Log in Sign up
Back to Discover
⚛️

Properties of water

physical science Maturity 11-13 climate
This article covers sensitive topics: climate. Parents can manage visibility in Parental Controls.

Water is all around us.

RainDrops1.jpg
RainDrops1.jpg
It can be a liquid. It can be hard ice. It can even be a gas. Water helps all living things. We need it to live. Do you like to swim in water?

39 words

Water is all around us.

RainDrops1.jpg
RainDrops1.jpg
It is a liquid that has no taste or smell. It looks clear, but it can look a little blue.
Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
Water can also be hard ice or a gas called steam.

Ice is lighter than liquid water. This means ice floats on top.

Density of Ice.jpg
Density of Ice.jpg
Because ice floats, it acts like a warm blanket for lakes. This helps fish stay safe in the cold winter.

Water is very good at holding heat. This helps keep our world at a steady temperature. It is a very special part of our planet.

104 words

Water is a very special substance. It is the most common thing on Earth's surface.

Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
It can be a liquid, a solid called ice, or a gas called water vapor.

Water is made of tiny parts called molecules. Each molecule has two hydrogen atoms and one oxygen atom. These molecules stick together using hydrogen bonds. These bonds are like tiny magnets that hold the parts close.

3D model hydrogen bonds in water.svg
3D model hydrogen bonds in water.svg
Because of these bonds, water has many unique traits.

One trait is that ice is less dense than liquid water. This means ice is lighter and floats on top.

Density of Ice.jpg
Density of Ice.jpg
This is very important for life. In winter, ice forms on top of lakes. This layer of ice acts like a blanket. It keeps the water below from freezing solid. This helps fish and other life stay safe.

Water also has a high heat capacity. This means it can hold a lot of heat. This helps keep the Earth's climate steady.

Anomalous expansion of water Summer Winter.svg
Anomalous expansion of water Summer Winter.svg
It also works well as a solvent. This means it can dissolve many things, like salts. We call it the "solvent of life."

201 words

Water is a very special substance found everywhere on Earth. It is the most common thing on the surface of our planet.

Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
Scientists call it the "universal solvent" because it can dissolve so many things. This makes it the "solvent of life" for all living things. Water is also the third most common molecule in the whole universe. It is nearly colorless, but it has a tiny hint of blue. You can see this blue color in a white wash-basin.
Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
Even huge glaciers look blue because of this trait.

Water is made of tiny molecules. Each molecule has one oxygen atom and two hydrogen atoms.

3D model hydrogen bonds in water.svg
3D model hydrogen bonds in water.svg
These molecules are polar, which means they act like tiny magnets. They stick together using things called hydrogen bonds. These bonds are constantly breaking and reforming very quickly. They happen in less than 200 femtoseconds.
3D model hydrogen bonds in water.svg
3D model hydrogen bonds in water.svg
This sticking together creates many of water's unique properties. It allows water to break apart salts and bond to other things like acids. This is how it dissolves many different substances.

Water is unique because it can exist in three forms. It can be a liquid, a solid called ice, or a gas called water vapor.

Phase diagram of water.svg
Phase diagram of water.svg
Most things in their gas form are not liquids at room temperature. However, water stays a liquid because of its strong hydrogen bonds. When water freezes, it forms crystals like snow or hard ice cubes.
Density of Ice.jpg
Density of Ice.jpg
If water gets very hot and heavy, it can even become a supercritical fluid. This happens in deep parts of the ocean near volcanic vents. At 2200 meters deep, the weight of the ocean creates huge pressure. This pressure, combined with heat, changes how water works.

One amazing fact is that ice is less dense than liquid water.

Density of Ice.jpg
Density of Ice.jpg
This means ice floats on top of the liquid. Most other liquids get heavier and sink when they freeze. Because ice floats, it creates a layer on top of lakes. This layer acts like a blanket to insulate the water below.
Anomalous expansion of water Summer Winter.svg
Anomalous expansion of water Summer Winter.svg
Without this, lakes would freeze from the bottom up. This would kill the life living in the water. In deep lakes, the bottom stays around 4 °C all year. This helps creatures survive even in very cold places.

Water also helps keep our planet's temperature steady. It has a high heat capacity, which means it holds heat well.

Heat of Vaporization Water.png
Heat of Vaporization Water.png
This helps moderate the Earth's climate. It also takes a lot of energy to turn water into steam. This is called the heat of vaporization.
Vapor Pressure of Water.png
Vapor Pressure of Water.png
In the ocean, salt changes how water freezes. Saltwater freezes at about -1.9 °C instead of 0 °C. When sea ice forms, it pushes salt out into the water. This makes the water underneath very salty and heavy. This heavy water sinks and helps create big ocean currents.
Annual mean sea surface sea water density (World Ocean Atlas 2009).png
Annual mean sea surface sea water density (World Ocean Atlas 2009).png

522 words

Water is a polar inorganic compound that is essential to all known forms of life. It is the most abundant substance on the surface of Earth. It is also the third most abundant molecule in the universe, following molecular hydrogen and carbon monoxide.

Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
At room temperature, water is a tasteless, odorless, and nearly colorless liquid. It possesses a subtle, inherent blue tint. This blue color is visible in deep water or large ice crystals like glaciers. Because it can dissolve so many different substances, scientists call it the "universal solvent" or the "solvent of life."
Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png

At the molecular level, water consists of one oxygen atom covalently bonded to two hydrogen atoms.

3D model hydrogen bonds in water.svg
3D model hydrogen bonds in water.svg
These molecules are strongly polar. This polarity means they have a distribution of electric charge that allows them to act like tiny magnets. Water molecules form hydrogen bonds with one another. These bonds are constantly breaking and reforming at incredibly fast speeds. This process occurs in less than 200 femtoseconds.
3D model hydrogen bonds in water.svg
3D model hydrogen bonds in water.svg
This molecular structure is responsible for almost all of water's unique physical properties.

Water is unique because it exists naturally as a solid, liquid, and gas on Earth's surface. The solid phase is known as ice, which can form hard crystals or granular snow. The gaseous phase is called water vapor or steam.

Phase diagram of water.svg
Phase diagram of water.svg
Most other substances in the oxygen family are gases at room temperature. Water remains a liquid due to its extensive hydrogen bonding. In extreme environments, water can even become a supercritical fluid. This occurs at a critical point of 647 K and a pressure of 22.064 MPa. Such conditions are rare but occur near deep-sea hydrothermal vents. At depths of about 2200 meters, the weight of the ocean provides the necessary pressure.
Phase diagram of water.svg
Phase diagram of water.svg

One of the most important properties of water is its density behavior. Most substances become denser as they freeze, but water does something different. When water freezes into regular hexagonal ice, its density decreases by about 9%.

Density of Ice.jpg
Density of Ice.jpg
This happens because hydrogen bonds create an open, low-density lattice structure. Because ice is less dense than liquid water, it floats. This is vital for life on Earth. If ice sank, lakes would freeze from the bottom up, killing all aquatic life. Instead, floating ice creates an insulating layer. This layer allows the bottom of deep lakes to remain at a constant 4 °C.
Anomalous expansion of water Summer Winter.svg
Anomalous expansion of water Summer Winter.svg

Water also acts as a powerful regulator of temperature through its heat capacity. It has a very high specific heat capacity of 4184 J/(kg·K) at 20 °C. This is the second-highest among all heteroatomic species, surpassed only by ammonia.

Heat of Vaporization Water.png
Heat of Vaporization Water.png
This property allows the oceans to buffer large temperature fluctuations, helping to moderate Earth's climate. Much of the extra energy stored in the climate system since 1970 has accumulated in the oceans. Water also has a high heat of vaporization. At its normal boiling point, it requires 2257 kJ/kg to turn liquid into gas. This high energy requirement also helps glaciers resist melting.

In the oceans, the presence of salt changes how water behaves. Saltwater has a lower freezing point than freshwater, typically around -1.9 °C.

Annual mean sea surface sea water density (World Ocean Atlas 2009).png
Annual mean sea surface sea water density (World Ocean Atlas 2009).png
When sea ice forms, it undergoes a process called brine rejection. The ice becomes essentially salt-free, while the salt is pushed out into the surrounding water. This makes the water beneath the ice much saltier and denser. This dense, cold water sinks toward the bottom. This movement of water helps drive the thermohaline circulation, a global system of ocean currents.
Annual mean sea surface sea water density (World Ocean Atlas 2009).png
Annual mean sea surface sea water density (World Ocean Atlas 2009).png

Finally, water's polarity makes it highly miscible, or mixable, with many other substances. It mixes easily with highly polar liquids like ethanol or acetone. However, it is immiscible with non-polar substances like most oils.

Relative Humidity.png
Relative Humidity.png
In the atmosphere, water vapor is completely miscible with air. When the air cools, the vapor can reach a point where it condenses into liquid droplets. This defines the dew point and creates phenomena like fog or dew.
Spider web Luc Viatour.jpg
Spider web Luc Viatour.jpg
Understanding these complex interactions between temperature, pressure, and molecular bonding helps scientists explain how our planet functions.

736 words
🖼️ Images & Media (17)
File:Heat of Vaporization Water.png
Heat of Vaporization Water.png
File:Density of ice and water (en).svg
Density of ice and water (en).svg
File:Density of Ice.jpg
Density of Ice.jpg
File:Anomalous expansion of water Summer Winter.svg
Anomalous expansion of water Summer Winter.svg
File:Annual mean sea surface sea water density (World Ocean Atlas 2009).png
Annual mean sea surface sea water density...
File:Relative Humidity.png
Relative Humidity.png
File:Vapor Pressure of Water.png
Vapor Pressure of Water.png
File:Phase diagram of water.svg
Phase diagram of water.svg
File:Water molecule - structure and dipole moment.png
Water molecule - structure and dipole moment.png
File:Spider web Luc Viatour.jpg
Spider web Luc Viatour.jpg
File:RainDrops1.jpg
RainDrops1.jpg
File:Paper Clip Surface Tension 1 crop.jpg
Paper Clip Surface Tension 1 crop.jpg

+ 5 more

Up Next
⚛️
Substance (chemistry)
Physical Science
More to explore

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.