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valuable qualitative and quantitative information that can be used to develop and validate fundamental deformation models. We have also used submicrometer X-ray beams at the Advanced Photon Source
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system, offers higher sensitivity to surface displacement (noise floor of ~ 0.1 pm) than quasi-static PFM (~ 10 pm). However, conversion of the experimental results to quantitative displacement data is
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-Boulder currently has the only supercritical CO2 corrosion facility in the country. Important corrosion data will inform new standards on CO2 pipelines (materials and operating conditions) being developed
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of applicatioins and phenomena including quantum information processing, quantum simulation, and quantum metrology. Our group is part of the Joint Quantum Institute and we have research on both
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involved in molecular destabilization mechanisms provide data for systematically formulating biopharmaceuticals on the basis of inhibiting specific destabilization pathways. We are developing methods
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differentiation, data describing the changes in gene expression at the single cell level are needed. In this project, quantitative live cell imaging and image analysis will be used to follow gene expression
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) for streaming data from the PMTs or other detectors, two independent DFB laser systems, numerous broadband electro-optic modulators, a two Mach-Zehnder waveguide based I/Q modulator for fast and precise frequency
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relates to manufacturability and basic cell functions. Advanced automation systems will also be employed to generate control samples with varying degrees of cell health to serve as training data
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data analysis aspects of these multi-component soft matter therapeutic formulations. The binding between polyphosphazenes and proteins are visualized by cryogenic electron microscopy (cryoEM), therefore
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of liquid samples as a function of temperature, composition, and concentration. These measurements can yield information on the polarization dynamics of different conformations in DNA nanomachines and protein