Kyle A. Hoegenauer
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Researcher
Also affiliated: University of Arkansas System (2020)
Unknown Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Kyle A. Hoegenauer's research focuses on understanding plant physiology and optimizing agricultural practices, particularly for soybean cultivation. His work investigates the complex interactions between environmental stressors, such as drought and nutrient deficiencies, and their impact on crop vigor, leaf temperature, and nutrient accumulation. Hoegenauer has studied the effectiveness of different nutrient management strategies, including the use of post-season tissue nitrogen concentrations for predicting in-season nitrogen needs and the development of calibrated in-season corrective potassium applications for irrigated soybean.
His research also extends to winter cover crops, examining how growing degree days can model the dynamics of aboveground biomass and nitrogen accumulation. Hoegenauer collaborates with researchers at the University of Arkansas at Fayetteville, including Jeremy Ross and Nathan A. Slaton, contributing to a shared body of knowledge in agricultural science. His scholarly output includes publications on soybean nutrient variability, drought stress interactions, and cover crop modeling, supported by metrics such as an h-index of 2 and 27 total citations.
Metrics
- h-index: 2
- Publications: 9
- Citations: 27
Selected Publications
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Development of calibrated in‐season corrective potassium applications for irrigated soybean (2026)
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Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops (2025)
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Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature (2024)
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Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management (2023)
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Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol (2023)
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Developing a post‐season tissue test for rice nitrogen management (2020)
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Influence of soybean management decisions on the subsequent rice crop's response to nitrogen (2020)
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Soybean maturity group and planting date influence grain yield and nitrogen dynamics (2020)
Collaboration Network
Top Collaborators
- Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol
- Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
- Development of calibrated in‐season corrective potassium applications for irrigated soybean
- Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol
- Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Development of calibrated in‐season corrective potassium applications for irrigated soybean
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
- Development of calibrated in‐season corrective potassium applications for irrigated soybean
- Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol
- Development of calibrated in‐season corrective potassium applications for irrigated soybean
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Development of calibrated in‐season corrective potassium applications for irrigated soybean
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
- Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol
- Mapping variability of soybean leaf potassium concentrations to develop a sampling protocol
- Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management
- Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management
- Using post‐season tissue nitrogen concentrations to predict adequacy of in‐season nitrogen management
- Interaction of drought stress and potassium deficiency on soybean vigor and leaf temperature
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
- Use of growing degree days to model the dynamics of aboveground biomass and nitrogen accumulation of winter cover crops
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