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distribution systems. Current research initiatives include developing advanced vibration analysis methodologies for wooden packaging systems, predictive modeling for packaging performance, and optimization
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, improving faculty pre- and post-award service, strengthening compliance support, generating better research intelligence, and creating a scalable model for responsible AI use in research administration
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malignancy. The project integrates mouse and iPSC models, CRISPR genome editing, molecular biology, flow cytometry, and single-cell multi-omics to dissect disease mechanisms. We are committed to mentoring
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working with norovirus and rotavirus. • Experience working with infectious disease animal models, including performing inoculations, blood collection, clinical symptom monitoring, euthanasia, gross
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) Investigation of TLS metrics for the calculation and determination of unique wildlife habitat metrics (3) Utilization of fuels inputs from this region in fire behavior modeling (4) Creation of monitoring
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reports, conference presentations, or related scholarly activities. Preferred Qualifications - Experience analyzing, modeling, and interpreting complex experimental datasets, as demonstrated through prior
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organoids. Candidate FDA approved drugs will be tested using organoid systems and animal models of infection. The initial focus will be on RVFV, but may be extended to other emerging viruses. The research
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include behavioral measurements, fMRI, EEG and organoid ex-vivo modeling, and measurements will be collected longitudinally. Our goal is to create stratification that will meaningfully inform the future
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culture and/or rodent behavioral models • Strong organizational skills and the ability to manage experiments independently • Effective written and verbal communication skills Preferred Qualifications
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supervision of Prof. Yingda Cheng on computational methods and modeling for kinetic equations. The research conducted will involve development of numerical methods, development and analysis of reduced order