Best answer: In which type of climate do rocks experience more physical weathering?

How does temperature affect physical weathering?

Temperature changes can also contribute to mechanical weathering in a process called thermal stress. Changes in temperature cause rock to expand (with heat) and contract (with cold). As this happens over and over again, the structure of the rock weakens. Over time, it crumbles.

How does climate affect weathering of rocks?

Chemical weathering typically increases as temperatures rise and rain falls, which means rocks in hot and wet climates experience faster rates of chemical weathering than do rocks in cold, dry climates. … Repeated heating and cooling cycles eventually cause rocks to fracture.

How does the climate and rock type affect how quickly a rock weathers?

Rainfall and temperature can affect the rate in which rocks weather. High temperatures and greater rainfall increase the rate of chemical weathering. … Minerals in a rock buried in soil will therefore break down more rapidly than minerals in a rock that is exposed to air.

How does climate influence the weathering of rock quizlet?

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Which type of physical weathering would most likely occur along a coastline?

Saltwater weathering is common along coastlines.

What climate types cause less intense weathering?

A cold, dry climate will produce the lowest rate of weathering. A warm, wet climate will produce the highest rate of weathering. The warmer a climate is, the more types of vegetation it will have and the greater the rate of biological weathering (Figure below).

Which of the following is a type of physical weathering?

Types of physical weathering include frost wedging, thermal expansion and contraction from heating and cooling, biological growth of organisms such as trees, abrasion, and exfoliation (unloading).

How does weathering affect igneous rock?

Weathering (breaking down rock) and erosion (transporting rock material) at or near the earth’s surface breaks down rocks into small and smaller pieces. … If the newly formed metamorphic rock continues to heat, it can eventually melt and become molten (magma). When the molten rock cools it forms an igneous rock.