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they are both formed by converging plates at a BOUNDARY THAT PUSH UP THE EARTH

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How will you relate the distribution of mountain ranges with the distribution of epicenters and volcanoes?

The distribution of mountain ranges is closely linked to tectonic plate boundaries, where plates converge, diverge, or slide past one another. Epicenters of earthquakes typically occur along these boundaries, reflecting the movement and stress accumulated in the Earth's crust. Similarly, volcanoes are often found in these areas, particularly at convergent and divergent boundaries, where magma can rise to the surface. Thus, both epicenters and volcanoes are concentrated in regions where mountain ranges form due to tectonic activity.


Where do most of earth's earthquakes volcanoes and mountain building occur geologically?

Most earthquakes, volcanoes, and mountain building occur along tectonic plate boundaries. This is because the movement of these plates creates stress and pressure that can lead to these geological events. The Ring of Fire, a horseshoe-shaped area around the Pacific Ocean, is the most active region for these geological activities.


Which plate boundary is responsible for mountain building?

Convergent plate boundaries are responsible for mountain building. Continent-to-continent boundaries build mountains like the Himalayas. Continent-to-ocean boundaries build mountains like the Cascades. The difference is that continent-to-continent convergent boundaries do not produce volcanoes.


What mountain range does not have a volcano?

Transform boundaries cannot form volcanoes.


What can tectonic plates form when they converge?

When tectonic plates converge, they can form features such as mountain ranges, deep-sea trenches, volcanic arcs, and earthquakes. The collision and subduction of plates at convergent boundaries can also lead to the formation of island arcs and continental crust deformation.


What forms when continental crust converge with oceanic crust?

Deep sea trenches, Mountain ranges, Volcanoes, and Earthquakes.


What do tectonic plates form when they converge?

When tectonic plates converge, they can form various geological features such as mountain ranges, deep ocean trenches, and volcanoes. This convergent boundary can result in one plate being pushed beneath the other in a process known as subduction.


Does Malta have any active volcanoes?

No... In Gozo there is a high mountain which was thought to be a volcano because Malta and Gozo (Gozo makes part of Malta) doesn't diverge and converge


What high mountain ranges without volcanoes are built at which type of plate boundary?

High mountain ranges without volcanoes are built at convergent continental plate boundaries. These vary greatly from divergent boundaries which cause volcanoes to form.


What type of mountain is formed when plates converge?

When plates converge, a fold mountain is formed. This happens when the edges of two tectonic plates push against each other, causing the land to buckle and fold, creating mountain ranges like the Himalayas or the Andes.


How will you relate the distribution of mountain ranges with the distribution or earthquakes epicenters and volcanoes?

Mountain ranges are typically formed at tectonic plate boundaries, where plates collide, separate, or slide past each other, leading to significant geological activity. Earthquake epicenters are often concentrated along these boundaries, particularly in subduction zones and transform faults, indicating areas of intense tectonic stress. Similarly, volcanoes are commonly found in regions where plates converge or diverge, as magma from the mantle can reach the surface. Thus, the distribution of mountain ranges, earthquake epicenters, and volcanoes is closely linked to the dynamics of tectonic plate movements.


Are volcanoes always located near Mountain ranges?

No, volcanoes are not always located near mountain ranges. While many volcanoes are associated with mountain ranges formed by tectonic plate movements, volcanoes can also occur in other geological settings such as island chains, ocean ridges, and hot spots on the Earth's surface.