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is how chain architecture, main chain stiffness, and side group flexibility impacts the elastic modulus of ultrathin polymer films. Additionally, we are developing methods for quantifying the tensile
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Development of magnetism-based future electronics is fueled by demand for large memory capacity and high data processing rates. New technologies such as hard drives with bit-patterned media and magnetic memory
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Nanoelectronic-Based Manipulation and Measurement Tools for Biological Applications NIST only participates in the February and August reviews. We are developing physical measurement tools and
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NIST only participates in the February and August reviews. The goal of this project is to develop nano-electromagnetic imaging using scanning microwave, NV center, and magnetic resonance microscopy
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location 50.68.31.B7380 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Jason J. Gorman gorman@nist.gov 301.975.3446 Description We are developing
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course-grained simulations of nanotubes with large adsorbed dispersant molecules in solution. It is expected that the challenging nature of these simulations will require the development of novel
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NRC Programs at National Institute of Standards and Technology This page provides specific information related to the NRC Research and Fellowship Program at NIST. Use the navigation on the left
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) motivates research in Knowledge Representation and Reasoning (KRR). The successful applicant would have an opportunity to apply their expertise in semantic web, linked data, and knowledge graphs to the field
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Robotic Systems for Smart Manufacturing Program is developing the measurement science needed to enable manufacturers to characterize and understand the performance of robotics systems within
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tunable materials such as ferroelectrics and multiferroics for adaptable electronics. New materials are continually being developed for electronic applications, and accurate measurements