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Rocks can release energy through processes like earthquakes, volcanic eruptions, or landslides. When stored energy within the rock is suddenly released, it can cause significant disturbances in the Earth's surface. This release of energy is often due to the breaking of the rock due to stress buildup over time.

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What are mechanisms that can release accumulated elastic energy in rocks?

Some mechanisms that can release accumulated elastic energy in rocks include faulting, folding, landslides, and earthquakes. These processes can occur when the stress on rocks exceeds their strength, causing them to deform or fracture and release the stored energy.


When an earthquake occurs which type of energy is released from rocks along a fault?

When an earthquake occurs, the energy released from rocks along a fault is primarily elastic potential energy. As tectonic plates move and stress builds up in the rocks, this energy accumulates until it surpasses the strength of the rocks, leading to a sudden release. This release generates seismic waves, which we experience as shaking during the earthquake.


Does a rock get energy?

Rocks themselves do not possess energy in the way that living organisms do. However, rocks can store potential energy if they are positioned at an elevated height and have the ability to release this energy when they fall or move.


What is the release of energy stored in deformed rocks?

The release of energy stored in deformed rocks is known as an earthquake. This occurs when the built-up stress within the rocks is released suddenly along a fault line, causing seismic waves to propagate through the Earth's crust.


What is a ground movement caused by a release of energy when rocks along a fault move?

Earthquake


What is the input energy in falling rocks?

The input energy in falling rocks comes from the gravitational potential energy stored in the rocks when they are at a higher elevation. As the rocks fall, this potential energy is converted into kinetic energy, which is the energy of motion.


What theory explains how rocks in the earth store energy and release it to cause earthquakes?

The theory that explains how rocks in the earth store energy and release it to cause earthquakes is called the elastic rebound theory. This theory states that rocks deform elastically as stress accumulates within them. When the stress exceeds the rocks' strength, they suddenly break or "rebound," releasing the stored energy in the form of seismic waves, resulting in an earthquake.


Point where rocks break and release energy?

The point where rocks break and release stored energy is called the focus. This is the exact location within the Earth where an earthquake originates due to the sudden release of accumulated stress along a fault line. The energy released then radiates outwards in the form of seismic waves, causing the ground to shake during an earthquake.


How do earthquakes happen-?

Earthquakes happen when under the ground rocks break at a fault. The rocks then break it release of energy which causes semi waves.


Vibrations caused by rocks breaking and moving as a result af a sudden release of energy?

Vibrations caused by rocks breaking and moving as a result of a sudden release of energy is called an Earthquake. By the movement of plate boundaries, depending how it moved, is how strong the Earthquake will be.


The point where rocks break and release energy in the form of seismic waves?

The point where rocks break and release energy in the form of seismic waves is known as the focus or hypocenter of an earthquake. This is typically located beneath the Earth's surface along a fault line where the stress within the rocks exceeds their strength, causing them to fracture and generate seismic waves.


Is a movement or trembling of the ground that is caused by a sudden release of energy when rocks move along a fault?

Yes, that phenomenon is known as an earthquake. It occurs when there is a sudden release of energy in the Earth's crust due to the movement of rocks along a fault line. This release of energy generates seismic waves, which cause the ground to shake or tremble. Earthquakes can vary in intensity and can lead to significant damage depending on their magnitude and location.