Log in Sign up
Back to Discover
⚛️

Einsteinium

physical science Maturity 11-13

This is a special metal.

EinsteiniumGlow.JPG
EinsteiniumGlow.JPG
It was found in a big blast. It can even glow in the dark. Scientists use it to learn new things. It is very hard to make. Can you imagine a glowing metal?
Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg

44 words

Einsteinium is a special metal.

EinsteiniumGlow.JPG
EinsteiniumGlow.JPG

It was found in a big blast.

Ivy Mike - mushroom cloud.jpg
Ivy Mike - mushroom cloud.jpg

This metal is very soft and silver. It even glows in the dark. This happens because it is very hot.

Scientists make it in special machines. It is very hard to make. They only make a tiny bit each year.

People use it to learn new things. It is named after Albert Einstein.

Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg

It is a very bright discovery.

82 words

Einsteinium is a man-made metal.

Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg
It is part of a group called actinides. It has the symbol Es. Scientists first found it in 1952.
Ivy Mike - mushroom cloud.jpg
Ivy Mike - mushroom cloud.jpg
It was found in the debris from a huge nuclear test. A team led by Albert Ghiorso discovered it. They studied pieces of dust from the explosion.
Albert Ghiorso ca 1970.jpg
Albert Ghiorso ca 1970.jpg

This metal is soft and silver. It is very radioactive. This means it gives off a lot of power. This power makes the metal glow.

EinsteiniumGlow.JPG
EinsteiniumGlow.JPG
The heat from this glow can reach 1,000 watts per gram. This heat can even damage the metal's own structure.

It is very hard to find. Scientists make it in special nuclear reactors. They only make about one milligram each year. Most of it comes from a process called decay. This is when one element turns into another. Einsteinium turns into berkelium and then californium. Because it changes so fast, it is hard to study. People use it for basic scientific research. It helps them learn how atoms work.

180 words

Einsteinium is a man-made metal that is very hard to find.

Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg
It is a member of the actinide series. This group includes many heavy and radioactive elements. Einsteinium has the symbol Es and the atomic number 99. It is a synthetic element, which means it is made by people. Because it is so rare, it is only used for basic scientific research. It does not have any common uses in our daily lives.
EsProduction.png
EsProduction.png

This metal is soft and has a silvery color. It is very radioactive, which means it releases a lot of energy. This energy is so strong that it produces a visible glow.

EinsteiniumGlow.JPG
EinsteiniumGlow.JPG
The heat from this radiation is about 1,000 watts per gram. This intense heat actually damages the metal's own structure. As the metal's structure breaks down, it changes into other elements. It decays into berkelium-249 and then into californium-249. This happens at a rate of about 3% every single day.

Scientists first found this element in 1952.

Ivy Mike - mushroom cloud.jpg
Ivy Mike - mushroom cloud.jpg
It was discovered in the debris from the Ivy Mike nuclear test. This test was the first successful test of a thermonuclear weapon. A team led by Albert Ghiorso found it.
Albert Ghiorso ca 1970.jpg
Albert Ghiorso ca 1970.jpg
They analyzed filter papers that flew through the explosion cloud. They were working with labs at Berkeley, Argonne, and Los Alamos. The discovery was kept secret for a few years because of the Cold War. It was finally made public in 1955.

Making einsteinium is a very difficult job.

ActinideExplosionSynthesis.png
ActinideExplosionSynthesis.png
Most of it is made in high-power nuclear reactors. Scientists produce it from the decay of californium-253. They only make about one milligram of it each year. Other isotopes are made by hitting heavy elements with light ions. This happens in many different laboratories. The most common version is einsteinium-253. It has a half-life of about 20.47 days. This means it disappears quite quickly.

Learning about einsteinium helps us understand the universe. The way it was made shows how atoms can capture many neutrons. This helps explain how heavy elements are made in supernovas. Scientists even used it to create the element mendelevium in 1955. It was named after the famous scientist Albert Einstein. This name was suggested by the Berkeley team. They also suggested the name fermium for element 100.

Einsteinium triiodide by transmitted light.jpg
Einsteinium triiodide by transmitted light.jpg
These names honor great scientists who changed our world.

404 words

Einsteinium is a synthetic chemical element with the symbol Es and atomic number 99.

Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg
It belongs to the actinide series, a group of heavy, radioactive elements. As a transuranium element, it does not occur naturally on Earth. Instead, it must be created by humans in specialized facilities. Because it is extremely rare and highly radioactive, it has no practical uses outside of basic scientific research.
EsProduction.png
EsProduction.png
It is primarily used to help scientists understand the fundamental properties of matter.

