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Gregory W McCarty

Showing results (11-20 of 34) with videos related to

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The Science of the Total Environment|April 20, 2016
Analysis of metolachlor ethane sulfonic acid (MESA) chirality in groundwater: A tool for dating groundwater movement in agricultural settingsClifford P Rice, Gregory W McCarty, Krystyna Bialek-Kalinski, et al.
The Science of the Total Environment|December 9, 2023
Modeling lateral carbon fluxes for agroecosystems in the Mid-Atlantic region: Control factors and importance for carbon budgetXi Luo, Avay Risal, Junyu Qi, et al.
Journal of Environmental Quality|June 25, 2008
EPIC modeling of soil organic carbon sequestration in croplands of IowaHector J Causarano, Paul C Doraiswamy, Gregory W McCarty, et al.
Plos One|June 29, 2016
Impacts of Watershed Characteristics and Crop Rotations on Winter Cover Crop Nitrate-Nitrogen Uptake Capacity within Agricultural Watersheds in the Chesapeake Bay RegionSangchul Lee, In-Young Yeo, Ali M Sadeghi, et al.
Methodsx|November 3, 2022
<i>Trans</i> enantiomeric separation of MESA and MOXA, two environmentally important metabolites of the herbicide, metolachlorMarla R Bianca, Clifford P Rice, Robert Lupitskyy, et al.
The Science of the Total Environment|December 12, 2018
Mapping landscape-level hydrological connectivity of headwater wetlands to downstream waters: A geospatial modeling approach - Part 1In-Young Yeo, Megan W Lang, Sangchul Lee, et al.
The Science of the Total Environment|December 12, 2018
Mapping landscape-level hydrological connectivity of headwater wetlands to downstream waters: A catchment modeling approach - Part 2In-Young Yeo, Sangchul Lee, Megan W Lang, et al.
The Science of the Total Environment|January 16, 2025
Relative abundance of atropisomer pairs in metolachlor metabolites, MESA and MOXA, vary with slope and hydric soils in subwatersheds of the Choptank River watershed, MarylandClifford P Rice, Matthew H H Fischel, Marla R Bianca, et al.
The Science of the Total Environment|March 19, 2023
Simulating agroecosystem soil inorganic nitrogen dynamics under long-term management with an improved SWAT-C modelKang Liang, Xuesong Zhang, Xin-Zhong Liang, et al.
Journal of Hydrology: X|August 27, 2019
A watershed-scale model for depressional wetland-rich landscapesGrey R Evenson, C Nathan Jones, Daniel L McLaughlin, et al.
Pageof 4

Showing results (11-20 of 34) with videos related to

Sort By:
Pageof 4
The Science of the Total Environment|April 20, 2016
Analysis of metolachlor ethane sulfonic acid (MESA) chirality in groundwater: A tool for dating groundwater movement in agricultural settingsClifford P Rice, Gregory W McCarty, Krystyna Bialek-Kalinski, et al.
The Science of the Total Environment|December 9, 2023
Modeling lateral carbon fluxes for agroecosystems in the Mid-Atlantic region: Control factors and importance for carbon budgetXi Luo, Avay Risal, Junyu Qi, et al.
Journal of Environmental Quality|June 25, 2008
EPIC modeling of soil organic carbon sequestration in croplands of IowaHector J Causarano, Paul C Doraiswamy, Gregory W McCarty, et al.
Plos One|June 29, 2016
Impacts of Watershed Characteristics and Crop Rotations on Winter Cover Crop Nitrate-Nitrogen Uptake Capacity within Agricultural Watersheds in the Chesapeake Bay RegionSangchul Lee, In-Young Yeo, Ali M Sadeghi, et al.
Methodsx|November 3, 2022
<i>Trans</i> enantiomeric separation of MESA and MOXA, two environmentally important metabolites of the herbicide, metolachlorMarla R Bianca, Clifford P Rice, Robert Lupitskyy, et al.
The Science of the Total Environment|December 12, 2018
Mapping landscape-level hydrological connectivity of headwater wetlands to downstream waters: A geospatial modeling approach - Part 1In-Young Yeo, Megan W Lang, Sangchul Lee, et al.
The Science of the Total Environment|December 12, 2018
Mapping landscape-level hydrological connectivity of headwater wetlands to downstream waters: A catchment modeling approach - Part 2In-Young Yeo, Sangchul Lee, Megan W Lang, et al.
The Science of the Total Environment|January 16, 2025
Relative abundance of atropisomer pairs in metolachlor metabolites, MESA and MOXA, vary with slope and hydric soils in subwatersheds of the Choptank River watershed, MarylandClifford P Rice, Matthew H H Fischel, Marla R Bianca, et al.
The Science of the Total Environment|March 19, 2023
Simulating agroecosystem soil inorganic nitrogen dynamics under long-term management with an improved SWAT-C modelKang Liang, Xuesong Zhang, Xin-Zhong Liang, et al.
Journal of Hydrology: X|August 27, 2019
A watershed-scale model for depressional wetland-rich landscapesGrey R Evenson, C Nathan Jones, Daniel L McLaughlin, et al.
Pageof 4