UNCLASSIFIED
| 
    GeographicTranslator
    
   | 
 
#include <math.h>#include "LambertConformalConic.h"#include "MapProjection5Parameters.h"#include "MapProjection6Parameters.h"#include "MapProjectionCoordinates.h"#include "GeodeticCoordinates.h"#include "CoordinateConversionException.h"#include "ErrorMessages.h"Go to the source code of this file.
Variables | |
| const double | PI = 3.14159265358979323e0 | 
| const double | PI_OVER_2 = (PI / 2.0) | 
| const double | PI_OVER_4 = (PI / 4.0) | 
| const double | PI_OVER_180 = (PI / 180.0) | 
| const double | MAX_LAT = (( PI * 89.99972222222222) / 180.0) | 
| const double | TWO_PI = (2.0 * PI) | 
| const double | MIN_SCALE_FACTOR = 1.0e-9 | 
| const double | ONE_SECOND = 4.89e-6 | 
| const double MAX_LAT = (( PI * 89.99972222222222) / 180.0) | 
Definition at line 122 of file LambertConformalConic.cpp.
| const double MIN_SCALE_FACTOR = 1.0e-9 | 
Definition at line 124 of file LambertConformalConic.cpp.
| const double ONE_SECOND = 4.89e-6 | 
Definition at line 125 of file LambertConformalConic.cpp.
| const double PI = 3.14159265358979323e0 | 
Definition at line 118 of file LambertConformalConic.cpp.
| const double PI_OVER_180 = (PI / 180.0) | 
Definition at line 121 of file LambertConformalConic.cpp.
| const double PI_OVER_2 = (PI / 2.0) | 
Definition at line 119 of file LambertConformalConic.cpp.
| const double PI_OVER_4 = (PI / 4.0) | 
Definition at line 120 of file LambertConformalConic.cpp.
| const double TWO_PI = (2.0 * PI) | 
Definition at line 123 of file LambertConformalConic.cpp.