In which region of the Earth's interior does the heat increase to the point that rocks can begin to melt?
The heat increases to the point that rocks can begin to melt in the lower part of the Earth's mantle, known as the asthenosphere. This is where the temperature and pressure conditions allow for rocks to melt and form magma.
asthenosphere
Pressure and temperature increase with depth within Earth's interior, while density and seismic wave velocity also tend to increase.
Processes that begin in Earth's interior include mantle convection, where heat from the core drives the movement of magma in the mantle, leading to plate tectonics and volcanic activity. The solidification of molten rock forms igneous rocks, while pressure and heat within the Earth's interior can also lead to the formation of metamorphic rocks.
Lol, do his homework urself. anywayz its pressure and temperature
In which region of the Earth's interior does the heat increase to the point that rocks can begin to melt?
In which region of the Earth's interior does the heat increase to the point that rocks can begin to melt?
The heat increases to the point that rocks can begin to melt in the lower part of the Earth's mantle, known as the asthenosphere. This is where the temperature and pressure conditions allow for rocks to melt and form magma.
asthenosphere
The heat increases to the point that rocks can begin to melt in the region known as the mantle. This layer lies beneath the Earth's crust and is composed of solid rock, but under high temperatures and pressure, some rocks can melt and form magma.
Pressure and temperature increase with depth within Earth's interior, while density and seismic wave velocity also tend to increase.
The Crust,The Mantle and The Core
Processes that begin in Earth's interior include mantle convection, where heat from the core drives the movement of magma in the mantle, leading to plate tectonics and volcanic activity. The solidification of molten rock forms igneous rocks, while pressure and heat within the Earth's interior can also lead to the formation of metamorphic rocks.
Lol, do his homework urself. anywayz its pressure and temperature
The region in Earth's interior where convection currents occur is called the mantle. Convection currents in the mantle are responsible for driving plate tectonics and shaping Earth's surface features through processes like subduction and sea-floor spreading.
If Earth shrank in size but not mass, the compression would greatly heat Earth's interior. Surface gravity would increase.
The mantle cause the mantle to flow.