A glacier is a huge mass of ice. 

A glacier is a huge mass of ice. 
The ice is so heavy that it moves. It flows very slowly down the land. 
Glaciers are important for our world. They hold a lot of fresh water. 
A glacier is a huge mass of ice. 

As the ice grows, it starts to flow. It moves slowly down hills or through valleys. This movement can create deep cracks in the ice. We call these cracks crevasses.
Glaciers are very important for Earth. They hold a lot of fresh water. In fact, they hold about 69% of the world's fresh water. 
A glacier is a huge, moving body of natural ice. 

Glaciers form through a slow, step-by-step way it works. It starts when more snow falls than melts away over many years. This snow gathers in a bowl-shaped area called a cirque. 
As the ice moves, it changes the shape of the land. The heavy ice scrapes against the ground underneath it. This scraping is called abrasion.
Glaciers can be classified by how they feel and act. A temperate glacier is at the melting point all year. A polar glacier stays below freezing from the top to the bottom. Some glaciers are also called ice caps if they are smaller than 50,000 square kilometers. 
Many people notice the beautiful blue color of glacier ice. This happens because the ice is very dense. The heavy pressure squeezes out almost all the air bubbles. Air bubbles usually make ice look white. Without them, the water molecules absorb other colors and let blue light through. This is the same reason large amounts of liquid water look blue. Glaciers also act like a water bank for the planet. They store water as ice during cold times. They release it as meltwater during warm summers. 
A glacier is a massive, persistent body of natural ice. It is considered a form of rock because it moves under its own weight. 

The formation of a glacier is a slow process of accumulation and compaction. It begins in a geological feature called a cirque. A cirque is an armchair-shaped depression often found between mountain peaks. 
Once the ice reaches a certain thickness, gravity causes it to flow. This movement can happen through ductile deformation, where the ice flows like a very thick liquid. It can also undergo brittle deformation, where the ice cracks. These cracks are known as crevasses.
Glaciers are categorized by their size and shape. Alpine glaciers form on mountain slopes and often fill entire valleys. When a glacier covers a mountain range or volcano, it is called an ice cap. If the ice body is larger than 50,000 square kilometers, it is classified as an ice sheet or a continental glacier. 

Scientists also classify glaciers by their thermal state, or how warm they are. A temperate glacier stays at the melting point throughout its entire mass. In contrast, a polar glacier remains below the freezing threshold from its surface to its base. Some glaciers are subpolar, meaning they contain both temperate and polar ice. We can also describe them by their basal temperature, which is the temperature at the bottom where the ice meets the ground. A cold-based glacier is frozen to its substrate. A warm-based glacier is at or above freezing at the interface, allowing it to slide. Polythermal glaciers contain both types of ice.
Glacial ice often has a striking blue color. This is not because of air bubbles, but because of how water molecules interact with light. In dense glacial ice, pressure has squeezed out the air bubbles that would otherwise make the ice look white. Because there are so few bubbles, the ice absorbs other colors of light more efficiently, leaving only blue light to be seen. This is the same reason large bodies of liquid water appear blue.
Glaciers play a critical role in the global climate system. They act as a seasonal water source, storing ice during cold periods and releasing meltwater during warm summers. This meltwater is essential for plants, animals, and human use. However, because glacial mass is affected by precipitation, temperature, and cloud cover, they are highly sensitive. Changes in these glaciers are major indicators of climate change. They are also a primary cause of variations in global sea levels. If both the Greenland and Antarctic ice sheets were to melt, global sea levels would rise by over 60 meters.
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