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addition, the emerging "materials by design" paradigm places emphasis on the use the computation for the development and design of new materials. Candidates with an interest and background in computational
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, such as RF-based techniques, inertial sensors, imaging techniques, ultrasound, altimeters, and magnetometers. Cooperative localization techniques are also important. We are interested in not only improving
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-TEM, SEM, UV-VIS, SQUID, and SERS. key words Anisotropic nanoparticles; Biomedicine; Gold nanoparticles; Magnetic nanoparticles; Magnetic resonance imaging; Nanorod; Plasmonics; Synthesis; Toxicity
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-mapping through digital-image correlation and elevated temperatures of the environment. In addition to this unique facility, mechanical testing experiments are also conducted at other NIST facilities
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, folding, and function. Biophysics; Magnetic field; Modeling; Nanoparticles; Protein; Raman imaging; Resonance Raman; Surface-enhanced Raman spectroscopy (SERS);
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structure, crystallographic phase, grain structure, crystallographic texture, crystal defects, lattice strain, contaminants • Imaging of 3D assemblies of 2D materials: moving toward characterization in
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digital models through an additive process. AM enables the rapid production of complex parts with minimal lead time, fewer constraints, and reduced assembly requirements. This makes it an attractive option
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Nuclear Magnetic Resonance (NMR) and Magnetic Resonance Imaging (MRI) are key techniques used in the biological and medical fields, there is a growing use of these technologies in industrial settings
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Semiconductor manufacturing is a complex procedure with challenging variations in machines and processes. For example, due to high-mix semiconductor manufacturing, in which hundreds of types of products
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phases. This research will integrate a variety of modeling tools across multiple time and length scales to predict the microstructure evolution during the AM build process and post build thermal