Some metal can melt in your hand. 

This metal is shiny and silver. 

Gallium is a shiny, silver metal. 

One of the coolest things about gallium is how it melts. Its melting point is about 29.76 degrees Celsius. This is just above room temperature. It will even melt if you hold it in your hand!
Gallium helps make many things we use every day. It is used to make semiconductors. These are parts used in electronics. Gallium helps make blue and violet lights. These are called LEDs. 
Gallium is a fascinating chemical element with the symbol Ga. It has the atomic number 31. This metal is soft and silvery in its solid form. 

One of the most amazing things about gallium is its melting point. The melting point is about 29.76 degrees Celsius. This is just above normal room temperature. It is also close to average summer daytime temperatures in many places. Because of this, gallium will melt if you hold it in your hand.
Scientists first discovered this metal in 1875. A French chemist named Paul-Émile Lecoq de Boisbaudran found it in Paris, France. 
Gallium is very important for the technology we use every day. It is mostly used in electronics. It helps make semiconductors, which are parts that control electricity. For example, gallium arsenide is used in microwave circuits and high-speed circuits. 

This special alloy, galinstan, is a great way to use gallium safely. It stays liquid even at very low temperatures. Because of this, it is used in thermometers. It is a non-toxic and environmentally friendly choice. This makes it a much safer alternative to mercury. Mercury is very toxic to living things. Gallium is much easier to handle because it is not highly toxic. It can also be used to make brilliant mirrors when painted onto glass. 
Gallium is a chemical element with the symbol Ga and the atomic number 31. It is a soft, silvery metal when it is a solid at standard temperature and pressure. 
The physical behavior of gallium is driven by its unique atomic structure. In its stable solid phase, gallium has an orthorhombic structure with eight atoms in its conventional unit cell. Within this structure, atoms form Ga2 dimers, which are pairs of atoms held together by covalent bonds.
One of the most remarkable features of gallium is its melting point, which is 29.7646 °C (85.5763 °F). This temperature is just above standard room temperature and is similar to average summer daytime temperatures in Earth's mid-latitudes. 
Gallium's phase changes require careful handling due to its expansion properties. When gallium changes from a liquid to a solid, its volume expands by 3.10%. This is similar to how water expands when it freezes. If gallium is stored in a container that is too tight, this expansion can cause the container to rupture. Additionally, liquid gallium has a strong tendency to supercool. This means it can remain in a liquid state even when cooled below its freezing point. Scientists can initiate freezing by using a process called seeding with a crystal.
The history of gallium began in 1875. The French chemist Paul-Émile Lecoq de Boisbaudran discovered the element in Paris, France. 
In the field of electronics, gallium is indispensable. It is used to create semiconductors, which are materials that control the flow of electricity. Gallium arsenide is a primary compound used in high-speed switching circuits, microwave circuits, and infrared circuits. 
Gallium is also used to create specialized alloys with very low melting points. One such alloy is called galinstan. Galinstan is composed of 62–95% gallium, 5–22% indium, and 0–16% tin by weight. 

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