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well physical weathering is when it breaks down rocks and chemical weathering is when rocks are dissolved or loosened so i suppose that it would be that over a certain amount of time goes by, the more weathering occurs. i hope that answers your question! (:

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How does physical and chemical weathering combine to affect rocks?

Physical weathering breaks down rocks into smaller pieces, increasing their surface area exposed to chemical weathering processes. Chemical weathering alters the mineral composition of rocks, weakening them and making them more susceptible to further physical weathering. Together, physical and chemical weathering work to break down rocks into smaller particles and alter their composition over time.


How physical process and chemical process works together to speed up the weathering process?

Physical processes like mechanical breakdown of rocks create more surface area for chemical weathering to occur. Chemical processes, such as oxidation and hydrolysis, break down the minerals in the rocks, further weakening them. Together, these processes accelerate the overall weathering of rocks and minerals.


Physical weathering and chemical weathering?

Physical weathering refers to the breakdown of rocks into smaller pieces without changing their chemical composition, typically due to physical forces like freezing and thawing. Chemical weathering, on the other hand, involves the alteration of rocks through chemical reactions, leading to the breakdown of minerals and their transformation into new substances. The two processes often work together to break down rocks and contribute to the overall process of rock weathering and erosion.


What happens during weathering to rocks?

Weathering is the process by which rocks are broken down into smaller pieces through physical or chemical processes. Physical weathering involves the breaking of rocks into smaller pieces through actions such as freeze-thaw cycles or abrasion by wind or water. Chemical weathering involves the alteration of the mineral composition of rocks through processes like oxidation or hydration. Together, physical and chemical weathering contribute to the gradual breakdown of rocks into sediment.


What are physical and chemical weathering?

Physical weathering is the breakdown of rocks into smaller pieces without changing their chemical composition, caused by factors like temperature changes, ice, and plant roots. Chemical weathering involves a chemical alteration of rocks, changing their composition through processes like oxidation, dissolution, and hydrolysis, and is influenced by factors like water, oxygen, and acids. Both processes work together to break down and transform rocks over time.

Related Questions

How does physical and chemical weathering combine to affect rocks?

Physical weathering breaks down rocks into smaller pieces, increasing their surface area exposed to chemical weathering processes. Chemical weathering alters the mineral composition of rocks, weakening them and making them more susceptible to further physical weathering. Together, physical and chemical weathering work to break down rocks into smaller particles and alter their composition over time.


How physical process and chemical process works together to speed up the weathering process?

Physical processes like mechanical breakdown of rocks create more surface area for chemical weathering to occur. Chemical processes, such as oxidation and hydrolysis, break down the minerals in the rocks, further weakening them. Together, these processes accelerate the overall weathering of rocks and minerals.


Physical weathering and chemical weathering?

Physical weathering refers to the breakdown of rocks into smaller pieces without changing their chemical composition, typically due to physical forces like freezing and thawing. Chemical weathering, on the other hand, involves the alteration of rocks through chemical reactions, leading to the breakdown of minerals and their transformation into new substances. The two processes often work together to break down rocks and contribute to the overall process of rock weathering and erosion.


What happens during weathering to rocks?

Weathering is the process by which rocks are broken down into smaller pieces through physical or chemical processes. Physical weathering involves the breaking of rocks into smaller pieces through actions such as freeze-thaw cycles or abrasion by wind or water. Chemical weathering involves the alteration of the mineral composition of rocks through processes like oxidation or hydration. Together, physical and chemical weathering contribute to the gradual breakdown of rocks into sediment.


What are physical and chemical weathering?

Physical weathering is the breakdown of rocks into smaller pieces without changing their chemical composition, caused by factors like temperature changes, ice, and plant roots. Chemical weathering involves a chemical alteration of rocks, changing their composition through processes like oxidation, dissolution, and hydrolysis, and is influenced by factors like water, oxygen, and acids. Both processes work together to break down and transform rocks over time.


How does type of weathering contribute to soil formation?

The type of weatheirng contributes to soil formation because if it is mecahnical weathering by force, then it will come out differentally than chemicalw eathering if it is by chemical composition. THere would be differences by the weathering depending on where the rock is.


What type of weathering is there?

phisical weatheringchemical weatheringandBiological Weathering


What are the similarities between physical and chemical weathering?

Physical and chemical weathering both involve the breakdown of rocks and minerals. They can be influenced by factors such as temperature, moisture, and the presence of acids. Additionally, both processes contribute to the overall erosion of Earth's surface.


What is the difference between physical and chemical weathering'?

Physical weathering is breaking down of rocks by weather that does not change their chemical components. Chemical weathering is weathering that breaks rocks down by a chemical change.


Compare and contrast mechanical weathering and chemical weathering?

Mechanical weathering provides fresh surfaces for attack by chemical processes, and chemical weathering weakens the rock so that it is more susceptible to mechanical weathering.


How do you explain the three types of weathering?

That is something that would show up in bold print in your text book. It's not stupid. physical chemical biological Physical weathering breaks rocks down into smaller pieces. Types of physical weathering include frost wedging, exfoliation, and thermal expansion. Chemical weathering breaks rocks down chemically adding or removing chemical elements, and changes them into other materials. Chemical weathering consists of chemical reactions, most of which involve water. Types of chemical weathering include: dissolution hydrolysis oxidation Biological weathering is the breakdown of rock caused by the action of living organisms, including plants, burrowing animals, and lichen (a crusty, rubbery, light green organic material that grows in patches on rocks as well as on wood). Lichen is a combination of fungus and algae, living together in a symbiotic relationship. Lichens can live on bare rock, and they break down rocks by secreting acids and other chemicals. The fungal part of the association secretes the acids, which react to dissolve the minerals, which are then used by the algae. Later, water seeps into the crevices etched by the acid, and assists in the breakdown through freezing (frost-wedging) and chemical weathering.


What does weathing mean?

"Weathering" refers to the process by which rocks and minerals are broken down into smaller pieces through physical, chemical, or biological means. Physical weathering involves the mechanical breakdown of rocks without changing their chemical composition, while chemical weathering alters the minerals within the rocks through chemical reactions. Biological weathering occurs when living organisms contribute to the breakdown, such as roots growing into cracks. Together, these processes shape the Earth’s landscape and contribute to soil formation.