Distance from New York to Buenos Aires
This page calculates the distance from New York (40.7128Β° N, -74.0060Β° W) in USA to Buenos Aires (-34.6037Β° S, -58.3816Β° W) in Argentina. The great-circle (straight-line) distance is 8526 kilometers (5298 miles, or 4604 nautical miles). This is the shortest path over the Earth's surface β the route that airplanes actually follow, and the baseline every other distance estimate starts from. This route crosses significant longitudinal and/or latitudinal distance, so the great-circle path will curve on a flat Mercator map but is actually the shortest path on the globe. At this distance, flight time is typically 5-10 hours non-stop depending on wind direction and aircraft type.
Beyond the raw distance, this page also gives you realistic driving, walking and flight-time estimates. Driving distance is typically 1.2-1.5x the great-circle value because roads cannot follow a perfect straight line across mountains, rivers and private land. Walking time assumes a steady 5 km/h pace. Flight time assumes a cruise speed of 800 km/h plus 30 minutes for taxi, climb and descent. These estimates are computed on a spherical Earth of radius 6,371 km using the Haversine formula, which is accurate to ~0.3% for all point pairs on the globe.
Use the interactive map above to adjust the two points by clicking anywhere, or search by city name or address in the fields. Results update instantly, so you can explore nearby alternatives or test different endpoints. Whether you are planning a road trip, estimating a flight, budgeting fuel, comparing routes or just satisfying geographic curiosity, the calculator below gives you the numbers you need in seconds. The straight-line distance from New York to Buenos Aires is approximately 8,526 km (5,298 miles).
This page explains how the distance from new york to buenos aires works, the data and formulas behind it, and how to interpret the result. Great-circle distances are the shortest path over the Earth's surface - the route aeroplanes actually follow. They are the baseline every other distance estimate starts from, and are accurate to ~0.3% of the more complex ellipsoidal (WGS84) distance. The tool is one of 329 free, open tools on JoseFitani for maps and geography. It runs in your browser with no sign-up needed. Use the search field or click the map to drop a pin - the tool uses the Haversine formula on a sphere of radius 6,371 km, plus mode-specific detour factors for driving, walking and flight-time estimates and returns the result in seconds. Below you'll find a step-by-step guide, real use cases, the methodology, FAQs, and data sources.
How to use this tool
Type your query, paste coordinates, or click on the map. The tool uses the Haversine formula on a sphere of radius 6,371 km, plus mode-specific detour factors for driving, walking and flight-time estimates to process your input locally in the browser.
The result appears instantly with the map showing your location. You can adjust by clicking elsewhere or searching a new place.
Click Copy to save to clipboard, or Share to send a direct link with the exact inputs.
What people use this tool for
Travellers, hikers and outdoor enthusiasts use the distance from new york to buenos aires to estimate distances, times and logistics before setting out. The result helps budget fuel, accommodation and time.
Professionals in logistics, real estate, urban planning and research use the distance from new york to buenos aires for baseline calculations. The tool runs in your browser, so sensitive inputs stay private.
Teachers use the distance from new york to buenos aires to demonstrate geographic concepts. The interactive map lets students click anywhere and see results - more engaging than textbooks.
Researchers use the distance from new york to buenos aires for geographic analysis. Curious minds use it to answer questions like "how far is X from Y?" or "how high is that mountain?"
Related city pairs you can also look up
Distances for other popular city pairs on this site.
| Route | Result | Distance |
|---|---|---|
| New York β Los Angeles | USA | 3936 km / 2446 mi |
| New York β Chicago | USA | 1144 km / 711 mi |
| New York β Houston | USA | 2281 km / 1418 mi |
| New York β Miami | USA | 1758 km / 1092 mi |
| New York β San Francisco | USA | 4129 km / 2566 mi |
| New York β Seattle | USA | 3866 km / 2402 mi |
| New York β Boston | USA | 306 km / 190 mi |
| New York β Denver | USA | 2619 km / 1627 mi |
How it's calculated
The straight-line distance is computed with the Haversine formula on a spherical Earth of radius 6,371 km. The Haversine formula is derived from spherical trigonometry: it computes the central angle between two points on a sphere from their latitudes and longitudes, then multiplies by the radius to get distance. For the pair (40.7128Β°, -74.0060Β°) and (-34.6037Β°, -58.3816Β°), this gives 8526.21 km.
The Haversine formula is typically within ~0.3% of the more complex Vincenty / WGS84 ellipsoidal distance, which treats the Earth as an oblate spheroid rather than a perfect sphere. For travel planning, shipping quotes and most geographic work, this accuracy is more than sufficient. For survey-grade work below 1 m, use the Vincenty formula or a professional GIS tool.
Driving, walking and flight estimates apply standard correction factors. Driving distance uses a 1.3x detour factor applied to the great-circle distance, at an assumed highway average of 90 km/h. Walking uses a 1.4x factor at 5 km/h. Flight time assumes 800 km/h cruise speed plus a fixed 30-minute buffer for taxi, climb and descent. These are approximations; actual values require a routing engine (OSRM, Valhalla) for road travel, or flight-planning software for aviation.
The calculation runs in your browser - no data is sent to our servers. Map tiles come from OpenStreetMap (ODbL license), geocoding uses Nominatim (1 request/second limit), and elevation uses the Open-Elevation API backed by SRTM data. All are free, open services.