Most einsteinium is produced in high-power nuclear reactors through a specific process. Scientists start with californium-253 and allow it to undergo radioactive decay. This method is very slow, yielding only about one milligram of the element per year. Other isotopes are made by bombarding heavy actinide elements with light ions in various laboratories.

EsProduction.png
EsProduction.png
This creates different versions of the element, though in much smaller amounts. The most common version is einsteinium-253, which has a half-life of 20.47 days. This means the substance disappears quite rapidly as it transforms into other elements.

Einsteinium is a soft, silvery, paramagnetic metal.

Einsteinium triiodide by transmitted light.jpg
Einsteinium triiodide by transmitted light.jpg
Being paramagnetic means it is weakly attracted to magnetic fields. Its physical properties are quite unique compared to other actinides. For example, its density is 8.84 g/cm, which is much lower than californium. Its melting point is also relatively low at 860 °C.
Einsteinium triiodide by transmitted light.jpg
Einsteinium triiodide by transmitted light.jpg
Scientists often have to study its melting point inside an electron microscope because the samples are so tiny. These small sample sizes can even cause the melting point to appear lower than it actually is.

One of the most striking things about einsteinium is its intense radioactivity. This radiation is so powerful that it produces a visible glow.

EinsteiniumGlow.JPG
EinsteiniumGlow.JPG
The energy released is about 1,000 watts per gram. This heat is actually strong enough to damage the metal's own crystalline lattice. As the radiation breaks the metal's structure, it also causes the element to decay into other substances. It turns into berkelium-249, which then turns into californium-249. This conversion happens at a rate of about 3% per day, making it very hard to study pure samples.

Ivy Mike - mushroom cloud.jpg
Ivy Mike - mushroom cloud.jpg
The history of einsteinium began with a massive explosion. It was first observed in the debris of the Ivy Mike nuclear test on November 1, 1952. This test took place at Enewetak Atoll in the Pacific Ocean and was the first successful thermonuclear weapon test.
Albert Ghiorso ca 1970.jpg
Albert Ghiorso ca 1970.jpg
A team led by Albert Ghiorso at the University of California, Berkeley, discovered the element. They analyzed filter papers that had been flown through the explosion cloud by airplanes. The discovery was kept secret by the U.S. military until 1955 due to Cold War tensions.
Albert Ghiorso ca 1970.jpg
Albert Ghiorso ca 1970.jpg

The element was named in honor of the famous physicist Albert Einstein.

Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg
The Berkeley team also suggested the name fermium for element 100 to honor Enrico Fermi. During the discovery process, the element was jokingly nicknamed "Pandemonium" because of its connection to Project PANDA. The team recovered fewer than 200 atoms during their initial separation process. They used a complex method involving ion exchange in a weakly acidic medium. Despite the small amount, they could detect the element through its high-energy alpha decay at 6.6 MeV.

Studying einsteinium provides important connections to how the universe works. The way it was formed during the Ivy Mike test showed how atoms can capture many neutrons very quickly. This process is known as multiple neutron capture.

ActinideExplosionSynthesis.png
ActinideExplosionSynthesis.png
This discovery provided experimental proof for the r-process. The r-process explains how heavy elements are produced in supernovas during cosmic nucleosynthesis. Understanding this helps scientists explain why many stable heavy elements exist in our universe. Furthermore, einsteinium was used in 1955 to successfully synthesize 17 atoms of the new element mendelevium.

645 words
🖼️ Images & Media (8)
File:Ivy Mike - mushroom cloud.jpg
Ivy Mike - mushroom cloud.jpg
File:Albert Ghiorso ca 1970.jpg
Albert Ghiorso ca 1970.jpg
File:Einstein1921 by F Schmutzer 2.jpg
Einstein1921 by F Schmutzer 2.jpg
File:EinsteiniumGlow.JPG
EinsteiniumGlow.JPG
File:EsProduction.png
EsProduction.png
File:ActinideExplosionSynthesis.png
ActinideExplosionSynthesis.png
File:Elutionskurven Fm Es Cf Bk Cm Am.png
Elutionskurven Fm Es Cf Bk Cm Am.png
File:Einsteinium triiodide by transmitted light.jpg
Einsteinium triiodide by transmitted light.jpg
Up Next
⚛️
Fermium
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.