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because they move to other continents to create new land

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Did the upper mantle or core of earths surface drive the plate tectonics?

The mantle, being of a silly-putty-like consistancy, is responsible for the movement of the plates on earth's crust, or plate tectonics.


Is mount novarupta responsible for any of earths surface changes?

is mount novarupta responsible for any of earths surface changes


What are plates techonics?

plate tectonics are moving plates under the earths surface


Which the theory views the earths surface as composed of slowly moving plates?

Plate tectonics.


Are blizzards used as a evidence the the earths surface consist of plates that are in continuous motion?

No. Blizzards have nothing to do with plate tectonics.


What theory explains the movement of pieces of earths surface?

Plate tectonics is the theory that explains the movement of Earth's surface. It states that the Earth's lithosphere is divided into large plates that float on the semi-fluid asthenosphere below, causing them to move and interact with one another. This movement is responsible for various geological processes such as earthquakes, volcanic eruptions, and the formation of mountain ranges.


Which theory explains the processes that shape the Earths surface into mountains deep-sea trenches and oceanic ridges?

plate tectonics


This is rarely found on earth because earths surface is constantly changing?

Meteorite craters.


What do you call the movements of the earths crust?

Tectonics.


Was earths tectonics plates ever stationary?

no


What is processes that break down rock at earths surface?

Denudational processes, which includes, weathering, erosion, deformation, and exfoliation. Mass movement also plays a great role in changing the earths surface.


What is the theory that earths surface is divided into more than 12 slow moving plates?

The theory that Earth's surface is divided into more than 12 slow-moving plates is known as plate tectonics. These plates float on the semi-fluid asthenosphere beneath them, and their movement is responsible for various geological phenomena such as earthquakes, volcanic activity, and mountain building. The interactions between these plates at their boundaries shape the Earth's surface over geological timescales.