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Divergent plate boundaries create rift volcanism. Oceanic to oceanic crust convergence and oceanic to continental plate convergence can create volcanism when one plate subducts under the less dense plate.

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When is the last movement of the crustal plate?

The crustal plates are in constant motion, there is no last movement


Movement of the crustal plate?

The movement of crustal plates is driven by convection currents in the mantle. As these currents circulate, they drag the overlying crustal plates with them, causing them to move. This movement can lead to various geological phenomena, such as earthquakes, volcanic eruptions, and the formation of mountain ranges.


Why movement of crustal plates depend on heat?

The movement of crustal plates is driven by the flow of semi-molten rock in the mantle caused by heat from Earth's core. This process, known as mantle convection, creates thermal gradients that move the plates above. Heat is the primary energy source driving the tectonic plate movements that lead to phenomena such as earthquakes and volcanic eruptions.


What crustal feature is a result of divergent plate movement?

A mid-ocean ridge is a crustal feature formed by divergent plate movement. This occurs when tectonic plates move apart, allowing magma to rise to the surface, creating new oceanic crust.


Why do so many of earths volcanoes occur along plate boundries?

Volcanoes often occur along plate boundaries because the movement of tectonic plates leads to the formation of subduction zones, where one plate is forced beneath another. This process creates intense heat and pressure, causing magma to rise to the surface and form volcanoes. Additionally, divergent plate boundaries can also create volcanic activity as magma reaches the Earth's surface through rifts in the ocean floor.

Related Questions

When is the last movement of the crustal plate?

The crustal plates are in constant motion, there is no last movement


What type of plate movement forms volcanoes in iceland?

Divergent plate movement.


What are 3 earth features along the crustal plate boundaries?

Three features along crustal plate boundaries are earthquakes, volcanoes, and mountain ranges. Earthquakes occur due to the movement of tectonic plates, volcanoes form at convergent boundaries where plates collide, and mountain ranges are often found at convergent boundaries where plates push against each other.


What is the study of internal processes that result in crustal movement?

Plate tectonics.


What plate movement causes volcanoes?

The plate movement that causes volcanoes to erupt is called plate tectonics. Big rocky plates separate, make collisions and slide past each other that creates earthquakes, volcanic eruptions and also creates mountains.


What is the surface feature produced by crustal movements at a transform plate boundary?

Surface features produced by crustal movements at a transform plate boundary include strike-slip faults and earthquakes. These are caused by the horizontal movement of two tectonic plates sliding past each other. This movement does not typically result in significant volcanic activity or the formation of mountains.


Movement of lithospheric plates allows for the formation of volcanoes?

Movement of lithospheric plates at convergent boundaries can result in the subduction of one plate beneath another. This subduction creates conditions for magma to form as the subducting plate melts. The rising magma then reaches the surface, leading to the formation of volcanoes.


What do Earthquakes and volcanoes show power of what kind of movement?

plate movement


In which earth layer does crustal plate movement occur because of convection cells?

Crustal plate movement due to convection cells occurs in the asthenosphere, which is a semi-fluid layer beneath the lithosphere. The heat-driven convection currents in the asthenosphere cause the overlying crustal plates to move and interact with each other.


Are major crustal features like earthquakes volcanoes mountains and trenches found randomly on earths surface or is there a pattern?

Major crustal features are not randomly distributed on Earth's surface. They are typically found along tectonic plate boundaries where the movement of the plates interacts to create geological features like earthquakes, volcanoes, mountains, and trenches. These features are a result of the dynamic processes associated with plate tectonics.


Where do most earthquakes and volcanos occure?

they are formed along the crustal movements of the earth.


What do plate tectonics help explain?

Plate tectonics help explain the movement of Earth's crustal plates and how they interact at plate boundaries to create features such as mountains, earthquakes, and volcanoes. It also helps to understand the distribution of earthquakes and volcanic activity around the world.