Log in Sign up
Back to Discover
⚛️

Tin

physical science Maturity 7-9

Tin is a soft gray metal.

Tin-2.jpg
Tin-2.jpg
You can bend it with your hands. It can even make a little sound! It is used to make cans for food. This helps keep our food safe. Do you like using tin cans?
Inside of a tin platted can.jpg
Inside of a tin platted can.jpg

47 words

Tin is a soft, gray metal.

Tin-2.jpg
Tin-2.jpg
You can bend a bar with your hands. When you bend it, it makes a sound. This is called a tin cry.
cassiterite09.jpg
cassiterite09.jpg
People find tin in a dark rock. This rock is called cassiterite. Tin is used to coat steel. This helps make food cans.
Inside of a tin platted can.jpg
Inside of a tin platted can.jpg
This keeps the food safe inside. Tin is very useful in our world.

72 words

Tin is a soft, silvery-white metal.

Tin-2.jpg
Tin-2.jpg
It is easy to bend by hand. When you bend a bar of tin, it makes a crackling sound. People call this the "tin cry." This happens because of changes in the tin crystals.
cassiterite09.jpg
cassiterite09.jpg
Most tin comes from a dark mineral called cassiterite.

Tin can change its form in the cold. At room temperature, it is a strong metal. But at very low temperatures, it turns into a gray powder. This is called "tin pest." Some stories say this happened to soldiers in 1812. Their tin buttons fell apart in the cold!

People use tin to make alloys. An alloy is a mix of metals. Bronze is a famous alloy made of tin and copper.

Sword bronze age (2nd version).jpg
Sword bronze age (2nd version).jpg
Today, we use tin in many ways. It is used to make solder. Solder is a metal mix used to join parts together.
Ex Lead freesolder.jpg
Ex Lead freesolder.jpg
We also use tin to coat steel. This helps make food cans.
Inside of a tin platted can.jpg
Inside of a tin platted can.jpg
The coating stops the steel from rusting.

179 words

Tin is a silvery-white metal that is very soft.

Tin-2.jpg
Tin-2.jpg
You can actually cut it with very little force. You can even bend a bar of tin by hand. When you bend it, the metal makes a crackling sound. People call this the "tin cry." This sound happens because the crystals inside the metal shift.
cassiterite09.jpg
cassiterite09.jpg
Tin is a very special element. It has the symbol Sn and the atomic number 50. It is the 49th most common element in the Earth's crust.

Most tin comes from a mineral called cassiterite. This mineral is often black or dark in color. You can find it in river banks as placer deposits. This happens because cassiterite is heavy and hard. It does not wash away as easily as other rocks.

cassiterite09.jpg
cassiterite09.jpg
Tin can also change its physical form. At room temperature, it is a strong metal called beta-tin. This form is shiny and easy to shape. However, it turns into a gray powder called alpha-tin in the cold. This change is sometimes called "tin pest."
Tin-2.jpg
Tin-2.jpg

Humans have used tin for a very long time. People began using it around 3000 BC. They mixed it with copper to make bronze.

Sword bronze age (2nd version).jpg
Sword bronze age (2nd version).jpg
Bronze was a huge invention for the Bronze Age. Adding tin to copper made the metal much harder. It also made the melted metal flow better into molds. This helped people make much more complex shapes. Pure metallic tin was being produced by 600 BC.

Tin is used in many different ways today. It is a key part of many alloys. One common alloy is pewter, which is mostly tin. Another important use is in solder. Solder is a metal mix used to join parts together.

Ex Lead freesolder.jpg
Ex Lead freesolder.jpg
Tin is also used to coat steel. This makes the steel resist rust. This is why many food cans are called "tin cans."
Inside of a tin platted can.jpg
Inside of a tin platted can.jpg
Tin is also used to make special films for electronics.

Tin is a very interesting element in science. It has the largest number of stable isotopes. This means it has many different versions of itself. This happens because its atomic number is 50. In physics, 50 is called a "magic number."

Tin(II)-chloride-xtal-1996-3D-balls-front.png
Tin(II)-chloride-xtal-1996-3D-balls-front.png
Tin can even become a superconductor. This means it can carry electricity with no resistance. This happens when it is extremely cold. Tin was one of the first materials used to study this amazing effect.

419 words

Tin is a post-transition metal found in group 14 of the periodic table. It is identified by the chemical symbol Sn and the atomic number 50.

