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Different temperatures inside the Earth lead to the formation of various structures, such as magma chambers where molten rock accumulates, as well as crystal growth in minerals under high temperatures and pressures. Additionally, temperature variations can cause thermal expansion and contraction, leading to the formation of fractures and faults within the Earth's crust.
Komatiite is an extrusive igneous rock that forms from very hot magma erupting onto the surface of the Earth and cooling quickly. It is characterized by its high magnesium content and typically forms where there are high mantle temperatures.
High temperatures inside the Earth can lead to the formation of molten rock, known as magma. This molten rock can rise to the surface and form volcanic activity, such as volcanic eruptions and lava flows. It can also form igneous rocks when it cools and solidifies.
Deep in the Earth is where minerals form. This causes high pressure and temperatures.
Magnesium bicarbonate forms magnesium hydroxide on boiling because of the high temperatures.
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High temperatures inside the Earth form magma, which is molten rock beneath the Earth's surface. As the magma rises towards the surface, it can lead to volcanic eruptions and the formation of new land features like mountains, volcanoes, and oceanic ridges.
babies u junkie!
Different temperatures inside the Earth lead to the formation of various structures, such as magma chambers where molten rock accumulates, as well as crystal growth in minerals under high temperatures and pressures. Additionally, temperature variations can cause thermal expansion and contraction, leading to the formation of fractures and faults within the Earth's crust.
It forms deep inside the Earth's surface
Komatiite is an extrusive igneous rock that forms from very hot magma erupting onto the surface of the Earth and cooling quickly. It is characterized by its high magnesium content and typically forms where there are high mantle temperatures.
High temperatures inside the Earth can lead to the formation of molten rock, known as magma. This molten rock can rise to the surface and form volcanic activity, such as volcanic eruptions and lava flows. It can also form igneous rocks when it cools and solidifies.
The Earth is hot inside because of the heat left over from its formation over 4.5 billion years ago, as well as heat produced by radioactive decay of elements in the Earth's core. This heat is trapped and unable to escape, leading to high temperatures deep within the Earth.
they are high
No
Deep in the Earth is where minerals form. This causes high pressure and temperatures.
A metamorphic rock forms when high temperatures and pressures alter the texture, mineralogy, or chemical composition of a pre-existing rock without melting it. This process occurs deep within the Earth's crust where rocks are exposed to intense heat and pressure, causing them to recrystallize and change form.