11.17
Metallic solids, such as copper, aluminum, and gold, are solids that have metal atoms as their constituent particles, which typically are held together by strong metallic bonds.
In a metallic bond, the electron clouds of neighboring metal atoms overlap, such that these valence electrons are delocalized throughout the solid. Metallic solids are sometimes described as a lattice of stationary metal cations in a sea of delocalized electrons.
This results in a more flexible internal structure than that of molecular or ionic solids. Metallic solids generally can bend and deform without breaking to a greater extent than other solids.
As exhibited by gold and mercury, their melting points vary widely depending on the strength of the metallic bonds. The mobile electrons also make these solids excellent conductors of heat and electricity.
The atoms of pure metallic solids are typically arranged, or ‘packed’, in one of the two most efficient possible configurations for spheres of a uniform size: hexagonal close-packing or cubic close-packing.
In hexagonal close-packing, the metal atoms are arranged hexagonally in two repeating layers, where the atoms in the second layer occupy the depressions
Metallic solids such as crystals of copper, aluminum, and iron are formed by metal atoms. The structure of metallic crystals is often described as a u…
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