Nickel is a shiny metal. 

Nickel is a shiny metal. 

Nickel is used to make coins. 
Some nickel comes from space. It is found inside rocks from space. These rocks fall to Earth.
Nickel can also make magnets. These magnets are used in many tools.
Nickel is a very useful metal.
Nickel is a shiny metal. It looks silvery-white with a hint of gold. 
Nickel is found in many places. Some nickel comes from space. It is found inside meteorites, which are rocks from space. 
This metal helps make many things. About 68% of all nickel goes into making stainless steel. This is a type of steel that resists rust.
Nickel can also be magnetic. It is one of only four elements that are ferromagnetic at room temperature. This means it can be used to make magnets. 
Nickel is a silvery-white metal with a slight golden tinge. It is a hard and ductile metal, which means it can be shaped without breaking. 

Nickel works in many ways to protect objects. When pure nickel touches air, it can react with it. However, large pieces react very slowly. This happens because a thin layer called a passivation layer forms on the surface. This layer is made of nickel oxide. It acts like a shield to prevent further corrosion, or rusting. 
People have used nickel for a very long time. We can trace its use back to 3500 BCE using natural nickel-iron from space. 

Nickel is found in many different places around the world. Most nickel in the Earth's crust exists as oxides. However, the most important ores for industry are sulfides, like pentlandite.
We use nickel to make many things we see every day. About 68% of the world's nickel is used to make stainless steel. This is a strong metal that does not rust easily. 

Nickel is a chemical element with the symbol Ni and the atomic number 28. It is characterized as a silvery-white, lustrous transition metal with a slight golden tinge. 

The chemical behavior of nickel is defined by its ability to form a passivation layer. While pure nickel is chemically reactive, large pieces react very slowly with air under standard conditions. This slow reaction occurs because a thin layer of nickel oxide forms on the surface. This layer acts as a protective shield that prevents further corrosion. 
Nickel is found in several distinct forms and mineral types. In the Earth's crust, most nickel exists as oxides. These include laterite, which contains minerals like limonite, and garnierite. However, the most economically important nickel ores are sulfides. A primary example is pentlandite, a mineral that often exists in solid solutions with iron.
The history of nickel discovery involves both mythology and careful chemistry. The name "nickel" actually comes from a mischievous sprite in German miner mythology. Miners used this name for ores like kupfernickel because they looked like copper but produced no copper. 
Nickel production is a massive global industry with specific geographic hubs. Major production sites include Sulawesi, Indonesia, and the Sudbury region in Canada. Other significant areas include New Caledonia, Western Australia, and Norilsk, Russia.
Modern society relies on nickel for a wide variety of industrial applications. The largest use is for stainless steel, which accounts for approximately 68% of world production. 

Beyond industry, nickel plays a role in both biology and deep space science. For some microorganisms and plants, nickel is an essential nutrient. It is used as an active site in certain enzymes to help biological processes function. In the stars, nickel is part of a complex cycle. While nickel-62 has the highest binding energy per nucleon of any nuclide, nickel is not the most abundant heavy element in the universe. This is because the high rate of photodisintegration in stellar interiors causes iron to be more abundant. However, studying nickel isotopes like nickel-59 can provide scientists with insights into the early history and origin of our Solar System.
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