If the magma intruded into some other rock, its heat and pressure would tend to metamorphose the surrounding rock near to it, producing a body of magma surrounded by metamorphic rock.
A metamorphic rock is formed by the elements, minor heat, and compression. When the metamorphic rock is melted by magma, this would indicate that the metamorphic rock is under the surface of the earth. If it rises and cools again you will have an extrusive igneous rock. In a lot of cases, this is metamorphic rock on the surface under the influence of lava. This would change the composition and it would not longer be metamorphic, but rather igneous.
To form metamorphic rock from magma, first magma must intrude into existing rock layers. The heat and pressure generated by the magma will cause the surrounding rocks to recrystallize and change mineral composition, transforming into metamorphic rock. This process occurs deep within the Earth's crust and can take millions of years.
Metamorphic rock could become magma by collisions involving an oceanic plates. During subduction,any rock carried on the plate would return to the mantle and melt,forming magma
metamorphic rocks are heated and pressured so soon they are being melted turning into magma. But volcanic activity can also release lava which would cool and harden either in crack inside the volcano or on earths surface.
Metamorphic rocks can turn into magma through the process of partial melting caused by an increase in temperature and/or pressure. As the rock is subjected to higher temperatures and pressures, minerals within the rock may start to melt, forming magma. This molten magma can then rise towards the Earth's surface and may eventually solidify to form igneous rock.
If a metamorphic rock were to reach the mantle and melt, it would become magma. If that magma were then to recrystallize it would be an igneous rock.
A metamorphic rock is formed by the elements, minor heat, and compression. When the metamorphic rock is melted by magma, this would indicate that the metamorphic rock is under the surface of the earth. If it rises and cools again you will have an extrusive igneous rock. In a lot of cases, this is metamorphic rock on the surface under the influence of lava. This would change the composition and it would not longer be metamorphic, but rather igneous.
To form metamorphic rock from magma, first magma must intrude into existing rock layers. The heat and pressure generated by the magma will cause the surrounding rocks to recrystallize and change mineral composition, transforming into metamorphic rock. This process occurs deep within the Earth's crust and can take millions of years.
An intrusion of basaltic magma would likely cause greater contact metamorphism compared to an intrusion of rhyolitic magma. Basaltic magma has higher temperatures and higher fluidity, allowing it to heat surrounding rocks more effectively and induce more intense metamorphic changes.
if rock melts it will form magma, which leads to the formation of igneous rocks
Metamorphic rock could become magma by collisions involving an oceanic plates. During subduction,any rock carried on the plate would return to the mantle and melt,forming magma
At the point of total melt, it would be called magma. Metamorphic rock that exhibits partial melting is called migmatite.
metamorphic rocks are heated and pressured so soon they are being melted turning into magma. But volcanic activity can also release lava which would cool and harden either in crack inside the volcano or on earths surface.
Metamorphic rocks can turn into magma through the process of partial melting caused by an increase in temperature and/or pressure. As the rock is subjected to higher temperatures and pressures, minerals within the rock may start to melt, forming magma. This molten magma can then rise towards the Earth's surface and may eventually solidify to form igneous rock.
if rock melts it will form magma, which leads to the formation of igneous rocks
The large amount of water would increase the amount of magma, making it easier to melt rocks. The water vapor would help the magma cause explosive eruptions.
The cooling and hardening of magma deep underground results in igneous rock. Rare gems and diamonds can be found in igneous rock.