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an understanding of the basic properties of atom-based solid-state and nanoscale systems, optics on the nanoscale (nano-optics) quantum processes in atom-scale and nanoscale systems with optical fields, and quantum
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over an extended time range (up to nano or even microseconds). Modeling atomistic processes over such an extended time range is a formidable task for conventional molecular dynamics. We have developed a
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of acoustic data limits the design of acoustic filter technology. For pharmaceuticals and chemical manfucaturers, there are important relaxation processes that we cannot measure with off the shelf
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This research aims to study the formalization of information processes and systems, using modern approaches and techniques from mathematics. Distinct entities, each having its own database, ontology, or other
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the synthesis-process-structure-property relationship for quantum solid state materials. References: Liang, et al., 2025. Real-time experiment-theory closed-loop interaction for autonomous materials science
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of aqueous chemical models, incorporated into computer codes, for both pure and applied research that include industrial chemistry, chemical engineering, water treatment, hydrometallurgy, toxicology, medical
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measurement technique development (e.g., orbitrap and high-through put separation techniques (e.g., ESI PrepFAST)), standard reference and proficiency testing materials development and characterization, quality
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concerns the investigation of the magnetic properties of alloys and their relationship to metallurgical structures and processing variables. Computer-controlled equipment is available for alternating-current
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; and (2) experiments devoted to studies of quantum-state engineering and entanglement with application to quantum-information processing, quantum simulation, spectroscopy, and tests of quantum mechanics
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been largely limited due to the inability to systematically control polymer sequence especially under real-world conditions where process history, crystallization, and degradation cannot be neglected