transformational products
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. References [1] Ketan S. Khare and Frederick R. Phelan Jr., "Quantitative Comparison of Atomistic Simulations with Experiment for a Cross-Linked Epoxy: A Specific Volume–Cooling Rate Analysis," Macromolecules
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NIST only participates in the February and August reviews. More rigorous and advanced methods for the analysis of evidence are needed in forensic science and have been called for by the National
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. Opportunities are available in instrument development and automation, astronomical and atmospheric data analysis. Participation in more than one project is possible. Our Current Projects: NIST Stars: Motivated by
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advantage of associated particle separations, physical characterization, and chemical analysis. Projects incorporating machine learning and chemometric approaches are also welcome. We are seeking independent
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speed, spectral clarity, and spectral breadth. This system has been applied to cells, tissues, and biomaterials. Our interest in further development is two-fold: (1) Numerical processing and analysis