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Argon

physical science Maturity 11-13

Argon is a gas in our air.

Argon ice 1.jpg
Argon ice 1.jpg
It is all around us. You cannot see it or smell it. It does not like to change. This makes it very safe to use. It helps us make bright lights.
ArTube.jpg
ArTube.jpg
Do you like bright lights?

47 words

Argon is a gas in our air.

Argon ice 1.jpg
Argon ice 1.jpg
It is all around us. You cannot see it or smell it.

It is a very quiet gas. It does not like to change or react. Because of this, people call it "lazy."

This gas is very useful. It helps make bright lights.

ArTube.jpg
ArTube.jpg
It can also help in welding.

It can even help put out fires. It protects tools from getting damaged.

Argon is a special part of our world.

Argon.jpg
Argon.jpg
It is very helpful to us.

88 words

Argon is a gas in our air.

Argon ice 1.jpg
Argon ice 1.jpg
It is colorless and has no smell. It is the third most common gas in our atmosphere. It is much more common than neon.

Argon is a noble gas. This means it is very stable. It does not like to react with other things. The name argon comes from a Greek word for "lazy."

Lord Rayleigh Vanity Fair 21 December 1899.jpg
Lord Rayleigh Vanity Fair 21 December 1899.jpg
This name fits because the gas stays very still. It does not easily form new compounds.

Scientists first found argon in 1894. Lord Rayleigh and Sir William Ramsay did this work.

Isolation of Argon.png
Isolation of Argon.png
They took it from a sample of clean air.

Today, we use argon for many jobs. It is used in welding to protect metals. It can also be used in bright lights.

ArTube.jpg
ArTube.jpg
Some lights use argon to glow. It is also used to put out fires. This helps protect expensive tools from water damage.
Argon.jpg
Argon.jpg
It is a very useful and quiet gas.

169 words

Argon is a very special gas found in our air.

Argon ice 1.jpg
Argon ice 1.jpg
It is a chemical element with the symbol Ar. It is also known as a noble gas. This means it is very stable and does not like to bond with other elements. In our atmosphere, argon is the third most common gas. It makes up about 0.934% of the air around us. This makes it much more common than water vapor or carbon dioxide. It is also much more common than the gas neon.
ArTube.jpg
ArTube.jpg

Argon works by staying very still and quiet. It has a full outer shell of eight electrons. This full shell makes it resistant to reacting with other things. Because it does not react, it is called "inert." This means it can sit near other materials without changing them. We can use this to protect things during high-heat jobs. For example, an argon atmosphere can stop graphite from burning in a furnace. It can also protect metals during welding.

Argon.jpg
Argon.jpg

Scientists first discovered argon in 1894. Two researchers named Lord Rayleigh and Sir William Ramsay found it.

Lord Rayleigh Vanity Fair 21 December 1899.jpg
Lord Rayleigh Vanity Fair 21 December 1899.jpg
They worked at University College London. They isolated the gas by taking clean air and removing other parts. They removed oxygen, carbon dioxide, water, and nitrogen. They even used a special electric arc to help the process. This discovery was very important for the study of chemistry. It helped scientists understand how the periodic table works.

There are many different types of argon atoms, called isotopes. On Earth, most argon is called argon-40.

Isolation of Argon.png
Isolation of Argon.png
This type comes from the decay of potassium-40 in the Earth's crust. In outer space, argon-36 is the most common type. This is because it is made during supernovas in stars. Scientists can even use the ratio of these isotopes to find the age of rocks. This method is known as K–Ar dating. It helps us learn how old our planet is.

Today, we use argon in many ways we see every day. It is used inside bright lights like fluorescent lamps. It can even make a blue-green gas laser.

Argon-fluorohydride-3D-vdW.png
Argon-fluorohydride-3D-vdW.png
Some special tools use argon to put out fires. This is helpful because it does not damage expensive computer equipment like water does. It is also used in the food industry to keep things fresh. Argon is a very useful, colorless, and odorless gas. It is a quiet helper in our modern world.

411 words

Argon is a chemical element with the symbol Ar and the atomic number 18. It belongs to group 18 on the periodic table, which is the category of noble gases.

Argon ice 1.jpg
Argon ice 1.jpg
Noble gases are unique because they are very stable. Argon is the third most abundant gas in Earth's atmosphere. It makes up 0.934% of our air by volume. This means it is much more common than water vapor. It is also 23 times more abundant than carbon dioxide. Compared to neon, argon is more than 500 times more common.

