When a seafloor plate collides with a continental plate, the denser seafloor plate will subduct beneath the continental plate due to its higher density. This can create a deep ocean trench at the point of collision and may lead to the formation of volcanic arcs on the continental plate due to melting of the subducted plate. This collision can also cause earthquakes and mountain building on the continental plate.
Convergent plate boundaries.
subduction
When an oceanic plate collides with a continental plate, the denser oceanic plate is usually subducted beneath the less dense continental plate. This subduction process can lead to the formation of deep oceanic trenches and volcanic arcs on the overriding continental plate.
When an oceanic plate collides with a continental plate, the denser oceanic plate usually subducts beneath the less dense continental plate due to the difference in densities. This can lead to the formation of deep oceanic trenches, volcanic arcs, and mountain ranges on the continental plate due to the intense tectonic forces generated during the collision.
When a seafloor plate collides with a continental plate, the denser seafloor plate will subduct beneath the continental plate due to its higher density. This can create a deep ocean trench at the point of collision and may lead to the formation of volcanic arcs on the continental plate due to melting of the subducted plate. This collision can also cause earthquakes and mountain building on the continental plate.
The contiental cdrust is forced under the continental crust in a process called subduction.
Convergent plate boundaries.
subduction
it forms a trench
When an oceanic plate collides with a continental plate, the denser oceanic plate is subducted beneath the continental plate due to its weight. This subduction can lead to the formation of deep ocean trenches, volcanic arcs, and seismic activity.
When a continental plate collides with an oceanic plate and overtakes it, the denser oceanic plate is forced underneath the continental plate in a process called subduction. This creates a deep ocean trench, volcanic arcs, and earthquakes along the boundary between the two plates. The subduction process can also lead to the formation of mountain ranges on the overriding continental plate.
terranes are attached to the edge of a continent
When an ocean plate collides with a continental plate, a subduction zone occurs and forms a deep trench. An ocean plate is more dense while a continental plate is less dense which causes the ocean plate to go under the continental plate and pull the land and water down, forming a trench.
When an ocean plate collides with a continental plate, a subduction zone occurs and forms a deep trench. An ocean plate is more dense while a continental plate is less dense which causes the ocean plate to go under the continental plate and pull the land and water down, forming a trench.
When an ocean plate collides with a continental plate, a subduction zone is formed where the denser oceanic plate is forced beneath the lighter continental plate. This can result in the formation of volcanic arcs, deep ocean trenches, and earthquakes.
Yes. The theory of plate tectonics is very broad, and it covers seafloor spreading, continental drift, plate boundaries and so on.