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  1. Air Distance & Flight Time Calculation The Great Circle Mapper. Draw you flight path on a map and calculate the great circle distance in nautical miles and kilometers. Get estimat

  2. Assuming a sphere of radius 6371.2 km , convert longitude and latitude to radians (multiply by pi /180) and then use the following formula: theta = lon2 - lon1. dist = acos (sin ( lat1) × sin ( lat2 ) + cos ( lat1) × cos ( lat2 ) × cos ( theta )) if ( dist < 0) dist = dist + pi. dist = dist × 6371.2.

  3. This formula is for the initial bearing (sometimes referred to as forward azimuth) which if followed in a straight line along a great-circle arc will take you from the start point to the end point: 1. Formula: θ = atan2 ( sin Δλ cos φ 2 , cos φ 1 ⋅ sin φ 2sin φ 1 ⋅ cos φ 2 ⋅ cos Δλ ) where.

  4. 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.

  5. 20 maj 2024 · Finally, the new Frankfurt service is shown in the gold that formed half of the inaugural aircraft's striped livery. References and additional information: The Great Circle Mapper displays maps and computes distances along a geodesic path. It includes an extensive, searchable database of airports and other locations.

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

    18 sty 2024 · Here are the numbers: a = 6378137.8 m. a = 6 378 137.8\ \mathrm {m} a= 6378137.8 m; b ≈ 6356752.314140 m. b \approx 6 356 752.314140\ \mathrm {m} b ≈6356752.314140 m; and. f = 298.257223563. f = 298.257 223 563 f =298.257223563. We will now introduce Vincenty's formula to calculate the great circle on an ellipsoid.

  7. en.wikipedia.org › wiki › Great_circleGreat circle - Wikipedia

    In mathematics, a great circle or orthodrome is the circular intersection of a sphere and a plane passing through the sphere's center point. [1] [2] Any arc of a great circle is a geodesic of the sphere, so that great circles in spherical geometry are the natural analog of straight lines in Euclidean space.

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