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dynamics of these systems at equilibrium conditions, the time dependent or transient structures of complex soft matter materials are significantly under explored, in particular at nanometer length scale
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NIST only participates in the February and August reviews. The Communications Technology Laboratories (CTL) at NIST is looking for a postdoctoral fellow to work to develop high-throughput materials
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RAP opportunity at National Institute of Standards and Technology NIST Microfluidics for Characterization of Complex Fluids Location Material Measurement Laboratory, Materials Science and
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semiconductor nanoparticles, dopant based quantum devices in Si, and complex nanosystems made from these structures. Generation, control, guiding, and manipulation of photons on the nanoscale with these systems
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-pairing equilibria or ion-complexation equilibria (in crown ethers or organometallic cages, for example) are of interest. Strategies to improve the measurements of temperature and pressure in the NMR sample
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. Integration of multiple measurement modalities can provide a more detailed understanding of the inter-molecular environment for complex fluid systems. We are actively pursuing integration of acoustic stimuli
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thermodynamic descriptions to model diffusion processes in a variety of disordered and ordered metallic systems. The next challenge is to model the diffusion mobilities in complex materials where a Calphad-type
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Description The Communications Technology Laboratories (CTL) at NIST is looking for a research assistant to work developing mm-wave components from complex oxides. This project will involve dc to 110 GHz
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RAP opportunity at National Institute of Standards and Technology NIST Mathematical Modeling of Magnetic Systems Location Information Technology Laboratory, Applied and Computational Mathematics
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out of equilibrium. Our mission is to illuminate the physical principles governing complex biological and bioinspired systems possessing one or more of these characteristics by synthesizing applied