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quantities of radioactive solutions with activities calibrated by primary methods. Features with dimensions < 20 μm can be achieved. In addition to two-dimensional phantoms for autoradiography, advanced
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for biopsies and organoid growth. The primary focus will be on optimizing the integrated hyperpolarizer, gradient system, FPGA based imaging console, and bioreactor functionality. 1. Berweger S
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, and flow; the use of critical venturis as primary flow standards; the realization of a primary pressure standard based on measuring the dielectric constant of helium; the development of novel
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chromatography/mass spectrometry (LC-MS) measurements using principal component analysis, partial least squares, genetic algorithms, and other multivariate statistics. Current projects have accumulated a
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resolution of the original pattern. Lamellae forming block copolymers can reduce the size of line patterns, while cylinder forming block copolymers can be used for fabrication of bit-patterned media for next
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computational challenges, including metrics of spectral similarity, data handling for applications of principal component analysis (PCA), spectral analysis of mixtures, and identification of spectral features by
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. The primary techniques are laser-based time-resolved photoemission and conventional ultraviolet and x-ray photoelectron spectroscopies. Sub-picosecond time-resolved measurements provide detail on charge
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must be solved in order to fully exploit Johnson noise as a primary thermometer with high accuracy. Opportunities exist for experimental investigations in Johnson Noise Thermometry (JNT) with advanced
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systems have been proposed in the literature. Our main interest in this project is in developing predictive, as well as interpretative mathematical models for the reliability of materials for quantum
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scattering. Concurrently, another research area focuses on developing methods to quantify the primary characteristic for a particular application, including but not limited to a microcalorimeter to quantify