Tin-2.jpg
Tin-2.jpg
As a silvery-white metal, tin is known for being very soft and malleable. You can bend a bar of tin by hand with very little effort. This action creates a unique crackling sound known as the "tin cry." This sound is caused by the twinning of crystals within the metal structure. Tin is the 49th most abundant element in the Earth's crust, making up 0.00022% of it.
cassiterite09.jpg
cassiterite09.jpg

Most tin is extracted from a mineral called cassiterite, which is stannic oxide. Cassiterite is often black or dark in color. It frequently forms placer deposits in alluvial channels, such as river banks. This happens because the mineral is harder, heavier, and more resistant to chemicals than the surrounding granite. Because of these physical properties, it can be separated using methods similar to gold panning.

cassiterite09.jpg
cassiterite09.jpg
In the 20th century, tin became a major export for Bolivia. However, a crash in international tin prices in 1985 led to a massive economic crisis there. This crisis resulted in the layoff of over 20,000 miners.

Tin exists in different structural forms called allotropes. At room temperature, the stable form is beta-tin, also called white tin. This form is a silvery-white, malleable metal with a body-centered tetragonal crystal structure. However, when temperatures drop below 13.2 degrees Celsius, a transformation occurs. The metal turns into alpha-tin, or gray tin.

Tin-2.jpg
Tin-2.jpg
Alpha-tin is a nonmetallic, brittle, and dull-gray powdery material. It has a diamond cubic crystal structure, similar to silicon. This spontaneous transformation in cold conditions is known as "tin pest" or "tin disease." Some legends suggest this caused the tin buttons on Napoleon's soldiers' uniforms to disintegrate during the Russian campaign of 1812.

To prevent tin pest, manufacturers often add specific impurities. Small amounts of bismuth, antimony, lead, or silver can inhibit the transformation. Adding elements like copper, antimony, or bismuth also increases the hardness of the metal. Tin does not mix easily with most metals, meaning it has low solid solubility. However, it forms simple eutectic systems with bismuth, gallium, lead, thallium, and zinc.

Ex Lead freesolder.jpg
Ex Lead freesolder.jpg
Tin can even become a superconductor below 3.72 K. It was one of the first materials used to study the Meissner effect, a key feature of superconductivity.

Humanity has utilized tin for thousands of years through alloying. Around 3000 BC, people began creating bronze by mixing tin and copper. The first bronze alloys had less than 2% tin, likely due to accidental mixing in copper ores.

Sword bronze age (2nd version).jpg
Sword bronze age (2nd version).jpg
Adding tin to copper makes the metal harder and lowers its melting temperature. It also makes the molten metal more fluid, allowing for complex shapes in molds. By 600 BC, humans were able to produce pure metallic tin. Another common alloy is pewter, which contains 85% to 90% tin mixed with metals like copper or antimony.

In modern industry, tin is essential for many high-tech applications. It is a primary component in tin-lead soft solders, which are typically at least 60% tin.

Ex Lead freesolder.jpg
Ex Lead freesolder.jpg
Tin is also used to manufacture indium tin oxide. This material creates transparent, electrically conducting films used in optoelectronics. Another major use is the corrosion-resistant plating of steel. Because inorganic tin has low toxicity, tin-plated steel is widely used for food packaging.
Inside of a tin platted can.jpg
Inside of a tin platted can.jpg
This is why we commonly refer to these containers as "tin cans."

Tin possesses unique nuclear properties due to its atomic number. It has 10 stable isotopes, which is the largest number of any element in the periodic table.

Tin(II)-chloride-xtal-1996-3D-balls-front.png
Tin(II)-chloride-xtal-1996-3D-balls-front.png
This high number of stable isotopes is due to 50 being a "magic number" in nuclear physics. The isotopes include mass numbers such as 112, 114, 115, 116, 117, 118, 119, 120, 122, and 124. Tin-120 is quite common, making up nearly one-third of all tin. These properties make tin a very important subject for study in fields like NMR spectroscopy and nuclear reactor research.

689 words
🖼️ Images & Media (12)
File:Tin-2.jpg
Tin-2.jpg
File:Sword bronze age (2nd version).jpg
Sword bronze age (2nd version).jpg
File:Tin(II)-chloride-xtal-1996-3D-balls-front.png
Tin(II)-chloride-xtal-1996-3D-balls-front.png
File:cassiterite09.jpg
cassiterite09.jpg
File:SnPrice.png
SnPrice.png
Tin Prices.webp
File:tinConsChart.jpg
tinConsChart.jpg
File:Ex Lead freesolder.jpg
Ex Lead freesolder.jpg
File:Inside of a tin platted can.jpg
Inside of a tin platted can.jpg
File:Alfonso Santiago Leyva and his son Tomás working.jpg
Alfonso Santiago Leyva and his son Tomás...
File:ITER wire.jpg
ITER wire.jpg
File:Punched tin barn lantern.jpeg
Punched tin barn lantern.jpeg
Up Next
⚛️
Manganese
Physical Science
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

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.