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Articles 121 - 126 of 126
Full-Text Articles in Physical Sciences and Mathematics
Shoreline Situation Report Henrico, Chesterfield, And Richmond, Dennis W. Owen, Margaret H. Peoples, Gary L. Anderson, Robert J. Byrne, Carl H. Hobbs Iii
Shoreline Situation Report Henrico, Chesterfield, And Richmond, Dennis W. Owen, Margaret H. Peoples, Gary L. Anderson, Robert J. Byrne, Carl H. Hobbs Iii
Reports
No abstract provided.
Shoreline Situation Report Isle Of Wight County, Virginia, Dennis W. Owen, Gaynor B. Williams, Margaret H. Peoples, Carl H. Hobbs Iii, Gary L. Anderson, Robert J. Byrne, John M. Zeigler
Shoreline Situation Report Isle Of Wight County, Virginia, Dennis W. Owen, Gaynor B. Williams, Margaret H. Peoples, Carl H. Hobbs Iii, Gary L. Anderson, Robert J. Byrne, John M. Zeigler
Reports
No abstract provided.
Shoreline Situation Report City Of Hampton, Virginia, Carl H. Hobbs Iii, Gary L. Anderson, Robert J. Byrne, John M. Zeigler
Shoreline Situation Report City Of Hampton, Virginia, Carl H. Hobbs Iii, Gary L. Anderson, Robert J. Byrne, John M. Zeigler
Reports
No abstract provided.
Shoreline Situation Report Stafford County, Virginia, Carl H. Hobbs Iii, Gary L. Anderson, Dennis W. Owen, Peter Rosen
Shoreline Situation Report Stafford County, Virginia, Carl H. Hobbs Iii, Gary L. Anderson, Dennis W. Owen, Peter Rosen
Reports
No abstract provided.
Shoreline Situation Report York County Virginia, Gary L. Anderson, Gaynor B. Williams, Margaret H. Peoples, Peter Rosen, Carl H. Hobbs Iii, Robert J. Byrne, John M. Zeigler
Shoreline Situation Report York County Virginia, Gary L. Anderson, Gaynor B. Williams, Margaret H. Peoples, Peter Rosen, Carl H. Hobbs Iii, Robert J. Byrne, John M. Zeigler
Reports
No abstract provided.
Computer Simulation Of The Hydrologic And Salinity Flow Systems Within The Bear River Basin, Robert W. Hill, Eugene K. Israelsen, J. Paul Riley
Computer Simulation Of The Hydrologic And Salinity Flow Systems Within The Bear River Basin, Robert W. Hill, Eugene K. Israelsen, J. Paul Riley
Reports
Accompanying the increased use of water resources is an increases accumulation of chemical pollutants. Te prevent degradation of the water resources beyong useful limits, pollution inputs from additional uses must be quite accurately predicted prior to implementation of the new use. The model described in this report was formulated to provide the required predictive capability for the Bear River Basin. Modeling concepts of the hydrologic system are based upon the development of basin relationships describing the hydrologic processes which are linked together by the countinuity-of-mass principle. The salinity flow system is then linked to the hydrologic system based on the …