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North American

Major Plate
Code
NA
Area
75,900,000.0 km²
Fault Lines
20

Covers North America, Greenland, and part of the North Atlantic.

Associated Fault Lines

Fault Line Length Max Mag
2002 rupture 380 km
Agua Blanca 90 km
Alamogordo fault 121 km
Alvin Canyon fault 71 km
Amargosa fault 70 km
Amargosa (Seccion I) 56 km
Anacapa-Dume alt 1 51 km
Anacapa-Dume alt 2 65 km
Antelope Range-Kingsley Mountains fault zone 71 km
Aubrey fault zone 65 km
Baker 88 km
Bartlett Springs 2011 CFM 164 km
Battle Creek 2011 CFM 69 km
Bear River fault zone 1,270 km
Beaverhead fault 134 km
Benton Spring fault, southern section 85 km
Bettles Well-Petrified Springs fault 71 km
Big Chino-Little Chino fault 65 km
Big Lagoon - Bald Mtn 2011 CFM 197 km
Black Rock fault zone 80 km

Frequently Asked Questions

The North American Plate is a major plate tectonic plate covering approximately 75,900,000 km². Its boundaries are defined by seismic activity, volcanic arcs, and geological surveys of the Earth's lithosphere.

The North American Plate covers approximately 75,900,000 km², making it one of the largest tectonic plates on Earth, covering a significant portion of the planet's surface. Plate size influences the types and magnitudes of earthquakes that occur along its boundaries.

The boundaries of the North American Plate are seismically active, as all tectonic plate boundaries experience some level of earthquake activity. The intensity depends on the type of boundary — convergent boundaries tend to produce the largest earthquakes, while divergent boundaries produce smaller but more frequent events.

A tectonic plate is a massive slab of the Earth's lithosphere (crust and upper mantle) that floats on the semi-fluid asthenosphere below. There are 7 major plates and several minor plates. Their movement — typically 1-10 cm per year — drives earthquakes, volcanic eruptions, and mountain building at their boundaries.

All three types of plate boundaries generate earthquakes: convergent boundaries (where plates collide) produce the largest earthquakes including M9+ megathrust events; transform boundaries (where plates slide past each other) produce frequent moderate earthquakes; and divergent boundaries (where plates pull apart) produce smaller but frequent earthquakes.

The Ring of Fire is a horseshoe-shaped zone around the Pacific Ocean where approximately 90% of the world's earthquakes and 75% of active volcanoes occur. It stretches 40,000 km from New Zealand through Southeast Asia, Japan, the Aleutian Islands, and down the west coasts of North and South America.

Tectonic plates move at rates of 1-10 centimeters per year — roughly the speed at which fingernails grow. The fastest-moving plate is the Pacific Plate at about 7-11 cm/year. These slow but relentless movements build up enormous stress at plate boundaries, which is released suddenly as earthquakes.

Yes, intraplate earthquakes occur within tectonic plates, far from boundaries. They are caused by ancient faults reactivated by regional stress, mantle convection, or crustal loading. Examples include the 1811-1812 New Madrid earthquakes in the central United States and the 2001 Gujarat earthquake in India.