In a metallic crystal, the positive ions sit in a dense, close-packed arrangement and the valence electrons are delocalised — shared across the whole solid rather than tied to individual atoms. This electron cloud holds the ions together without directional bonds. When a stress is applied, layers of ions can slide past one another and the electron cloud simply redistributes, so the crystal deforms rather than fracturing.
How Chemical Bonds Drive Crystallisation and Crystal Growth
How Bond Type Controls Crystal Nucleation and Growth
Why Metals Bend Instead of Shatter
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Metals take the opposite approach to the covalent case. The positive ions sit in a dense, close-packed arrangement, and the valence electrons are not tied to individual atoms — they are delocalised, shared across the whole solid.
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