Gregory Lee Pate
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Also affiliated: Auburn University (2017–2025)
Research Areas
Biography and Research Information
OverviewAI-generated summary
Gregory Lee Pate's research centers on agricultural practices, specifically investigating the impact of planter downforce on soil conditions and crop development in corn and cotton fields. His work includes studies on the variability of active hydraulic downforce systems and their relationship to seed depth and crop emergence. Pate has published 12 papers, which have garnered 120 citations, and holds an h-index of 4. His recent publications address the soil and crop responses to varying planter downforce in 2024 and 2025, building on earlier work in 2021 concerning cotton seed depth and emergence.
Metrics
- h-index: 4
- Publications: 16
- Citations: 141
Selected Publications
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Soil and crop response to varying planter's downforce in corn and cotton fields (2025)
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Soil and Crop Response to Varying Planter's Downforce in Corn and Cotton Fields (2024)
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99. Variability of the active hydraulic downforce system related to cotton seed depth and emergence (2021)
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Auburn University Crops: Cotton Research Report 2019 (2020)
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2019 On-Farm Cotton Variety Trial Program (2020)
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Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds (2019)
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Row-crop planter performance to support variable-rate seeding of maize (2019)
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Auburn University Crops: Soybean Research Report 2018 (2019)2 citations OpenAlex
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Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds (2017)
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Using Unmanned Aircraft Systems for Early Detection of Soybean Diseases (2017)
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Auburn University Crops: Cotton Research Report 2016 (2017)
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Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader (2013)
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Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT (2011)
Collaboration Network
Top Collaborators
- Row-crop planter performance to support variable-rate seeding of maize
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Using Unmanned Aircraft Systems for Early Detection of Soybean Diseases
- Auburn University Crops: Soybean Research Report 2018
- Auburn University Crops: Cotton Research Report 2016
- Auburn University Crops: Cotton Research Report 2019
- Auburn University Crops: Soybean Research Report 2018
- Auburn University Crops: Cotton Research Report 2016
- 2019 On-Farm Cotton Variety Trial Program
- Auburn University Crops: Cotton Research Report 2019
- Soil and crop response to varying planter's downforce in corn and cotton fields
- Auburn University Crops: Cotton Research Report 2019
- 99. Variability of the active hydraulic downforce system related to cotton seed depth and emergence
- Soil and Crop Response to Varying Planter's Downforce in Corn and Cotton Fields
- Auburn University Crops: Soybean Research Report 2018
- Auburn University Crops: Cotton Research Report 2016
- Auburn University Crops: Cotton Research Report 2019
- Auburn University Crops: Soybean Research Report 2018
- Auburn University Crops: Cotton Research Report 2016
- 2019 On-Farm Cotton Variety Trial Program
- Auburn University Crops: Cotton Research Report 2016
- 2019 On-Farm Cotton Variety Trial Program
- Auburn University Crops: Cotton Research Report 2019
- Row-crop planter performance to support variable-rate seeding of maize
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Row-crop planter performance to support variable-rate seeding of maize
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Field Validation of Seed Meter Performance at Varying Seeding Rates and Ground Speeds
- Case Study: Distribution Uniformity of a Blended Fertilizer Applied Using a Variable-Rate Spinner-Disc Spreader
- Mass and Nutrient Distribution Uniformity of a Blended Fertilizer Using a Spinner-Spreader Equipped with VRT
- Auburn University Crops: Soybean Research Report 2018
- Auburn University Crops: Cotton Research Report 2016
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