Result for 322A3E1CB5830A7A6160E91339C09AD16ABF92D9

Query result

Key Value
FileName./usr/bin/pyproj-3.8
FileSize955
MD56D20F581AF2CB71B7F84664E6127102C
SHA-1322A3E1CB5830A7A6160E91339C09AD16ABF92D9
SHA-2567B59E1DEEB15BDE5B78198C14CE585B9E894AEDFD5704BFA33A67FE48062B4EE
SSDEEP24:Zufoz249Ft9/zO9LwKLPLwoZZT0EeC0RDa3SSj:4fw9pOsmsoZZTIar
TLSHT1B511DCA1D820B66296D28BDA3CB0A46A021788977B902032F7CC9FB45FC03508C71F15
hashlookup:parent-total5
hashlookup:trust75

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Parents (Total: 5)

The searched file hash is included in 5 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD55522CDE7443A85ED7BAD093728431393
PackageArchi586
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.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamepython38-pyproj
PackageRelease1.1
PackageVersion3.3.0
SHA-17FDEB3EE90A568720D325DCF17DD7C4BFABBFF68
SHA-2561B5ECE181F06B9BDD4E335FC9E5BA7203415D9FC4E07895C92F005CBBEF5D5E3
Key Value
MD56A93E9286FEF7C0B88629783FF1A7F8E
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.
PackageNamepython38-pyproj
PackageRelease38.7
PackageVersion3.3.0
SHA-1FD41A90D9630D07ED0037D18098D70AB2861B9D0
SHA-256EE03A8BCE10143D77B9A483824E9CCB1924A2E856082CA1BCE82F3BA85F4E701
Key Value
MD517EB5389F64D5916551E92420CFA480A
PackageArchi586
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.
PackageNamepython38-pyproj
PackageRelease38.7
PackageVersion3.3.0
SHA-161CBB0F8C1ED964774611AF78AFD9F21B4D470BA
SHA-256E0D1407138E66448FEF866981A713356AE7EFCB0B22C15E2642B71DC446AD70D
Key Value
MD542C5E8CADA54F7700A5166917A7CB453
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.
PackageMaintainerhttps://bugs.opensuse.org
PackageNamepython38-pyproj
PackageRelease1.1
PackageVersion3.3.0
SHA-1A0D01BAD29DD27249AFF220F3D6B54C8010A0D3A
SHA-256BA9CDC2A0C9DBA4634DE19FA59B119C9D2076B1C273DA02D721E85EF2D2A5B6F
Key Value
MD5927863B23702E8F6C9C9B61527A0C6F2
PackageArcharmv7hl
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.
PackageNamepython38-pyproj
PackageRelease38.5
PackageVersion3.3.0
SHA-160AE3E8A1D09F26CD471DECC07E6473E5136F11F
SHA-25608E751040381B5F513A7819FFA46587D02DBB4A1824CE124125CF385F92A2E3F