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Articles 1 - 6 of 6
Full-Text Articles in Physical Sciences and Mathematics
Evaluation Of Water Quality Data - Beaver Lake - Table Of Contents Through Section Iii, (Part I), James W. Moore
Evaluation Of Water Quality Data - Beaver Lake - Table Of Contents Through Section Iii, (Part I), James W. Moore
Technical Reports
No abstract provided.
Evaluation Of Water Quality Data - Beaver Lake - Appendices C - K, (Part Iv), James W. Moore
Evaluation Of Water Quality Data - Beaver Lake - Appendices C - K, (Part Iv), James W. Moore
Technical Reports
No abstract provided.
Evaluation Of Water Quality Data - Beaver Lake - Section Iv Through Table Xli, (Part Ii), James W. Moore
Evaluation Of Water Quality Data - Beaver Lake - Section Iv Through Table Xli, (Part Ii), James W. Moore
Technical Reports
No abstract provided.
Evaluation Of Water Quality Data - Blue Mountain Lake, James W. Moore
Evaluation Of Water Quality Data - Blue Mountain Lake, James W. Moore
Technical Reports
No abstract provided.
Evaluation Of Water Quality Data - Beaver Lake - Appendices A - Bt, (Part Iii), James W. Moore
Evaluation Of Water Quality Data - Beaver Lake - Appendices A - Bt, (Part Iii), James W. Moore
Technical Reports
No abstract provided.
Determination Of Optimal Timing Of Poultry Waste Disposal By Meteorological, Hydrological, And Water Quality Modeling Techniques, D. R. Edwards, T. C. Daniel
Determination Of Optimal Timing Of Poultry Waste Disposal By Meteorological, Hydrological, And Water Quality Modeling Techniques, D. R. Edwards, T. C. Daniel
Technical Reports
Approximately one million Mg of broiler litter were generated in conjunction with Arkansas' 1989 broiler production. Common practices for disposal of the waste have the potential to damage the quality of downstream rivers and lakes. This possibility is enhanced due to the concentration of broiler production in areas of the state with shallow soils, steep slopes, and limited suitable disposal area. Since the risk of pollution is greatest immediately following disposal and increases with rainfall depth and intensity, adverse water quality impacts may be mitigated by timing the application to coincide with low probability of surface losses of the nutrients …