119 engineering-computation-"https:"-"https:"-"https:"-"https:"-"https:"-"U.S" positions at NIST
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that are poorly-defined and irreproducible. We are currently working to (1) use 2D and 3D bioprinting in vitro to engineer structured microbial communities that mimic the complex spatial and genotypic organization
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-process densification. Complementary computational model simulation capabilities are also available. [1] J. Ilavsky, F. Zhang, R.N. Andrews, I. Kuzmenko, P.R. Jemian, L.E. Levine & A.J. Allen; J. Appl
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multiple laser lines. Also exciting is a combination of Raman microscopy and microfluidic technology to monitor the vibrational spectra of biomolecules while rapidly changing the buffer environment to induce
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circuit design and the signal-chain engineering. We will focus on an in-depth analysis of the correlations between the design of the charge circuit and the resulting level of noise and charge sensing
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infrastructure to its limits. Naturally, engineers have pushed existing devices and networks to ever-increasing frequencies in an effort to address this multifaceted problem by improving data rates and adding
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catalytic turnover. Integrative modeling and machine learning have the promise of establishing new tools for combining computational and experimental data from HDX-MS and NMR to explain the dynamics and
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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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. The uncertainty of conventional fire measurements can be large due to the practical assumptions used to develop the measurements. State-of-the-art measurement technology is available to provide independent
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interaction networks within naturally occurring microbiomes (i.e., 10^2-10^3 constituent species). This project lies solidly at the interface of microbiology and microbiome engineering, analytical and
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prediction. In collaboration with NASA, NOAA, and the USGS, NIST develops technology to advance the calibration and characterization of ground- and space-based infrared, optical, and temperature sensors