T. M. Jardim
Graduate research assistant
Formerly Arkansas Affiliated with Arkansas State University through 2022; recent publications list University of Nebraska–Lincoln, Daugherty Water for Food Global Institute at the University of Nebraska.
Graduate Student Researcher
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Biography and Research Information
OverviewAI-generated summary
T. M. Jardim's research focuses on agricultural practices and their environmental impacts, particularly concerning rice cultivation and soil management. Recent publications investigate the effects of machine traffic on minesoil physical quality after topographic reconstruction and analyze yield-scaled greenhouse gas emissions from different nitrogen fertilizers in subtropical paddy rice fields. Jardim has also studied the genetic components of rice root architecture and carbon isotopic fractionation as potential markers for breeding under water-saving irrigation management. Further work explores water conservation through early cascade rice irrigation shutoff and its implications for automated flood systems, with a publication in 2026 addressing the current status and future directions of irrigated agriculture in the United States. Jardim has co-authored 12 publications, accumulating 22 citations, and has a current h-index of 2. Key collaborators include Ahmed A. Hashem from Arkansas State University.
Metrics
- h-index: 2
- Publications: 12
- Citations: 22
Selected Publications
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Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation (2022)
Collaboration Network
Top Collaborators
- Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation
- Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation
- Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation
- Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation
- Early cascade rice irrigation shutoff (ECIS) conserves water: implications for cascade flood automation
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