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In air, oxygen reacts with minerals in rocks causing oxidation. This oxidation can weaken the structure of the rock by breaking down minerals, leading to weathering and ultimately the breakdown of the rock into smaller pieces. Over time, this process can alter the composition and appearance of the rock.

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Oxidation is a source of which type of weathering?

Oxidation is a source of chemical weathering. It occurs when minerals in rocks react with oxygen in the air or water, causing them to break down and weaken.


Is oxidation part of chemical or mechanical weathering?

Oxidation is a chemical process, not mechanical, that can lead to chemical weathering. It occurs when minerals in rocks react with oxygen in the air or water, causing the minerals to break down and the rock to weaken.


How does weather and air help cause chemical weathering?

Weathering involves the breakdown of minerals in rocks, and air plays a role in this process by providing oxygen. Oxygen in the air can react with minerals in rocks, causing them to break down through oxidation. Water from weather, such as rain, can also contribute to chemical weathering by aiding in the breakdown of minerals through processes like hydrolysis.


How does air effect weathering?

Air affects weathering through processes such as oxidation, hydration, and carbonation. Oxygen in the air can react with minerals, weakening rocks and causing them to break down over time. Moisture in the air can also contribute to weathering by facilitating chemical reactions that break down rocks. Additionally, air pollution can accelerate weathering processes by introducing acidic components that enhance the breakdown of rocks and minerals.


How does chemical weathering break down rocks?

Chemical weathering often refers to the chemical reactions that take place between acidic rain or ground water and various rock types. It can also refer to the gradual oxidation of minerals by exposure to air and water. The chemical reaction usually results in the gradual dissolution of the rock.

Related Questions

Is oxidation mechanical or chemical weathering?

Oxidation is a chemical weathering process that occurs when minerals react with oxygen in the air or water, leading to the breakdown of rocks and minerals. This reaction can cause changes in the color and composition of rocks over time.


Oxidation is a source of which type of weathering?

Oxidation is a source of chemical weathering. It occurs when minerals in rocks react with oxygen in the air or water, causing them to break down and weaken.


Is oxidation part of chemical or mechanical weathering?

Oxidation is a chemical process, not mechanical, that can lead to chemical weathering. It occurs when minerals in rocks react with oxygen in the air or water, causing the minerals to break down and the rock to weaken.


Is oxidation the type of weathering requires the presence of water?

Yes, oxidation is a type of chemical weathering that does require the presence of water to occur. Oxygen in the air combines with minerals in rocks when water is present, leading to the breakdown of those minerals through oxidation.


How does weather and air help cause chemical weathering?

Weathering involves the breakdown of minerals in rocks, and air plays a role in this process by providing oxygen. Oxygen in the air can react with minerals in rocks, causing them to break down through oxidation. Water from weather, such as rain, can also contribute to chemical weathering by aiding in the breakdown of minerals through processes like hydrolysis.


How does air effect weathering?

Air affects weathering through processes such as oxidation, hydration, and carbonation. Oxygen in the air can react with minerals, weakening rocks and causing them to break down over time. Moisture in the air can also contribute to weathering by facilitating chemical reactions that break down rocks. Additionally, air pollution can accelerate weathering processes by introducing acidic components that enhance the breakdown of rocks and minerals.


How does chemical weathering break down rocks?

Chemical weathering often refers to the chemical reactions that take place between acidic rain or ground water and various rock types. It can also refer to the gradual oxidation of minerals by exposure to air and water. The chemical reaction usually results in the gradual dissolution of the rock.


How do air break rocks?

Air can break rocks through a process called weathering. When air contains water or acids, it can react with minerals in rocks, causing them to weaken and break apart over time. This process can include physical weathering (such as freeze-thaw cycles) and chemical weathering (like oxidation or carbonation).


How does air cause chemical weathering?

Air can cause chemical weathering through processes like oxidation, where oxygen in the air reacts with minerals in rocks to form new compounds. Additionally, air can contribute to the formation of acids in the atmosphere, such as carbonic acid from carbon dioxide, which can further break down minerals in rocks over time.


How chemical weathering affect rock?

Chemical weathering affects rocks rain, wind or ice . Chemical weathering is the process that changes the composition ( the inside) of rocks on the earth surface.


How does weathering of rocks take place?

Weathering of rocks takes place through mechanical or physical weathering, where rocks break down into smaller pieces due to factors like temperature changes, frost action, and pressure. Chemical weathering is another process where rocks are broken down through chemical reactions such as oxidation or dissolution caused by exposure to water, air, or acids. Over time, these processes can weaken rocks and cause them to disintegrate into smaller particles.


Is weathering rocks chemical or physical change?

Weathering of rocks can involve both chemical and physical changes. Physical weathering involves the breakdown of rocks without changing their chemical composition, while chemical weathering involves the alteration of a rock's chemical composition through reactions with water, air, or other substances.