All calculations use the WGS84 datum (EPSG:4326), the same as GPS. For other datums (NAD27, NAD83, ETRS89), a separate conversion is needed. The difference is typically under 1 metre - negligible for most uses but important for survey-grade work.
The formulas match those in professional GIS software (QGIS, ArcGIS, Global Mapper), just in a browser-friendly form. For sub-metre accuracy, use professional software with ellipsoidal calculations. Results are shown in multiple units: km and miles for distance, kmΒ²/mΒ²/hectares/acres for area, metres and feet for elevation. Conversion factors are exact (1 mile = 1.609344 km), so the only error source is input precision.
Related tools and resources
Frequently asked questions
How far is Buenos Aires from New York?
The great-circle (straight-line) distance is 8526 km, which equals 5298 miles or 4604 nautical miles. This is the shortest path over the Earth's surface between the two points.
How long does it take to drive from New York to Buenos Aires?
Roughly 123 hours of driving time, covering about 11084 km of road. Actual time varies with traffic, road conditions, border crossings and the specific route taken. For turn-by-turn directions, use a routing service like OSRM or a commercial mapping app.
What is the flight time?
Approximately 11 hours non-stop for a commercial jet cruising at 800 km/h, plus 30 minutes for taxi, climb and descent. Actual flight time depends on wind direction - westbound flights across the Atlantic are typically slower than eastbound due to the jet stream.
Is the great-circle distance the same as driving distance?
No. The great-circle distance is the shortest path over the Earth's surface. Driving distance is typically 1.2-1.5x longer because roads cannot cross oceans, mountains or private land. For New York to Buenos Aires, the driving estimate is 11084 km versus 8526 km straight-line.
Why does the line on the map look curved?
The great-circle route is actually the shortest path on a sphere. On a flat (Mercator) map it appears curved because flat maps distort the globe. Airplanes follow this curved path in reality; it only looks strange on a 2D map.
How accurate is the Haversine formula?
Within ~0.3% of the more complex Vincenty or WGS84 ellipsoidal distance for most points on Earth. For survey-grade accuracy below 1 meter, use the Vincenty formula or a professional GIS tool. For all practical travel planning, Haversine is more than adequate.
Does this work for any two points on Earth?
Yes - including points in different hemispheres, across oceans, near the poles and at the antipodes. The formula handles all cases; the only edge case is antipodal points (exactly opposite each other on the globe) where infinitely many great circles pass through both.
Can I use this for shipping or logistics planning?
As a rough distance estimate, yes. For actual shipping quotes you need a routing engine that considers ports, highways, customs borders and tolls. Great-circle distance is the starting point; real logistics use network routing.
How long would it take to walk from New York to Buenos Aires?
About 2387 hours at a steady 5 km/h pace without breaks. This is equivalent to many days of continuous walking for any substantial distance. Add rest days, terrain factors and elevation gain for realistic expedition planning.
What is a nautical mile and why do you show it?
A nautical mile is defined as one minute of latitude, which equals 1.852 km. It is the standard unit used in aviation and marine navigation because it maps cleanly onto angular coordinates on the globe. 8526 km equals 4604 nautical miles.
Can I calculate distance using ZIP codes or postal codes instead?
Yes, indirectly. Look up the coordinates for each postal code using a postal-code finder tool, then enter those coordinates here. The result will be the great-circle distance between the centroids of the two postal areas.
Does this tool account for the Earth's oblateness?
No - the Haversine formula treats the Earth as a perfect sphere of radius 6,371 km. The Earth is actually an oblate spheroid, slightly wider at the equator. For most purposes the spherical approximation is fine; for sub-0.3% accuracy use the Vincenty formula on the WGS84 ellipsoid.
How accurate is the distance from new york to buenos aires?
For typical inputs, the result is accurate to within a fraction of a percent. Accuracy depends on input precision and the underlying geographic formulas used.
Does this work worldwide?
Yes - the tool works for any location on Earth, including across oceans and near the poles.
Does this work offline?
The calculation runs locally in your browser; map tiles and address search require an internet connection.
What datum is used?
WGS84 (EPSG:4326), the same datum used by GPS and most modern maps.
Can I export the result?
Click Copy to save to clipboard, or Share to send a direct link to the exact inputs.
Can I use this commercially?
Yes - the tool and underlying data are free for personal and commercial use.
How is this different from Google Maps?
Google Maps is optimised for turn-by-turn navigation with traffic. This tool focuses on accurate geographic calculation with full documentation of methodology and data sources.
Is my data private?
Yes. The calculation runs in your browser. Only coordinates for geocoding/elevation are sent to third-party services. We do not log or store your inputs.
Data sources & methodology
- OpenStreetMap β Map tiles and address search via Nominatim.
- Haversine formula β Great-circle distance on a sphere of radius 6,371 km. Accurate to ~0.3% of the ellipsoidal distance.
- City coordinates β Geometric centroids of major cities from public gazetteers (GeoNames and similar).
- Driving and walking estimates β Applied correction factors of 1.3x (driving) and 1.4x (walking) to the great-circle distance. Real routing requires a routing engine.
- Flight time β 800 km/h cruise plus 30 min taxi/climb/descent buffer. Actual flight time varies with winds and air-traffic routing.
- Nominatim geocoder β OpenStreetMap-based geocoding service.
- WGS84 datum β Global reference datum used by GPS.