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Nitrogen

physical science Maturity 11-13 Vital Level 3

Most of the air is a gas.

Nitrogen Cycle.svg
Nitrogen Cycle.svg
It has no smell. It has no color. This gas helps our bodies grow. It is in all living things. We need it to live. Can you feel the air?

39 words

Most of the air is a gas.

Nitrogen Cycle.svg
Nitrogen Cycle.svg
This gas has no color. It also has no smell. It is the most common thing in our air.
Nitrogen.ogv
Nitrogen.ogv

This gas is very important for life. It is inside all living things. It helps our bodies grow. It is even in our food.

Nitrogen Cycle.svg
Nitrogen Cycle.svg

People use this gas in many ways. Some use it to pack food. This keeps the food fresh. Others use it as a cold liquid. This liquid is very, very cold. It can be used for special jobs. It is a very busy part of our world.

102 words

Nitrogen is a chemical element. It has the symbol N. It is a gas that has no color. It also has no smell.

Nitrogen.ogv
Nitrogen.ogv
Nitrogen makes up about 78% of the air on Earth. This makes it the most common gas in our atmosphere.
Nitrogen Cycle.svg
Nitrogen Cycle.svg

This gas is very important for all living things. It is found in our DNA. It is also in proteins.

Nitrogen Cycle.svg
Nitrogen Cycle.svg
Our bodies use it to help move power around. In fact, about 3% of your body is made of nitrogen. It is the fourth most common element in humans.

People have studied nitrogen for a long time. A man named Daniel Rutherford first found it in 1772.

Rutherford Daniel.jpg
Rutherford Daniel.jpg
Later, scientists found ways to make it for work. They use it to make fertilizers for farms. These help grow much of the food we eat.
Nitrogen Cycle.svg
Nitrogen Cycle.svg
We also use liquid nitrogen. It is very cold. It can be used for many special jobs.
A cylinder container, containing liquid nitrogen.jpg
A cylinder container, containing liquid nitrogen.jpg

168 words

Nitrogen is a very important chemical element. It has the symbol N and the atomic number 7. This element is a nonmetal found in the universe. It is the seventh most common element in the Milky Way. On Earth, nitrogen is a colorless and odorless gas. It forms about 78% of our atmosphere. This makes it the most common gas in the air we breathe.

Nitrogen.ogv
Nitrogen.ogv

In its gas form, nitrogen stays together in a special way. Two atoms bond together to form N2. This bond is a triple bond, which is very strong. It is the second strongest bond in any diatomic molecule. This strength makes it hard for living things to use it directly. Industry also finds it hard to turn N2 into useful compounds. However, breaking these bonds can release a lot of useful energy.

N2MolecularDiagramCR.jpg
N2MolecularDiagramCR.jpg

People have been studying nitrogen for a long time. A Scottish physician named Daniel Rutherford first isolated it in 1772. He called it "noxious air" because it did not support life. Other scientists like Carl Wilhelm Scheele and Henry Cavendish studied it around that same time. In 1790, Jean-Antoine-Claude Chaptal suggested the name nitrogen. He chose this name because the gas is part of nitric acid.

Rutherford Daniel.jpg
Rutherford Daniel.jpg

Today, we use nitrogen in many ways. We make it from air using a way called pressure swing adsorption. About two-thirds of it is used for food packaging. Much of the rest is used as liquid nitrogen. This liquid is used in cryogenic applications, which means very cold uses.

A cylinder container, containing liquid nitrogen.jpg
A cylinder container, containing liquid nitrogen.jpg
We also use it to make fertilizers. These fertilizers help grow half of the world's food.
Nitrogen Cycle.svg
Nitrogen Cycle.svg

Nitrogen is part of almost everything living. It is found in amino acids, which make up proteins. It is also in our DNA and RNA. Our bodies even use a molecule called adenosine triphosphate to move energy. In fact, nitrogen makes up about 3% of the human body by mass. It is the fourth most common element in us. It is even found in medicines like caffeine and morphine.

Neon orbitals.png
Neon orbitals.png

351 words

Nitrogen is a vital chemical element with the symbol N and atomic number 7. It is a nonmetal and the lightest member of group 15 on the periodic table. This group is often called the pnictogens. Nitrogen is a common element throughout the universe. It is estimated to be the seventh most abundant element in both the Milky Way and our Solar System.