Argon is chemically inert, which means it does not react easily with other things. This happens because argon has a complete octet of electrons. An octet is a full outer shell of eight electrons. This full shell makes the atom very stable. It resists bonding with other elements under most conditions. Because of this inactivity, the name "argon" comes from an Ancient Greek word meaning "lazy" or "inactive."

Argon-fluorohydride-3D-vdW.png
Argon-fluorohydride-3D-vdW.png
While it is mostly unreactive, scientists have found it can form compounds under extreme conditions. For example, argon fluorohydride (HArF) is stable below 17 kelvins. Argon can also form clathrates. These are structures where argon atoms are trapped inside a lattice of water molecules.

There are different versions of argon called isotopes. On Earth, argon-40 is the most common isotope at 99.6%. This specific isotope is radiogenic. It is created by the decay of potassium-40 in the Earth's crust. Scientists use the ratio of argon isotopes to determine the age of rocks. This process is called K–Ar dating. In the wider universe, argon-36 is the most common isotope. This is because argon-36 is produced during stellar nucleosynthesis in supernovas.

Isolation of Argon.png
Isolation of Argon.png
The isotopic makeup of argon varies greatly across our solar system. For instance, the atmospheres of Mars and Mercury are dominated by argon-40.

History shows that argon was a puzzle for early chemists. In 1785, Henry Cavendish suspected an unreactive gas existed in the air. Later, in 1894, Lord Rayleigh and Sir William Ramsay isolated it. They worked at University College London. They removed oxygen, carbon dioxide, water, and nitrogen from clean air. They used an electric arc and an alkali solution to help the process.

Lord Rayleigh Vanity Fair 21 December 1899.jpg
Lord Rayleigh Vanity Fair 21 December 1899.jpg
Before they isolated it, they noticed nitrogen from compounds was slightly lighter than atmospheric nitrogen. This led them to realize another gas was mixed in. Before 1957, the symbol for argon was simply "A." The International Union of Pure and Applied Chemistry changed it to "Ar" later that year.

Industrially, argon is produced through fractional distillation. This process happens in a cryogenic air separation unit. Scientists cool air until it becomes liquid. Then, they separate the liquids based on their boiling points. Nitrogen boils at 77.3 K, argon at 87.3 K, and oxygen at 90.2 K.

Argon.jpg
Argon.jpg
This method makes argon very inexpensive to produce. About 700,000 tonnes of argon are produced worldwide every year. Because it is a byproduct of making oxygen and nitrogen, it is very widely available. This makes it a cheaper alternative to other noble gases for many jobs.

Argon has many important uses in industry and science. Because it is inert, it is used as a shielding gas in welding. It protects metals like titanium during high-temperature processes. In graphite electric furnaces, an argon atmosphere prevents the graphite from burning. It is also used in incandescent and fluorescent lighting. Argon can even create a distinctive blue-green gas laser.

ArTube.jpg
ArTube.jpg
In the food industry, argon is used to replace oxygen. This helps to enhance the shelf life of products. It is also used to extinguish fires. This is helpful for protecting expensive server equipment that water might damage.

In advanced scientific research, liquid argon is very useful. It is used as a target in experiments searching for neutrinos. It is also used in searches for dark matter. Scientists look for light produced when particles hit an argon nucleus.

CsCrystals.JPG
CsCrystals.JPG
Argon's discovery also helped fix the periodic table. Early scientists like Mendeleev struggled with argon's weight. Because it was so unreactive, they weren't sure where to put it. Henry Moseley eventually showed that the table should be arranged by atomic number. This solved the mystery of argon's placement and helped organize all known elements.

713 words
🖼️ Images & Media (8)
File:Argon ice 1.jpg
Argon ice 1.jpg
File:Isolation of Argon.png
Isolation of Argon.png
File:Lord Rayleigh Vanity Fair 21 December 1899.jpg
Lord Rayleigh Vanity Fair 21 December 1899.jpg
File:Argon-fluorohydride-3D-vdW.png
Argon-fluorohydride-3D-vdW.png
File:Argon.jpg
Argon.jpg
File:CsCrystals.JPG
CsCrystals.JPG
File:Glovebox.jpg
Glovebox.jpg
File:ArTube.jpg
ArTube.jpg
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