Michelle L. Barry Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
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Biography and Research Information
OverviewAI-generated summary
Michelle L. Barry's research investigates materials for infrastructure repair and environmental remediation. Her work includes the development of novel waterway repair materials utilizing CSA cement and the evaluation of soil water retention curve models for fouled ballast. Barry has also focused on fluorous modification of commercial resins for the removal of ultrashort and short-chain PFAS. Additionally, her research has explored the correlation of soil properties and electrical resistivity as an indicator of erosion potential using the Hole Erosion Test (HET).
Barry has collaborated with several researchers at the University of Arkansas at Fayetteville, including Cameron D. Murray, Anazaria J. Ortega Gonzalez, Brianna Harris, and Anne Lobitz, with whom she shares multiple publications. Her scholarship metrics include an h-index of 2, with a total of 7 publications and 41 citations.
Metrics
- h-index: 2
- Publications: 7
- Citations: 42
Selected Publications
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Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal (2025)
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Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal (2025)
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Evaluation of Soil Water Retention Curve Models for Fouled Ballast (2023)
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Correlation of Soil Properties and Electrical Resistivity as an Indicator of Erosion Potential Using the Hole Erosion Test (HET) (2022)
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Using CSA Cement for Novel Waterway Repair Materials (2021)
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Using CSA Cement for Novel Waterway Repair Materials (2021)
Collaboration Network
Top Collaborators
- Using CSA Cement for Novel Waterway Repair Materials
- Using CSA Cement for Novel Waterway Repair Materials
- Using CSA Cement for Novel Waterway Repair Materials
- Using CSA Cement for Novel Waterway Repair Materials
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Fluorous Modification of Commercial Resins for Ultrashort and Short Chain PFAS Removal
- Correlation of Soil Properties and Electrical Resistivity as an Indicator of Erosion Potential Using the Hole Erosion Test (HET)
- Correlation of Soil Properties and Electrical Resistivity as an Indicator of Erosion Potential Using the Hole Erosion Test (HET)
- Evaluation of Soil Water Retention Curve Models for Fouled Ballast
- Evaluation of Soil Water Retention Curve Models for Fouled Ballast
- Evaluation of Soil Water Retention Curve Models for Fouled Ballast
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