Latitude Degree To Km Fixed
Approximate north-south kilometres per latitude degree on a spherical Earth.
Description
Approximate north-south kilometres per latitude degree on a spherical Earth.
Latitude Degree To Km Fixed: Approximate north-south kilometres per latitude degree on a spherical Earth.
When to use Latitude Degree To Km Fixed
Use this cartographic calculation to convert, scale, or compare map, terrain, bearing, raster, or route quantities when the coordinate and unit conventions are explicitly known.
- Earth Radius Kilometers (km)
- Required number input.
How Latitude Degree To Km Fixed works
Approximate north-south kilometres per latitude degree on a spherical Earth. The tool evaluates the supplied inputs together and returns the named outputs below; it does not infer omitted operating conditions or change the units shown.1
- Kilometers Per Latitude Degree (km/deg)
- The resulting kilometers per latitude degree returned as a number.
Limitations and assumptions
- Map calculations depend on datum, projection, latitude, scale definition, magnetic-declination epoch, and whether distances are planar, rhumb-line, or geodesic. A compact formula cannot remove distortion or infer the missing reference system.
- Use finite inputs in the displayed units and preserve more precision than the final presentation requires. Independently verify safety-critical, financial, compliance, or production decisions.
Alternative or Complementary approaches
Confirm the map datum, projection, scale, and bearing convention before applying the result. Use geodesic or GIS software with current reference data when survey-grade or navigation-critical accuracy is required.
References
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Cartography — Wikipedia contributors
Similar or alternative tools
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Approximate east-west kilometres per longitude degree at latitude on a spherical Earth.
- Haversine Distance Cartography
Spherical great-circle distance in kilometres using a user-supplied Earth radius.
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Geometric horizon distance in kilometres for observer height and spherical Earth radius, without refraction.