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Folded mountains are the result of compression stress in the earth's crust. This is a movement of plates that presses together or squeezes Earth's crust and is also known as convergent boundary.

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Which type of force forms folded mountains?

The force that forms folded mountains is called compressional force. This force occurs when tectonic plates collide, causing the Earth's crust to be pushed together and folded, leading to the formation of mountains.


How does plate movement affect the formation of folded mountains?

Plate movement causes the compression and buckling of rocks, leading to the formation of folded mountains. As tectonic plates collide, pressure builds up and rocks are pushed and folded, creating the characteristic folded structure of mountains such as the Himalayas or the Alps. Over time, this continuous compression and folding result in the uplift of the land and the formation of folded mountain ranges.


Why do folded mountains have jagged peaks?

Folded mountains have jagged peaks because the layers of rock are folded and bent during the tectonic processes that create the mountains. This folding results in fractures and weaknesses along the rock layers, which can lead to erosion and the formation of sharp, jagged peaks over time.


What is the dominant type of stress associated with folded mountains?

The dominant type of stress associated with folded mountains is compressional stress caused by tectonic plate collision. As plates converge, the rocks are squeezed and folded, leading to the formation of folded mountain ranges such as the Himalayas and the Appalachians.


How are fault lines important in the formation of folded mountains?

Fault lines are important in the formation of folded mountains because they serve as zones of weakness in the Earth's crust where rock layers can move and fold due to tectonic forces. When pressure builds along these fault lines, it can cause the rocks to bend and fold, eventually leading to the creation of folded mountain ranges. The movement along fault lines can uplift and deform the Earth's crust, resulting in the formation of complex folded mountain structures.

Related Questions

What type stress in the crust results in the formation of folded mountains explain?

conpression


Which type of force forms folded mountains?

The force that forms folded mountains is called compressional force. This force occurs when tectonic plates collide, causing the Earth's crust to be pushed together and folded, leading to the formation of mountains.


What type of stress in the crust results in the formation of folded mountain?

Compression.


How does plate movement affect the formation of folded mountains?

Plate movement causes the compression and buckling of rocks, leading to the formation of folded mountains. As tectonic plates collide, pressure builds up and rocks are pushed and folded, creating the characteristic folded structure of mountains such as the Himalayas or the Alps. Over time, this continuous compression and folding result in the uplift of the land and the formation of folded mountain ranges.


Why do folded mountains have jagged peaks?

Folded mountains have jagged peaks because the layers of rock are folded and bent during the tectonic processes that create the mountains. This folding results in fractures and weaknesses along the rock layers, which can lead to erosion and the formation of sharp, jagged peaks over time.


What is the dominant type of stress associated with folded mountains?

The dominant type of stress associated with folded mountains is compressional stress caused by tectonic plate collision. As plates converge, the rocks are squeezed and folded, leading to the formation of folded mountain ranges such as the Himalayas and the Appalachians.


How are folded mountains produced?

Folded mountains form when two plates move towards each other by compressional forces. The movement results in sedimentary rocks moving upwards to form a series of folds.


Where are some folded mountains located?

FOLDED MOUNTAINS are located in the himilayas


How are fault lines important in the formation of folded mountains?

Fault lines are important in the formation of folded mountains because they serve as zones of weakness in the Earth's crust where rock layers can move and fold due to tectonic forces. When pressure builds along these fault lines, it can cause the rocks to bend and fold, eventually leading to the creation of folded mountain ranges. The movement along fault lines can uplift and deform the Earth's crust, resulting in the formation of complex folded mountain structures.


What kind of mountains are the Appalachians?

They are folded mountains '____'


If you wanted to know whether a certain mountain was formed by compression what would you look for?

To determine if a mountain was formed by compression, you would look for folded and faulted rock layers, as well as evidence of intense pressure causing rocks to deform. Additionally, you might find evidence of compression in the form of thrust faults or folded strata within the mountain. Lastly, examining the types of rocks and their orientation can also provide clues about the mountain's formation.


Forces inside the earth pushing the crust upward forms which type of mountain?

Forces inside the Earth pushing the crust upward form folded mountains. These mountains are created when rock layers are compressed and pushed together, leading to the formation of folds and uplifted mountain ranges. Examples of folded mountains include the Himalayas and the Appalachian Mountains.