182 structures "https:" "https:" "https:" "https:" "https:" "University of Kent" positions at NIST in United States
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soft materials are sought especially for the following programmatic areas of interest: (1) Structural properties, dynamics and transport in thermoplastic, thermoset, and functional polymers; (2
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system. However, not much is known about how these chemical modifications affect structure-function relationships. We propose to develop robust computational modeling in conjunction with experimental NMR
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elements with sub-wavelength periodicity (“high-contrast gratings”) as optomechanical elements. Such structures enable a rich variety of devices, including mirrors, polarizers, and filters in a configuration
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work is anticipated in the areas of microresonator design, engineering biology/biomanufacturing, dioxygen imaging in 3D cell culture, and structural biology methods development. Knowledge of microwave
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photolithography methods. The self-assembly of the block copolymer is directed by a template patterned by conventional lithographic methods. The block copolymer structure within the pattern template can amplify the
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of methods to fabricate and characterize test structures and devices incorporating graphene (single layer, bi-layer, and few layer) and stacked structures. Condensed matter physics; Graphene; Magneto-transport
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dioxide capture, storage, and utilization. We use diffraction and neutron scattering techniques to study structures and dynamics of CO2 after absorption in order to elucidate location and dynamics of CO2 in
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nanotechnology, material science, nano and quantum technologies. We look for candidates interested in in further developing NIST unique PTIR instrumentation (see description at: https://www.nist.gov/programs
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separation, energy converting biological processes, and signal transduction. However, despite their obvious importance, atomic structures have been determined for only a few dozen of these proteins because
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information regarding this project visit http://www.nist.gov/pml/div683/grp05/dreyes-hernandez.cfm/ . References Quelennec A, Gorman JJ and Reyes DR, Amontons-Coulomb-like slip dynamics in acousto-microfluidics