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Ice

earth science Maturity 7-9

Ice is frozen water.

SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
It is very cold. It can be clear or white.
Frozen Wappinger Creek.JPG
Frozen Wappinger Creek.JPG
Ice floats on top of water. This helps fish live underneath. Ice is fun for sports too.
2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg
Do you like to play in the snow?

49 words

Ice is frozen water.

SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
It forms when water gets very cold.

Ice can look clear. It can also look bluish-white.

Frozen Wappinger Creek.JPG
Frozen Wappinger Creek.JPG
This happens if there are bubbles inside.

Ice is lighter than liquid water. This means it floats.

Tsu Lake Ice Circle.jpg
Tsu Lake Ice Circle.jpg
Floating ice protects animals living below.

Ice can be found on Earth. It is also in space.

People use ice to keep food cold. It is also great for sports.

2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg

81 words

Ice is water that has frozen into a solid.

SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
It usually forms at 0 °C or 32 °F. Most ice on Earth has a hexagonal structure. This means its tiny parts form six-sided shapes.
Ice Ih Crystal Lattice.png
Ice Ih Crystal Lattice.png

Ice can look clear or bluish-white. It looks white if it has air bubbles or soil inside. Ice is less dense than liquid water. This means it is lighter than the water below it. Because of this, ice floats.

Tsu Lake Ice Circle.jpg
Tsu Lake Ice Circle.jpg
Floating ice creates a safe home for plants and animals. It protects them from cold winds.

Ice can change in different ways. When ice turns to liquid, it is melting. When ice turns straight into vapor, it is called sublimation.

Melting ice, pond.jpg
Melting ice, pond.jpg
On Earth, ice is found in polar regions and mountains. It also forms as snow or hail. In recent decades, ice on Earth has been decreasing. This is due to climate change. As land ice melts, sea levels rise.
20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
Humans have used ice for thousands of years. We use it to keep food cold. It also helps people enjoy winter sports.
2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg

203 words

Ice is water that has frozen into a solid state.

Frozen Wappinger Creek.JPG
Frozen Wappinger Creek.JPG
It usually forms when temperatures reach 0 °C, 32 °F, or 273.15 K. This substance is found all over our world. It exists on Earth and on other planets too. It can even be found in the Oort cloud or in space between stars.
SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
Because it has an ordered structure, scientists call ice a mineral. It can look clear or a bluish-white color. This color depends on things like air bubbles or soil inside it.

Ice works by changing how its tiny parts are packed.

Ice Ih Crystal Lattice.png
Ice Ih Crystal Lattice.png
Water is made of one oxygen atom and two hydrogen atoms. These parts stay together using something called hydrogen bonds. When water cools down, these bonds pull the molecules into a specific shape. Most ice on Earth forms a six-sided shape called a hexagonal structure. This is known as ice Ih.
3D representation of several phases of water.jpg
3D representation of several phases of water.jpg
This shape makes ice less dense than liquid water. Because it is less dense, ice floats on top of the liquid. This floating layer protects plants and animals living in the water below.

People have found many different ways that ice can exist.

Phase diagram of water.svg
Phase diagram of water.svg
Scientists know of at least nineteen different phases of ice. These phases change depending on the temperature and the pressure. For example, Ice XII was discovered in 1996. Later, in 2006, scientists found Ice XIII and Ice XIV. Other types like Ice XV were found in 2009. Even in deep space, different types of ice exist. In the interstellar medium, a type called low-density amorphous ice is very common. This might be the most abundant type of ice in the whole universe.

Ice is very important for the Earth's climate and water cycle.

Melting ice, pond.jpg
Melting ice, pond.jpg
It can fall from the sky as snow or hail. It can also form on surfaces as frost. There are two main ways it changes state. Melting is when ice turns into liquid water. Sublimation is when ice turns directly into water vapor.
20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
Recently, the amount of ice on Earth has been going down. This is happening because of climate change. When ice on land melts, it causes the sea levels to rise.

Humans have used ice for many thousands of years.

Ice Harvesting on Lake St Clair Michigan circa 1905--photograph courtesy Detroit Publishing Company.jpg
Ice Harvesting on Lake St Clair Michigan circa 1905--photograph courtesy Detroit Publishing Company.jpg
Long ago, people built structures to hold ice for cooling. Some of these buildings are over 2,000 years old. Before we had refrigerators, ice was the only way to keep food safe. Ice also makes the world more fun for many people. It allows for winter sports like ice skating.
2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg
It can even make waterways safe for travel during the winter. This happens when the surface ice is thick enough for roads.

488 words

Ice is the solid state of water. It typically forms when temperatures reach 0 °C, 32 °F, or 273.15 K.

Frozen Wappinger Creek.JPG
Frozen Wappinger Creek.JPG
Because it is a naturally occurring crystalline inorganic solid with an ordered structure, scientists classify ice as a mineral. It is found across the universe. It exists on Earth and other planets. It is also found in Oort cloud objects and as interstellar ice.
SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
The appearance of ice varies. It can be transparent or a bluish-white color. This depends on impurities like air bubbles or soil particles.

