Nonstop flight route between Andakombe, Papua New Guinea and Shafter, California, United States:
Departure Airport:

Arrival Airport:

Distance from ADC to MIT:
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- About this route
- ADC Airport Information
- MIT Airport Information
- Facts about ADC
- Facts about MIT
- Map of Nearest Airports to ADC
- List of Nearest Airports to ADC
- Map of Furthest Airports from ADC
- List of Furthest Airports from ADC
- Map of Nearest Airports to MIT
- List of Nearest Airports to MIT
- Map of Furthest Airports from MIT
- List of Furthest Airports from MIT
About this route:
A direct, nonstop flight between Andakombe Airport (ADC), Andakombe, Papua New Guinea and Shafter Airport (MIT), Shafter, California, United States would travel a Great Circle distance of 6,789 miles (or 10,925 kilometers).
A Great Circle is the shortest distance between 2 points on a sphere. Because most world maps are flat (but the Earth is round), the route of the shortest distance between 2 points on the Earth will often appear curved when viewed on a flat map, especially for long distances. If you were to simply draw a straight line on a flat map and measure a very long distance, it would likely be much further than if you were to lay a string between those two points on a globe. Because of the large distance between Andakombe Airport and Shafter Airport, the route shown on this map most likely appears curved because of this reason.
Try it at home! Get a globe and tightly lay a string between Andakombe Airport and Shafter Airport. You'll see that it will travel the same route of the red line on this map!
Departure Airport Information:
IATA / ICAO Codes: | ADC / AYAN |
Airport Name: | Andakombe Airport |
Location: | Andakombe, Papua New Guinea |
GPS Coordinates: | 7°7'58"S by 145°43'58"E |
Elevation: | 10 feet (3 meters) |
View all routes: | Routes from ADC |
More Information: | ADC Maps & Info |
Arrival Airport Information:
IATA / ICAO Codes: | MIT / KMIT |
Airport Names: |
|
Location: | Shafter, California, United States |
GPS Coordinates: | 35°30'20"N by 119°11'30"W |
Area Served: | Shafter, California |
Operator/Owner: | Minter Field Airport District |
Airport Type: | Public |
Elevation: | 424 feet (129 meters) |
# of Runways: | 2 |
View all routes: | Routes from MIT |
More Information: | MIT Maps & Info |
Facts about Andakombe Airport (ADC):
- Because of Andakombe Airport's relatively low elevation of 10 feet, planes can take off or land at Andakombe Airport at a lower air speed than at airports located at a higher elevation. This is because the air density is higher closer to sea level than it would otherwise be at higher elevations.
- The closest airport to Andakombe Airport (ADC) is Aiyura Airport (AYU), which is located 56 miles (90 kilometers) NNE of ADC.
- The furthest airport from Andakombe Airport (ADC) is Governador Carlos Wilson Airport (FEN), which is located 11,667 miles (18,776 kilometers) away in Fernando de Noronha, Pernambuco, Brazil.
Facts about Shafter Airport (MIT):
- With the end of the war in 1945, airfield was determined to be excess by the military and turned over to the local government for civil use in March 1948.
- Shafter Airport, also known as Minter Field, is a public use airport located four nautical miles east of the central business district of Shafter, a city in Kern County, California, United States.
- The closest airport to Shafter Airport (MIT) is Meadows Field (BFL), which is located only 9 miles (15 kilometers) ESE of MIT.
- In addition to being known as "Shafter Airport", another name for MIT is "Minter Field".
- The furthest airport from Shafter Airport (MIT) is Pierrefonds Airport (ZSE), which is located 11,404 miles (18,353 kilometers) away in Saint-Pierre, Réunion.
- Shafter Airport (MIT) has 2 runways.
- The Gossamer Condor piloted by Bryan Allen won the first Kremer prize on August 23, 1977 by completing a figure '8' course specified by the Royal Aeronautical Society at Minter Field.
- Because of Shafter Airport's relatively low elevation of 424 feet, planes can take off or land at Shafter Airport at a lower air speed than at airports located at a higher elevation. This is because the air density is higher closer to sea level than it would otherwise be at higher elevations.