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- W796686 abstract "Two-and three-dimensionalcoordinate systems are fundamental to most quantitative mapping applications. The Geodetic, Universal TransverseMercator (UTM),and State Plane systems have traditional roles in various science, surveying, and gov- ernment agency engineering applications. The coordinates of three-dimensionalGeodetic system are latitude, longitude, and height above ellipsoid(HAE).Becauseof its abilityto cope with the intrinsically three dimensionalcharacter of the earth's sur- face, the Geodetic system is capable ofsupporting precise relative positioning and veryhigh accuracy computations of distance between any two positions on or near the earth's surface. The two-dimensionalUTM and State Plane systems are extremely useful for the local horizontal positioning and scaling required for paper maps of county-size land areas. In the two plane systems, horizontal distance computation is a very straightforward application of the distance formula (analyticgeometry) based on the Pythagorean theorem. Although precision line- and geodesic- distance formulasbased on geodetic coordinates are more complex,useful horizontal distance estimates are easily derived from the latitudes and longitudes of two positions. This paper examines this premise for Arkansas. The approach to estimatinghorizontal distancesutilizes an application of the distance formulain conjunction withan assumedconstant distance/unit latitude of 30.8 m (arc sec) 1.A linear regression equa- tion is used to represent distance/unit longitude as a functionof latitude in Arkansas. The approximation math is extremely simple, and the process as a whole is equivalent to a portable coordinate projection." @default.
- W796686 created "2016-06-24" @default.
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- W796686 date "2000-01-01" @default.
- W796686 modified "2023-09-24" @default.
- W796686 title "Field Interpretation of Latitude and Longitude in Arkansas: A Portable Coordinate Projection" @default.
- W796686 hasPublicationYear "2000" @default.
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