Jessica Cherry
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
Faculty Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Jessica Cherry's research focuses on environmental science, with a particular emphasis on Arctic ecosystems and climate change impacts. Her work has investigated the high-resolution estimation of net ecosystem exchange in tundra environments using in situ sensors and remote sensing data. She has also explored the consequences of permafrost degradation on Arctic landscapes, specifically how landscape drying influences nitrate availability. Cherry's scholarship metrics include an h-index of 12, with 40 total publications and 1,652 citations. She has collaborated with several colleagues at the University of Arkansas at Fayetteville, including Shawna Weimer, Rosemary H. Whittle, Seong Wook Kang, and Alexander Nelson.
Metrics
- h-index: 12
- Publications: 40
- Citations: 1,652
Selected Publications
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Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology (2025)
Collaboration Network
Top Collaborators
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
- Effects of Light Wavelength on Broiler Performance, Blood Cell Profiles, Stress Levels, and Tibiotarsi Morphology
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