Laurinburg to Ponte Vedra Beach: Road Trip Guide & Distance

332.7 miles 535.4 km · straight line
399.2 miles estimated 642.5 km · driving distance
8h 2min estimated drive time
$38 - $47 estimated fuel cost
~1h 10min flight time
200° SSW bearing direction

How far is Laurinburg from Ponte Vedra Beach?

The distance from Laurinburg to Ponte Vedra Beach is 332.7 miles (535.4 km) as the crow flies. Ponte Vedra Beach is located SSW of Laurinburg. By car, the driving distance is approximately 399.2 miles, taking about 8h 2min. A direct flight would take roughly 1h 10min. Both are located in United States — Laurinburg in North Carolina and Ponte Vedra Beach in Florida.

This is a solid day of driving. Be sure to take breaks every 2-3 hours to avoid driver fatigue, and plan your meals ahead of time. Since you'll be heading mostly West, pack a good pair of sunglasses if you plan to drive during the late afternoon to avoid the harsh sun glare.

Coordinates come from public place data for Laurinburg and Ponte Vedra Beach. The driving distance is estimated from straight-line distance with a road-factor model, so confirm the route in your navigation app. Fuel, flight, bus, and train values are planning estimates and can change by date, provider, road closures, and border rules.

How to Get from Laurinburg to Ponte Vedra Beach

Method Time Est. Cost Best For
Drive 8h 2min $38 - $47 Flexible stops
Fly ~1h 10min $80–200* Speed
Bus ~9h 38min $32–$60* Budget
Train ~7h 38min $48–$140* Comfort

Suggested Stops Between Laurinburg & Ponte Vedra Beach

Quick Facts

Laurinburg
34.77°N, 79.46°W
America/New_York
68m elevation
Ponte Vedra Beach
30.24°N, 81.39°W
America/New_York
4m elevation
Explore more routes from Ponte Vedra Beach

Did You Know?

  • At walking speed (3 mph), it would take about 111 hours of non-stop walking
  • By bicycle at 12 mph, the journey would take roughly 28 hours
  • You could travel this distance about 74.9 times to circle the Earth's equator
Data Sources & Estimate Notes GeoNames · OpenStreetMap · Driving distance estimated using road factor coefficients