Nonstop flight route between Rønne, Denmark and Shafter, California, United States:
Departure Airport:
Arrival Airport:
Distance from RNN to MIT:
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- About this route
- RNN Airport Information
- MIT Airport Information
- Facts about RNN
- Facts about MIT
- Map of Nearest Airports to RNN
- List of Nearest Airports to RNN
- Map of Furthest Airports from RNN
- List of Furthest Airports from RNN
- 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 Bornholm Airport (RNN), Rønne, Denmark and Shafter Airport (MIT), Shafter, California, United States would travel a Great Circle distance of 5,612 miles (or 9,032 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 Bornholm 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 Bornholm 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: | RNN / EKRN |
| Airport Names: |
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| Location: | Rønne, Denmark |
| GPS Coordinates: | 55°3'47"N by 14°45'33"E |
| Operator/Owner: | Danish Civil Aviation Administration (Statens Luftfartsvæsen) |
| Airport Type: | Public |
| Elevation: | 52 feet (16 meters) |
| # of Runways: | 1 |
| View all routes: | Routes from RNN |
| More Information: | RNN Maps & Info |
Arrival Airport Information:
| IATA / ICAO Codes: | MIT / KMIT |
| Airport Names: |
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| 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 Bornholm Airport (RNN):
- Bornholm Airport (RNN) currently has only 1 runway.
- The closest airport to Bornholm Airport (RNN) is Malmö Airport (MMX), which is located 63 miles (102 kilometers) WNW of RNN.
- In addition to being known as "Bornholm Airport", another name for RNN is "Bornholms Lufthavn".
- The furthest airport from Bornholm Airport (RNN) is Chatham Islands (CHT), which is located 11,513 miles (18,528 kilometers) away in Waitangi, Chatham Islands, New Zealand.
- Because of Bornholm Airport's relatively low elevation of 52 feet, planes can take off or land at Bornholm 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.
Facts about Shafter Airport (MIT):
- The closest airport to Shafter Airport (MIT) is Meadows Field (BFL), which is located only 9 miles (15 kilometers) ESE of MIT.
- 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 primary aircraft flown at Minter Field was the Vultee BT-13 Valiant, which was used for basic flight training.
- In addition to being known as "Shafter Airport", another name for MIT is "Minter Field".
- 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.
