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Glacial landform

earth science Maturity 11-13

Big ice moves over the land.

YosemiteFromPlane.JPG
YosemiteFromPlane.JPG
It can crush rocks. It can make deep valleys. It can leave piles of sand.
SunapeeNH.jpg
SunapeeNH.jpg
These shapes change our world. Do you like the snow?

33 words

Big sheets of ice move over the land.

YosemiteFromPlane.JPG
YosemiteFromPlane.JPG
As they move, they crush the rocks below. This can carve deep, U-shaped valleys.
SunapeeNH.jpg
SunapeeNH.jpg
The ice can also leave scratches on rocks. These marks show which way the ice moved.

When the ice melts, it leaves things behind. It drops piles of sand and crushed rock. These piles can form long mounds.

Receding glacier-en.svg
Receding glacier-en.svg
Some rocks are even dragged many miles away.

Melting ice can also make lakes. A chunk of ice may melt in the ground. This leaves a hole that fills with water. These are called kettle lakes. The ice changes the shape of our world.

108 words

Glaciers are huge sheets of ice. They move across the land. This movement changes the shape of the Earth.

YosemiteFromPlane.JPG
YosemiteFromPlane.JPG

As glaciers move, they crush and scrape the ground. This creates erosional landforms. One example is a U-shaped valley. These are wide valleys carved by ice.

Arranque glaciar-en.svg
Arranque glaciar-en.svg

Glaciers also leave marks on rocks. These marks are called striations. They are small grooves in the stone. They show which way the ice moved.

SunapeeNH.jpg
SunapeeNH.jpg

When glaciers melt, they move backward. They leave behind piles of sand and crushed rock. This material is called glacial till. These piles can form mounds called moraines.

Receding glacier-en.svg
Receding glacier-en.svg

Melting ice can also make lakes. A big chunk of ice might get left in the ground. When that ice melts, it leaves a hole. This hole fills with water to make a kettle lake. Some lakes form when debris blocks a stream. These are called moraine-dammed lakes. The ice and the water work together to reshape our world.

163 words

Glacial landforms are shapes in the land made by glaciers. Most of these were made by huge ice sheets. These sheets moved during the Quaternary glaciations. Some places have many of these shapes today. Fennoscandia and the southern Andes are good examples. Other places like the Sahara have very old fossil landforms. These are shapes left behind by ice long ago.

YosemiteFromPlane.JPG
YosemiteFromPlane.JPG

Glaciers change the land in two main ways. First, they can scrape or erode the ground. As ice grows, its weight crushes the rocks below. This creates erosional landforms like U-shaped valleys. When ocean water fills these valleys, they are called fjords. Glaciers also leave grooves in rocks called striations. These small lines show which way the ice moved.

Arranque glaciar-en.svg
Arranque glaciar-en.svg

Second, glaciers can leave things behind when they melt. This is called deposition. As glaciers move back, they drop crushed rock and sand. This material is called glacial till. It is often a mix of big and small pieces. These pieces can form mounds called moraines. Some moraines are at the ends of the glacier. Others are along the sides or in the middle.

Receding glacier-en.svg
Receding glacier-en.svg

Many landforms are made by melting water too. These are called fluvioglacial landforms. The water sorts the sediments by size. An esker is a long, string-like mound of sand. It was built by a stream under the ice. A kame is an irregular mound of sediment. It fell into an opening in the ice.

PluckedGraniteAlandIslands.JPG
PluckedGraniteAlandIslands.JPG

Melting ice also creates many beautiful lakes. A kettle lake forms in a hole left by ice. Sometimes a glacier leaves a chunk of ice in the ground. When that chunk melts, a lake forms in the depression. Other lakes are called moraine-dammed lakes. This happens when debris blocks a stream. Jackson Lake and Jenny Lake are two examples. They are in Grand Teton National Park.

SunapeeNH.jpg
SunapeeNH.jpg

311 words

Glacial landforms are specific shapes and features in the Earth's landscape created by the movement of glaciers. Most of these features were formed during the Quaternary glaciations. This was a period when massive ice sheets covered large parts of the planet. Today, we can see many of these shapes in places like Fennoscandia and the southern Andes. In much hotter regions like the Sahara, we only find very old, fossil glacial landforms. These features tell a story of how ice once shaped the world.