To understand how ice works, we must look at its molecular structure. Water molecules consist of one oxygen atom covalently bonded to two hydrogen atoms, known as H–O–H.

Ice Ih Crystal Lattice.png
Ice Ih Crystal Lattice.png
These molecules are held together by hydrogen bonds. While these bonds are weak, they control the structure of both water and ice. As liquid water cools below 0 °C at standard atmospheric pressure, it undergoes a phase transition to ice Ih. This is a hexagonal crystalline structure.
3D representation of several phases of water.jpg
3D representation of several phases of water.jpg
During this process, hydrogen bonding becomes the dominant force. This causes the molecules to arrange into a less compact packing geometry than in liquid water.

This specific arrangement leads to an unusual physical property. Ice is approximately 8.3% less dense than liquid water. This results in a volumetric expansion of about 9% when fresh water freezes.

Melting ice, pond.jpg
Melting ice, pond.jpg
Liquid water is densest at 4 °C. As it cools further toward the freezing point, it loses density. Because ice is less dense, it floats on liquid water. This prevents bodies of water from freezing from the bottom up. A sheltered environment is created beneath the ice for plants and animals. This layer protects them from wind chill and weather extremes. In the ocean, sea ice contains brine-filled channels. These channels support organisms like algae, copepods, and annelids. These, in turn, provide food for larger animals like krill, fish, penguins, and whales.

Ice can also exist in many different phases. Scientists have identified at least nineteen known crystalline phases. These phases change based on temperature and pressure.

Phase diagram of water.svg
Phase diagram of water.svg
For example, Ice XII was discovered in 1996. In 2006, researchers found Ice XIII and Ice XIV. Ice XV was discovered in 2009 at extremely high pressures. There are also amorphous states, which lack a regular crystal structure. In the interstellar medium, low-density amorphous ice (LDA) is dominant. This may make LDA the most abundant type of ice in the universe. At extremely high pressures, ice is even predicted to become a metal.

The hardness of ice changes with its temperature. At its melting point, ice has a Mohs hardness of 2 or less. As it gets colder, it becomes much harder. At −20 °C, the hardness increases to about 4. By the time it reaches −78 °C, the vaporization point of dry ice, the hardness reaches 6. The color of ice is also affected by physics. Ice absorbs light at the red end of the spectrum. This makes ice appear blue, often with a greenish tint. This effect becomes more intense as the ice gets thicker.

Humans have interacted with ice for thousands of years. Some historic structures built to store ice for cooling are over 2,000 years old.

Ice Harvesting on Lake St Clair Michigan circa 1905--photograph courtesy Detroit Publishing Company.jpg
Ice Harvesting on Lake St Clair Michigan circa 1905--photograph courtesy Detroit Publishing Company.jpg
Before modern refrigeration, ice was the only way to store food safely without preservatives. Ice also has practical uses for transport. If the surface ice is solid enough, it creates ice roads for land transport. It is also essential for winter sports.
2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg
The low coefficient of friction makes ice slippery. While scientists once thought "pressure melting" caused this, modern research suggests other factors. One theory is that frictional heating is the most important process during movement.

Finally, ice is a critical part of Earth's systems. It is a major component of the water cycle and the climate. Ice can fall as precipitation, such as snow or hail. It can also form as frost through direct deposition from water vapor. The transition from ice to liquid is called melting. The transition from ice directly to vapor is called sublimation.

20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
20210125 The Cryosphere - Floating and grounded ice - imbalance - climate change.png
Recently, Earth's ice volume has been decreasing due to climate change. The largest declines are in the Arctic and in mountain regions. The loss of grounded ice is the primary cause of rising sea levels.

750 words
🖼️ Images & Media (30)
File:Ice Ih Crystal Lattice.png
Ice Ih Crystal Lattice.png
File:Frozen Wappinger Creek.JPG
Frozen Wappinger Creek.JPG
File:Phase diagram of water.svg
Phase diagram of water.svg
File:3D representation of several phases of water.jpg
3D representation of several phases of water.jpg
File:2011 Figure Skating WC Takahiko Kozuka.jpg
2011 Figure Skating WC Takahiko Kozuka.jpg
File:Tsu Lake Ice Circle.jpg
Tsu Lake Ice Circle.jpg
AA bedrock surface.4960.tif
File:Frozen rivulet in Pennsylvania.JPG
Frozen rivulet in Pennsylvania.JPG
File:Candle_Ice.jpg
Candle_Ice.jpg
File:SnowflakesWilsonBentley.jpg
SnowflakesWilsonBentley.jpg
File:Granizo.jpg
Granizo.jpg
File:2013-02-23 03 59 28 Graupel (snow pellets) in Elko, Nevada.JPG
2013-02-23 03 59 28 Graupel (snow...

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