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optimizing adenovirus and lentivirus assays, automating adenovirus plaque identification, developing label free measures of cell transduction, quantifying extracellular matrix effects on infectious titer
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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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products. Assay development efforts should focus on the incorporation of a robust and optimized experimental design aimed at assessing the sources of variability, repeatability and reproducibility
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augmented intelligent solutions that monitor, diagnose, and predict process performances to optimize production quality and yield. Proposals are welcome to develop augmented intelligent solutions
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metabolites in situ. The first goal of the project will be to characterize the volatile organic chemical fingerprints of various bacteria using PTR-MS. We will then optimize a rapid, noninvasive workflow for
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acoustically isolated with a phononic crystal, providing both high mechanical and optical quality factors. Through optimal optical and mechanical design, this approach could allow for quantum control in