Result for 1739125AF23FDBC131F7CF612AF8DD8424371ECE

Query result

Key Value
FileName./usr/lib64/python3.9/site-packages/pyproj/_datadir.cpython-39-x86_64-linux-gnu.so
FileSize61152
MD5C4EC9FF766E5B500498ED1ABFD14E76C
SHA-11739125AF23FDBC131F7CF612AF8DD8424371ECE
SHA-25657B0BE6D3A27141C26025D05E45917AABF4FB07BF15886587CFD2B4E42798E7A
SSDEEP768:c0MBZsz12AqgZvHtM5VcFdPsuje5rtjYw7GrKxkH7VNm1F4gefpk9YjiwszoOKU:c0sDgZvgodPc5RMAkJNmb4gf9YR47K
TLSHT10F531A2B729414FDC02C4870C9D743B34A71B846A525B6EE2A689F395FC1BA0DF1BF94
hashlookup:parent-total1
hashlookup:trust55

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Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD573C3D0B3ECD4CBE3F8403448A9D72CDA
PackageArchx86_64
PackageDescriptionPerforms cartographic transformations and geodetic computations. The Proj class can convert from geographic (longitude,latitude) to native map projection (x,y) coordinates and vice versa, or from one map projection coordinate system directly to another. The Geod class can perform forward and inverse geodetic, or Great Circle, computations. The forward computation involves determining latitude, longitude and back azimuth of a terminus point given the latitude and longitude of an initial point, plus azimuth and distance. The inverse computation involves determining the forward and back azimuths and distance given the latitudes and longitudes of an initial and terminus point. Input coordinates can be given as python arrays, lists/tuples, scalars or numpy/Numeric/numarray arrays. Optimized for objects that support the Python buffer protocol (regular python and numpy array objects). This project has a git repository https://github.com/pyproj4/pyproj where you may access the most up-to-date source.
PackageNamepython39-pyproj
PackageRelease38.7
PackageVersion3.3.0
SHA-1BA7112EB9EF8A4B18B4C75034EABC6D3C187669F
SHA-256768EE26E004AAE2D2A7A259D62EC461F525C163736D6EFEA40CBD9D1C355F024