The mantle convection currents beneath a continental convergent boundary will heat up and rise. They are heading toward each other, therefore, causing the two continents to collide.
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The convection currents are in the mantle😱
convection currents discovery date
convection currents.
Not conduction, but convection currents, are what drive winds and many ocean currents.
Eastern boundary currents are relatively shallow, broad, and slow-flowing. Western boundary currents are warm, deep, narrow, and fast-flowing currents that form on the west side of ocean basins due to western intensification.
it is a convergent boundary. it is caused by the convection currents in the mantle of the earth's core. this stress is called compression
Convection Currents.
They occur when the convection currents are less dense and rise.
Convection currents in the asthenosphere helps form subduction zones at convergent boundaries and ridges at divergent boundaries. This slow and continuous convection causes the plates on earth's crust to move.
Convergent Boundaries are found where two plates push against each other, sometimes causing earthquakes.
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Which best explains the relationship between ocean currents and convection currents?(1 point) Responses Convection currents join with the Coriolis effect to create the winds that drive ocean currents. Convection currents join with the Coriolis effect to create the winds that drive ocean currents. Ocean currents rely on warm convection currents to strength the Coriolis effect. Ocean currents rely on warm convection currents to strength the Coriolis effect. Ocean currents create a Coriolis effect that increases convection currents. Ocean currents create a Coriolis effect that increases convection currents. Convection currents use the Coriolis effect to generate ocean currents.
The convection currents are in the mantle😱
Convection currents move in the Mantle.
convection currents discovery date