This is a special thing made in a lab.
Roentgenium is a special thing made in a lab. 
Roentgenium is a man-made chemical element. 
One version, roentgenium-282, lasts for 130 seconds. Another version might last 10.7 minutes. Scientists first made it in 1994. They worked at a center in Germany. They named it after Wilhelm Röntgen. He was the person who found X-rays.
We do not know exactly how it looks. We cannot do many tests on it yet. This is because we only make a few atoms. It is also very hard to keep. Scientists think it might act like gold. Gold is in the same group on the periodic table. This means they may share some traits. Roentgenium might be a heavy metal. It might even be as heavy as osmium. Osmium is one of the densest things we know.
Roentgenium is a special type of man-made matter called a synthetic chemical element. 
Making roentgenium is a very hard job for scientists. They do this by hitting a target with tiny pieces of other elements. In 1994, a team hit a target of bismuth-209 with nickel-64 nuclei. They used a machine to speed up the nickel pieces. This process is called bombardment. When the pieces hit the target, they created new atoms of roentgenium. This way of making new elements is how we learn about the heaviest parts of our world.
An international team of scientists first made roentgenium in December 1994. They worked at the GSI Helmholtz Centre for Heavy Ion Research. This center is located near Darmstadt, Germany. A leader named Sigurd Hofmann led the team during this discovery. They had to repeat their work in 2002 to be sure. In 2003, experts officially decided that the GSI team had discovered it.
The element is named after Wilhelm Röntgen. He was a physicist who discovered X-rays. 
We can use what we know about other metals to guess how roentgenium acts. It sits in group 11 on the periodic table. This group includes copper, silver, and gold. Because of this, scientists think roentgenium might be a noble metal. It might even be a very heavy solid. Its density might be around 22 to 24 grams per cubic centimeter. This would make it as heavy as osmium, one of the densest things we know. 
Roentgenium is a synthetic chemical element with the symbol Rg and atomic number 111. 
Creating roentgenium requires a process called bombardment. In December 1994, an international team led by Sigurd Hofmann performed this at the GSI Helmholtz Centre for Heavy Ion Research in Germany.
Scientists have identified several different isotopes of roentgenium. An isotope is a version of an element with a different number of neutrons. Nine different isotopes have been reported with various atomic masses. These include masses of 272, 274, 278, 279, 280, 281, 282, 283, and 286. Some of these, like 283 and 286, are still unconfirmed. All of these isotopes are highly unstable. They disappear through processes called alpha decay or spontaneous fission. Some might also undergo electron capture. The heavier isotopes tend to be more stable than the lighter ones. For example, roentgenium-282 is the most stable known isotope. It has a half-life of about 100 to 130 seconds. 
The name roentgenium honors the physicist Wilhelm Röntgen. 
We cannot measure the physical properties of roentgenium directly. This is because it is very expensive and difficult to produce. It also decays far too quickly for standard tests. However, scientists use calculations to predict how it behaves. Roentgenium is the ninth member of the 6d series of transition metals. It is expected to be a noble metal. This means it should be quite unreactive. It is predicted to behave similarly to its lighter relatives: copper, silver, and gold. These three elements are also in group 11. Calculations suggest roentgenium might even show more stable oxidation states than gold. For instance, the +3 state is predicted to be its most stable form.
Relativistic effects also change how roentgenium might look and act. These effects happen because the electrons move at very high speeds. These effects are expected to make the element a very heavy solid. It will likely have a body-centered cubic structure. This is different from copper, silver, and gold. Those metals have a face-centered cubic structure. The density of roentgenium is predicted to be between 22 and 24 grams per cubic centimeter. This would make it incredibly dense. It would be similar in weight to osmium, which is the densest element with a measured density. Its atomic radius is estimated to be around 114 picometers.
Studying roentgenium helps scientists understand the limits of the periodic table. It connects to the study of superheavy elements and the search for an "island of stability." To do full chemical studies, scientists need more atoms. They need at least four atoms and a production rate of one atom per week. They also need the isotope to last at least one second. Currently, the yields for these heavy elements are very small. Researchers are looking at ways to produce isotopes like 280Rg and 281Rg. They might do this by studying the decay of heavier elements like moscovium. This work helps us understand how matter behaves at the very edge of existence.
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