NuclideMap C-F.png
NuclideMap C-F.png

In its most common form, nitrogen exists as a diatomic gas known as N2. This means two nitrogen atoms bond together to form a single molecule. At standard temperature and pressure, this gas is colorless and odorless. N2 makes up approximately 78% of Earth's atmosphere. This makes it the most abundant chemical species in the air around us.

N2MolecularDiagramCR.jpg
N2MolecularDiagramCR.jpg

The way nitrogen atoms bond is quite remarkable. They are held together by an extremely strong triple bond (N≡N). This is the second strongest bond found in any diatomic molecule, trailing only carbon monoxide (CO). This intense bond strength makes nitrogen very stable. However, it also makes nitrogen difficult for both living organisms and industrial processes to convert into useful compounds. On the other hand, breaking these bonds can release massive amounts of energy. This energy release occurs when nitrogen compounds burn, explode, or decompose.

Neon orbitals.png
Neon orbitals.png

Humans have a long history of interacting with nitrogen compounds. In ancient times, ammonium chloride was known to the historian Herodotus. During the Middle Ages, alchemists worked with nitrogen-based substances. They called nitric acid "aqua fortis," or strong water. They also used a mixture of nitric and hydrochloric acids called "aqua regia," or royal water. This mixture was famous because it could dissolve gold, the king of metals.

Fuming nitric acid 40ml.jpg
Fuming nitric acid 40ml.jpg

The scientific discovery of nitrogen happened in the late 18th century. In 1772, a Scottish physician named Daniel Rutherford first isolated the gas. He called it "noxious air" because it did not support life. Around the same time, Carl Wilhelm Scheele and Henry Cavendish also studied it independently. In 1790, French chemist Jean-Antoine-Claude Chaptal suggested the name "nitrogen." He chose this because the gas is a key part of nitric acid. Earlier, Antoine Lavoisier had suggested the name "azote," meaning "no life," because the gas is an asphyxiant.

Rutherford Daniel.jpg
Rutherford Daniel.jpg

Nitrogen is essential to all known life on Earth. It is a primary constituent of organic compounds. It is found in amino acids, which are the building blocks of proteins. It is also a key part of nucleic acids, such as DNA and RNA. Additionally, it is found in adenosine triphosphate, the molecule used for energy transfer. The human body contains about 3% nitrogen by mass. This makes it the fourth most abundant element in the human body, following oxygen, carbon, and hydrogen.

Nitrogen Cycle.svg
Nitrogen Cycle.svg

Industry uses nitrogen in many critical ways today. Elemental nitrogen is often produced from the air using pressure swing adsorption technology. About two-thirds of commercially produced nitrogen is used as an inert gas for food packaging. The rest is often used as liquid nitrogen for cryogenic applications, which involve extremely low temperatures.

A cylinder container, containing liquid nitrogen.jpg
A cylinder container, containing liquid nitrogen.jpg
Nitrogen is also a major part of many medicines. It is found in every major pharmacological drug class, including antibiotics. Some drugs, like nitroglycerin, act on the body by metabolizing into nitric oxide. Others, like caffeine or morphine, act on animal neurotransmitter receptors.
Nitrogen.ogv
Nitrogen.ogv

Finally, nitrogen plays a massive role in global agriculture and the environment. Synthetic processes like the Haber–Bosch process allow us to create ammonia and nitrates. These are used as key industrial fertilizers. In fact, half of global food production now relies on these synthetic fertilizers. However, these nitrates can also become pollutants. They contribute to the eutrophication of water systems. This highlights how a single element can be both a provider of life and a source of environmental change.

639 words
🖼️ Images & Media (13)
File:Rutherford Daniel.jpg
Rutherford Daniel.jpg
File:Neon orbitals.png
Neon orbitals.png
File:NuclideMap C-F.png
NuclideMap C-F.png
File:N2MolecularDiagramCR.jpg
N2MolecularDiagramCR.jpg
File:Mountainous Shoreline of Sputnik Planum (PIA20198).png
Mountainous Shoreline of Sputnik Planum...
File:Borazin Mesomers1.svg
Borazin Mesomers1.svg
File:Nitrogen electrode potentials.svg
Nitrogen electrode potentials.svg
File:Nitrogen trichloride.JPG
Nitrogen trichloride.JPG
File:Nitrogen dioxide at different temperatures.jpg
Nitrogen dioxide at different temperatures.jpg
File:Fuming nitric acid 40ml.jpg
Fuming nitric acid 40ml.jpg
File:Nitrogen Cycle.svg
Nitrogen Cycle.svg
Nitrogen.ogv

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