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properties, and other surface phenomena. We are particularly interested in the response to temperature, solvents, radiation, pH, ionic strength, biomolecules, and impact on thin polymer film behavior. High
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, or techniques that will speed up analysis times, provide increased information to the chemist, and/or simplify data interpretation while enhancing data quality. One of the goals of the forensic program at NIST is
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, high sensitivity methods for far-infrared detection, and wide bandwidth UV-IR devices for absolute calibration of incident photon flux. A qualified candidate would already have expertise in at least
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the field of flexible electronics. Developing an effective flexible electronic structure has its own challenges from mechanical compliance of the substrate to device performance. There is a delicate balance
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technologies to manipulate biological macromolecules such as DNA, and the controlled degradation of tissue engineering scaffold or drug delivery materials. To optimize performance and to design new applications
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materials. We are at the forefront of mechanical testing of these materials, performing fracture, fatigue, and ductility testing on samples, which scale from micron-sized to meters long. We characterize
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/or mobile internal regions, as well as RNA and DNA constructs with high density of residual dipolar coupling (RDC) restraints. Reference Maltsev AS, Grishaev A, et al: Improved cross-validation of a
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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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microfluidic networks.Our goal is to develop systems that enable accurate, high-throughput, and dynamic measurement of materials in flow, which will, for example, improve the ability to specify composition and
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, from scratch, by attachment of an electron onto a fully-stripped (bare) nucleus to occupy high angular momentum states with transition frequencies that are accessible to a femtosecond laser frequency