Tantalum is a strong metal. 

Tantalum is a strong, dark metal. 

Tantalum is a strong, blue-gray metal. 

This metal can handle a lot of heat. Its melting point is 3017 °C. Only a few other things can stay solid at that heat. Because it is so tough, we use it in many tools. It is also used in electronic parts. For example, tantalum capacitors help computers work. A capacitor is a part that stores power.
Scientists find tantalum in rocks and minerals. One common mineral is called tantalite. Tantalum is often found near another metal called niobium. These two metals are very similar. In 2015, Rwanda was a main producer of tantalum. Many other countries like China and Australia also mine it.
Tantalum is a very special metal used in many important ways. It is a blue-gray metal that is very hard and dense. 

This metal works well because it can survive extreme heat. Tantalum has a very high melting point of 3017 °C. Only a few other elements, like tungsten and rhenium, can stay solid at higher temperatures. 
People discovered tantalum a long time ago in Sweden. A scientist named Anders Ekeberg found it in 1802. He found it in two different mineral samples. 
Finding and separating tantalum can be a hard job. It is often found together with niobium in minerals like tantalite or coltan.
Many different places in the world produce this metal. In 2015, Rwanda was a very large producer of tantalum.
Tantalum is a dense, blue-gray transition metal with the symbol Ta and atomic number 73. It belongs to a group of metals known as refractory metals. These are elements that are very good at resisting heat. Because of this, they are often used to make strong alloys that can withstand extremely high temperatures. Tantalum is highly ductile, which means it can be stretched into wires without breaking. It is also very hard and conducts both heat and electricity effectively. 
The most famous quality of tantalum is its high resistance to corrosion. It is chemically inert, meaning it does not react easily with other substances. For example, at temperatures below 150 °C, tantalum is almost completely immune to aqua regia. Aqua regia is a very aggressive mixture of acids. However, tantalum can still be dissolved by hydrofluoric acid or certain solutions containing the fluoride ion. Its melting point is incredibly high at 3017 °C. Only three other metals, tungsten, rhenium, and osmium, and the element carbon have higher melting points. This makes it vital for industrial equipment like vacuum furnaces and reaction vessels.
Tantalum exists in two different crystalline structures called phases. The alpha phase is the stable form found at most temperatures. It has a body-centered cubic structure and is relatively ductile. Most bulk tantalum is in this alpha phase. The beta phase is different because it is hard and brittle. It has a tetragonal crystal symmetry. This phase is metastable, which means it can change back into the alpha phase if it is heated to between 750 and 775 °C. Most beta phase tantalum is created as thin films through processes like electrochemical deposition or magnetron sputtering.
The history of tantalum involves a long struggle to tell it apart from another element called niobium. Anders Ekeberg discovered tantalum in Sweden in 1802. He named it after Tantalus, a figure from Greek mythology. In the myths, Tantalus was punished by being unable to reach water or fruit. Ekeberg chose this name because the metal would not absorb acid, much like the water that escaped Tantalus. In 1809, William Hyde Wollaston compared tantalum and niobium oxides. He thought they were the same because their densities were close. It took many years and other scientists, such as Heinrich Rose and Jean Charles Galissard de Marignac, to prove they were separate elements. De Marignac was the first to produce the pure metal in 1864 by heating tantalum chloride in hydrogen.

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