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of individual calculations as well as comparing multiple calculations. Experience with coding, web design and database interactions will help as all source code, calculation methods, and results will be made
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@nist.gov 301.975.8574 Description We will develop advanced methods for assessing the function of tissue engineered retinal pigment epithelium (RPE). The RPE is a monolayer of cells located in the back
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quantum-based voltage synthesis techniques. JNT can be implemented as both an absolute method and a temperature scaling technique relative to the current international temperature scale ITS 90
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, which require specific 3D conformations to function properly. Any abnormalities in their structures can result in serious health-related problems or drug efficacy losses. However, all current methods have
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on developing predictive tools for ceramic AM by combining computational and experimental approaches to study fundamental material processes during direct-ink writing and post-processing of ceramic parts. We
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NIST only participates in the February and August reviews. Fundamental questions in astrophysics and remote sensing rely on accurate radiometry. NIST is at the forefront of developing methods
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other lab techniques to investigate the structural changes at nanometer scale using the time-resolved neutron scattering methods on a wide range of soft matter materials. key words neutron scattering
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303 497 3094 Martin J. Stevens marty@nist.gov 303.497.4740 Description We are investigating methods of creating new quantum states of light such as Schrodinger cat states, NOON states, and Fock states
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somatic variant detection in tumors. This project would involve working with a unique group of technology and informatics developers in the public-private-academic Genome in a Bottle Consortium to develop
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for calibration in advanced imaging methods. At NIST, advances in “drop-on-demand” inkjet technology are poised to meet this need. Advanced gravimetric techniques allow the precise deposition of picoliter