Calculating Your Route

Finding the best route ...
Verifying Locations
Route Analysis
Optimization
Did you know?

Just a moment while we calculate your route...

Distance from Sarah , Georgia to Sky Village , North Carolina

Driving Distance
158.5 mi 255.1 km
Flying Distance
97.4 mi 156.8 km

Route Information

The driving distance from Sarah, Georgia to Sky Village, North Carolina is 158.5 mi (255.1 km)

The straight-line (air) distance is 97.4 mi (156.8 km)

The estimated flight time is 0 hr 12 min (assuming average flight speed of 500 mph)

The estimated travel time by road is 3 hours 14 minutes

Traveling mixed highways and local roads, substantial in a northeast direction. Average speeds around 45 mph.

Location Details

Origin:


No image available
Place Sarah
State/Province Georgia
Country US
Latitude 34.667591
Longitude -84.035747
GPS 34.667591° N, 84.035747° W
Local Time 6:04 AM
Timezone America/New_York

Destination:


No image available
Place Sky Village
State/Province North Carolina
Country US
Latitude 35.317061
Longitude -82.510676
GPS 35.317061° N, 82.510676° W
Local Time 6:04 AM
Timezone America/New_York

Journey Summary

Traveling from Sarah, Georgia to Sky Village, North Carolina covers 158.5 mi (255.1 km) in a northeast direction. This mixed highways and local roads, substantial route typically takes 3 hours 14 minutes under normal conditions.

Drivers have 3 route options between these locations (150.3-158.5 miles / 242-255 km). The primary route shown here saves 42 seconds compared to alternatives.

The route features scenic views along the way. with average speeds around 45 mph (72 km/h).

Available Routes

US-64 E
158.5 mi 3 hours 14 minutes
Shortest Fastest
US-123 N and SC-11 N
150.6 mi 3 hours 15 minutes
SC-11 N
150.3 mi 3 hours 15 minutes

How is the distance calculated?

Driving distances are based on actual road data. We use advanced routing algorithms that consider traffic, tolls, highways, and local streets. For air distances (as the crow flies), we use the Vincenty formula. It's a precise method that accounts for the Earth's shape and provides accuracy up to 0.5 mm.

When multiple route options exist, we display both the shortest and fastest paths. Travel times are estimated based on typical speeds for each road type, though actual times may vary with traffic and weather conditions. All distances are shown in both miles and kilometers for convenience.