YosemiteFromPlane.JPG
YosemiteFromPlane.JPG

Glaciers change the landscape through a process called erosion. As snow and ice accumulate, the weight of the glacier increases. This heavy mass crushes, abrades, and scours the underlying bedrock. One common result of this scraping is striations. These are small grooves or indentations carved into rock outcrops. Because they are carved by the movement of the ice, striations show the direction the glacier was traveling.

SunapeeNH.jpg
SunapeeNH.jpg

Mountain glaciers create several distinct erosional shapes. A cirque is a bowl-shaped indentation in a mountainside. This is often the starting location for a mountain glacier. When multiple glaciers intersect, they can create a horn. A horn is a sharp peak formed by several arêtes. An arête is a spiky ridge of high land located between two glaciers. If the erosion cuts all the way through an arête, it forms a spillway, also known as a col.

Arranque glaciar-en.svg
Arranque glaciar-en.svg

Glaciers also reshape entire valleys. As they move, they carve out wide, U-shaped valleys. If these valleys are later filled by ocean water, they are called fjords. Some valleys may have a valley step, which is an abrupt change in the slope. There are also hanging valleys. These are formed when glacial meltwater partially erodes the land. This process is often accompanied by the creation of a waterfall.

Kamenitsa Pirin IMG 8526.jpg
Kamenitsa Pirin IMG 8526.jpg

When glaciers retreat, they perform a different task called deposition. As the ice melts, it leaves behind its cargo of crushed rock and sand. This material is known as glacial drift. Much of this is glacial till, which consists of unsorted sediments. This means the till contains a mix of very large rocks and very small particles. These sediments can form moraines. A moraine is a mound of glacial till. Moraines can be terminal, located at the glacier's end. They can also be lateral, along the sides, or medial, where two glaciers merge.

Receding glacier-en.svg
Receding glacier-en.svg

Water also plays a major role in shaping the land through fluvioglacial processes. Many landforms are created by meltwater rather than the ice itself. These are called fluvioglacial landforms. Because water is involved, the sediments are more size-sorted than regular glacial till. For example, an esker is a long, string-like mound built by a subglacial stream. A kame is an irregular mound formed when sediment falls into an opening in the ice. An outwash fan is a braided stream that flows from the front of a glacier onto a flat plain.

PluckedGraniteAlandIslands.JPG
PluckedGraniteAlandIslands.JPG

Glacial activity also leaves behind many types of lakes and ponds. A kettle lake forms when a block of ice is left behind by a retreating glacier. When that block melts, it leaves a depression that fills with water. Other lakes are moraine-dammed lakes. These occur when glacial debris blocks a stream or snow runoff. Examples include Jackson Lake and Jenny Lake in Grand Teton National Park. There are also tarns, which are lakes formed in a cirque due to overdeepening. Finally, paternoster lakes are a series of lakes in a valley, dammed by successive recessional moraines.

SunapeeNH.jpg
SunapeeNH.jpg

While most landforms are clearly glacial, some scientists debate their origins. For example, Erling Lindström suggested that roches moutonnées might not be entirely glacial. He noted that some rock shapes might exist before glaciation occurs. There is also a theory called the "glacial buzzsaw effect." This idea suggests that glaciers level the landscape by eroding high points. However, many scholars have rejected this. They point out that certain elevated surfaces in Norway do not match the expected patterns of glacial erosion. Other large depressions, like the Gulf of Bothnia, are likely caused by tectonics rather than weak glacial erosion.

687 words
🖼️ Images & Media (6)
File:SunapeeNH.jpg
SunapeeNH.jpg
File:YosemiteFromPlane.JPG
YosemiteFromPlane.JPG
File:PluckedGraniteAlandIslands.JPG
PluckedGraniteAlandIslands.JPG
File:Kamenitsa Pirin IMG 8526.jpg
Kamenitsa Pirin IMG 8526.jpg
File:Arranque glaciar-en.svg
Arranque glaciar-en.svg
File:Receding glacier-en.svg
Receding glacier-en.svg
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