erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of...

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erosion deposition The Erosion-Deposition Process

Transcript of erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of...

Page 1: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

• erosion

• deposition

The Erosion-Deposition Process

Page 2: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

• A combination of constructive processes and destructive processes produce landforms.

• Constructive processes build up features on Earth’s surface.

• Destructive processes tear down features on Earth’s surface. ( weathering)

Reshaping Earth’s Surface

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The breakdown of rock—weathering—is one type of destructive process that changes Earth’s surface.

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• Chemical weathering alters the chemical composition of rock.

• Physical weathering is the breaking of rock into pieces, called sediment, without changing the chemical composition of the rock.

• Water, wind, and ice are agents, or causes, of weathering.

A Continual Process of Change

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A Continual Process of Change (cont.)

• The mineral composition of some rocks makes them less resistant than others are to weathering.

• The difference in the rate of weathering can produce unusual landforms.

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Page 7: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

Erosion

• Erosion is the removal of weathered material from one location to another.

• Agents of erosion include water, wind, glaciers, and gravity.

• Factors that affect the rate of erosion include weather, climate, shape of the land, and type of rock.

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Erosion (cont.)

• The presence of plants and the way humans use the land affect the rate of erosion.

• The rate of erosion sometimes depends on the type of rock.

• Weathering breaks some types of rock into large pieces. Other rock types easily break into smaller pieces that are more easily transported.

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As rock fragments bump against each other during erosion, the shapes of the fragments can change.

How can erosion affect the shape of sediment?

Erosion (cont.)

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• Erosion also affects the level of sorting—separating of items into groups according to one or more properties—of sediment.

• Sediment is often well-sorted when it has been moved a lot by wind or waves.

Erosion (cont.)

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Poorly sorted sediment often results from rapid transportation, perhaps by a storm, a flash flood, or a volcanic eruption.

How can erosion sort sediment?

Erosion (cont.)

Page 12: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

Deposition is the laying down or settling of eroded material.

deposition

from French deposer, means “put down”

Deposition

Page 13: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

Deposition (cont.)

• As water or wind slows down, it has less energy and can hold less sediment, which can result in some of the sediment being deposited.

• Sediment is deposited in locations called depositional environments, such as swamps, deltas, beaches, and the ocean floor.

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• High-energy environments, like rushing rivers and ocean shores with large waves, are those in which sediment is transported and deposited quickly.

• Small grains of sediment are often deposited in low-energy environments, like deep lakes, areas of slow-moving air, and swamps.

• Sediment deposited in water typically forms layers called beds.

Deposition (cont.)

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Deposition (cont.)

How are erosion and deposition related?

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• Landforms can have features that are clearly produced by erosion.

• Different rates of erosion can create unusual landforms like tall, protruding landforms called hoodoos.

• Glacial erosion can produce ice-carved features in mountains.

Interpreting Landforms

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• Landforms created by deposition are often flat and low-lying.

• An apron of sediment, called an alluvial fan, often forms where a stream flows from a steep, narrow canyon onto a flat plain at the foot of a mountain.

Interpreting Landforms (cont.)

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Interpreting Landforms (cont.)

What features suggest whether erosion or deposition created a landform?

Deposition along a riverbed occurs where the speed of the water slows down and can result in a sandbar.

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• Erosion occurring at different rates can carve rock into interesting landforms.

• Rock fragments with rough edges are rounded during transportation.

• Landforms created by deposition are often flat and low-lying.

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A. chemical weathering

B. physical weathering

C. deposition

D. erosion

Which of these refers to the breaking of rocks into sediment without changing the chemical composition of the rock?

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A. swamp

B. rushing river

C. ocean shore with large waves

D. none of the above

Which is an example of a low-energy environment?

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A. erosion

B. sediment

C. weathering

D. deposition

Which term refers to the laying down or settling of eroded material?

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1. Wind, water, ice, and gravity

continually shape Earth’s surface.

2. Pieces of sediment in different sizes

tend to mix when being moved along

by water.

Do you agree or disagree?

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• What are the stages of stream development?

• How do water erosion and deposition change Earth’s surface?

• How do wind erosion and deposition change Earth’s surface?

Landforms Shaped by Water and Wind

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• meander

• longshore current

• delta

Landforms Shaped by Water and Wind

• abrasion

• dune

• loess

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• Water and wind are two important agents of weathering, erosion, and deposition.

• Erosion by water and wind can change the shape of landforms.

Shaping the Land with Water and Wind

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• Streams are active systems that erode land and transport sediment.

• The erosion produced by a stream depends on the stream’s energy. This energy is usually greatest in steep, mountainous areas where young streams flow rapidly downhill.

• Water from a young stream slows down as it reaches gentler slopes and is then called a mature stream.

Water Erosion and Deposition

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• A meander is a broad, C-shaped curve in a stream.

• A stream moves slowly when it reaches flat land and is then called an old stream.

• As time passes, erosion of the outside bend of a meander, where water is flowing more quickly, occurs. Deposition occurs on the inside bend, where water flows more slowly.

Water Erosion and Deposition (cont.)

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Over time, meanders change shape due to erosion and deposition.

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Water Erosion and Deposition (cont.)

Describe the stream development stages.

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• Waves crashing into shore erode loose sand, gravel, and rock along coastlines.

• A longshore current is a current that flows parallel to the shoreline.

• This current moves sediment and continually changes the size and shape of beaches.

Water Erosion and Deposition (cont.)

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Water erosion can also form caves, stacks, and arches.

Water Erosion and Deposition (cont.)

How does water erosion change Earth’s surface?

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• Flowing water deposits sediment as the water slows down.

• Slower-moving water deposits sediment on the inside curves of meanders.

• A delta is a large deposit of sediment that forms where a stream enters a large body of water.

Water Erosion and Deposition (cont.)

Page 34: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

• Much of the sand on most ocean beaches was originally deposited by rivers.

• Longshore currents transport the sand along ocean coasts and deposit it where the currents have less energy.

Water Erosion and Deposition (cont.)

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Water deposition forms many structures within caves.

Water Erosion and Deposition (cont.)

How does water deposition change Earth’s surface?

Page 36: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

• Ocean waves can erode beaches by removing sediment.

• To reduce erosion, people sometimes build structures such as retaining walls or groins.

• Reducing or removing vegetation from the land surface is one of the most common ways that surface erosion is increased.

Water Erosion and Deposition (cont.)

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• Abrasion is the grinding away of rock or other surfaces as particles carried by wind, water, or ice scrape against them.

• A dune is a pile of wind-blown sand.

Wind Erosion and Deposition

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Wind Erosion and Deposition (cont.)

loess

from Swiss German Lösch, means “loose”

Loess is a crumbly, windblown deposit of silt and clay.

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Plowed fields and dry, overgrazed pastures are two ways in which people contribute to wind erosion.

Wind Erosion and Deposition (cont.)

How do wind erosion and deposition change Earth’s surface?

Page 40: erosion • deposition · 2015-01-27 · • Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time. • Water transports sediment

• Water erosion changes Earth’s surface. An example of this is the change in features of a stream over time.

• Water transports sediment and deposits it in places where the speed of the water decreases.

• Wind erosion can change Earth’s surface by moving sediment. A dune and loess are two types of wind deposition.

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A. meander

B. delta

C. longshore current

D. abrasion

Which term refers to the grinding away of rock or other surfaces as particles carried by wind, water, or ice scrape against them?

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A. loess

B. dune

C. delta

D. meander

Which is a pile of wind-blown sand?

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A. meander

B. delta

C. longshore current

D. loess

What is a current that flows parallel to the shoreline?