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mechanisms, micro- and nanofabrication techniques, as well as, more generally, new applications of magnetics-based nanotechnology to biomedicine. Depending on chosen research direction, there may be
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the successful applicant an opportunity to interact with a variety of NIST engineers and scientists. key words Semiconductor manufacturing; Advanced packaging; Smart manufacturing; Intelligent manufacturing
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Comprehensive and innovative measurements will be conducted in a series of full-scale underventilated room fires. Detailed measurements accounting for carbon in every possible form (i.e., fuel, soot, intermediate
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material properties and evolves as a function of deformation. Accurate measurement of the crystallographic texture is the key to understanding how the material will respond during forming of parts
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Description Mathematical modeling forms the basis for understanding, simulating, optimizing and controlling numerous scientific phenomenon and associated measurements. Mathematical models frequently take the
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Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials
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975 3675 Description In the last few decades, the basic nanoscale three-dimensional (3D) surface profiling of the atomic force microscope (AFM) has been augmented by a variety of property
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(e.g., metal-organic frameworks, hydrogen-bonded organic frameworks etc.) are promising candidates for many gas storage and separation applications. Rational design of new materials requires fundamental
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reactions related to energy transformation, advanced manufacturing, security, and the environment. Projects focus on the development and application of real-time, in-situ, advanced measurement capabilities
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to optimize the stability, targeting, and delivery of drugs using nanoparticles requires a thorough understanding of the roles the NP core (e.g., size, shape, composition, etc.) and surface properties