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quantities for meaningful comparison. We lead the development of innovative standards and novel calibrations to achieve accuracy in localization microscopy [1, 2], with applications ranging from nanoplastic
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, are promising emerging manufacturing technologies for producing complex and highly-customized parts. These processes have been in development over the past 15+ years and their capabilities have grown
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and data-driven models [2, 3]. Metric Identification: Identifying key quality metrics for various "digital objects" throughout the ICME development lifecycle. Uncertainty Quantification & Propagation
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related botanical materials. Research topics include (1) development of liquid chromatographic (LC) separations of plant constituents, with detection by absorbance, fluorescence, electrochemical, and/or
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characterize, manufactured particles suffer heterogeneity issues which hinder treatment efficacy and safety. To speed treatment development and improve efficacy and safety we are developing interferometric
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LC-MS/MS instruments and custom software tools. Individuals with a background in proteomic sample preparation, mass spectrometry, and software development are encouraged to apply as well those who have
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. Chemical engineers constantly need reliable property data for process design development and optimization. This information is predominantly coming from scientific publications. Thousands of papers
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reactions involving residual vacuum gases, (2) determinations of the outgassing rate of water vapor and other molecules from surfaces, (3) development of holographic microscopy for critical defect inspection
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using vibrational spectroscopy, photoelectron spectroscopy, contact angle, and eGaIn electrical measurements to address technology barriers which will enable successful development and subsequent
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Sorbent materials are candidates for many industrial and sustainable development applications, including carbon capture, hydrogen and methane storage, gas separation and purification, and catalysis. However