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measurements of the electromagnetic response of nanoliter fluid volumes over the broad frequency range 100 Hz to 110 GHz by integrating microfluidic channels with microelectronic circuit elements and advanced
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biasing in magnetic multilayers, and magnetic domain formation in buried magnetic layers. Results are correlated with models of the magnetic coupling, proximity effects, coherence range of the magnetism
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. The scope for innovative investigations in forensic chemical measurements is wide, but currently includes such applications as determination of cannabis intoxication via breath metabolites, active agent
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quantum computing. Their dimensions range from a few to several hundred nanometers. There is special interest in color centers in nanodiamonds, which give them unique photonic and spin characteristics
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various government laboratories to elucidate mechanisms of protein binding to BLMs. We comprise researchers with a broad range of expertise and are actively developing advanced biochemical and biophysical
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efficient platform for photon manipulation able to address a broad range of wavelengths, and able to do so actively through external transduction is a key goal of photonics. We are developing capabilities
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repairing a wide range of industrial components. However, the AM industry is still grappling with issues related to inconsistent quality and properties of the AM built parts. These issues are major
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-shaped traps--atomtronic circuits with Josephson junctions; the study of spin dynamics in spinor condensates; spin-orbit coupling in condensates; etc. As part of the Joint Quantum Institute our group
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investigate mechanisms of plastic degradation and assess potential risks. Potential research avenues in this area span a range of chemical characterization and quantification approaches targeting polymer
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/peptides comprises a diverse range of approaches aimed at the identification, characterization, and quantification of proteins in simple and complex matrices. We encourage research directed toward