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  1. Great Circle Map displays the shortest route between airports and calculates the distance. It draws geodesic flight paths on top of Google maps, so you can create your own route map.

  2. Draw you flight path on a map and calculate the great circle distance in nautical miles and kilometers. Get estimated flight time by choosing an aircraft type or entering the cruising speed.Click in the large textfield above to enter all the airports of your flight route!

  3. Distance Calculation Introduction. The distance value in red color indicates the air (flying) distance, also known as great circle distance.. As you start to write the name of a city or place, distance calculator will suggest you place names automatically, you may choose from them to calculate distance.You can also list the countries and the cities in them, to calculate the distance between ...

  4. Calculate the great circle distance between two addresses. Draw a direct route between two airports, or multiple airport pairs. Draw range rings (concentric circles) around a point. Calculate coordinates at a given bearing and distance. Coordinate Converter.

  5. 20 maj 2024 · Every page on the Great Circle Mapper has a text-entry box at the top with a choice of actions: ... SFO-NRT-SIN,SFO-HKG-SIN: Map ranges: 9380nm@LHR: Calculate path distances: LHR-SYD,LHR-HKG-SYD: Search for locations by name: Chicago: Detailed information related to a code: ORD Featured Map: Condor Lands in San Antonio. 20 May 2024 ...

  6. This distance calculator is not only for South Africans, anyone from all over the globe is welcome to use the calculator, it was developed as a free tool to calculate the distance between two points. At a later stage we wish to also show the map and its directions, so it will simply show you a text based version of your directions.

  7. www.omnicalculator.com › math › great-circleGreat Circle Calculator

    18 sty 2024 · To calculate the great circle distance on a sphere, take the points A = (φA, λA) and B = (φB, λB), and follow the steps: Compute the product of the cosines of the latitudes and the difference of longitudes: t1 = cos (φA) × cos (φB) × cos (λA - λB) Compute the product of the sines of the longitudes:

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