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Hint :The tendency of a material to deform under pressure is known as malleability (compressive stress). If a material is malleable, it can be hammered or rolled into thin sheets. Metal leaf can be made from malleable materials.
Complete Step By Step Answer:
The tendency of a material to deform under pressure is known as malleability (compressive stress). If a material is malleable, it can be hammered or rolled into thin sheets. Metal leaf can be made from malleable materials.
A chemical reaction involving the sharing of electron pairs between atoms is known as a covalent bond. Shared pairs or bonding pairs are the stable balance of attractive and repulsive forces between atoms when they share electrons, and covalent bonding is the stable balance of attractive and repulsive forces between atoms when they share electrons.
The full transition of valence electron(s) between atoms is known as ionic bonding. It's a kind of chemical bond that produces two ions with opposite charges. The metal lacks electrons to become a positively charged cation in ionic bonds, while the nonmetal accepts those electrons to become a negatively charged anion.
A coordinate covalent bond, also known as a dative bond, dipolar bond, or coordinate bond, is a two-center, two-electron covalent bond in which all electrons originate from the same atom. This kind of interaction is involved in the bonding of metal ions to ligands.
Metallic bonding is a type of chemical bonding that results from the electrostatic attraction between positively charged metal ions and conduction electrons (in the form of an electron cloud of delocalized electrons).
Metals are quickly replaced because they do not firmly hang on to electrons during metallic bonding. Electrons are delocalized and can freely pass between nuclei in metallic bonding. The nuclei move as a force is applied to a metal, but the bonds do not snap, giving metals their characteristic malleability. This property is absent in Non-Metals
Hence option C is correct.
Note :
Metallic bonding is a type of chemical bonding that results from the electrostatic attraction between positively charged metal ions and conduction electrons (in the form of an electron cloud of delocalized electrons).
Complete Step By Step Answer:
The tendency of a material to deform under pressure is known as malleability (compressive stress). If a material is malleable, it can be hammered or rolled into thin sheets. Metal leaf can be made from malleable materials.
A chemical reaction involving the sharing of electron pairs between atoms is known as a covalent bond. Shared pairs or bonding pairs are the stable balance of attractive and repulsive forces between atoms when they share electrons, and covalent bonding is the stable balance of attractive and repulsive forces between atoms when they share electrons.
The full transition of valence electron(s) between atoms is known as ionic bonding. It's a kind of chemical bond that produces two ions with opposite charges. The metal lacks electrons to become a positively charged cation in ionic bonds, while the nonmetal accepts those electrons to become a negatively charged anion.
A coordinate covalent bond, also known as a dative bond, dipolar bond, or coordinate bond, is a two-center, two-electron covalent bond in which all electrons originate from the same atom. This kind of interaction is involved in the bonding of metal ions to ligands.
Metallic bonding is a type of chemical bonding that results from the electrostatic attraction between positively charged metal ions and conduction electrons (in the form of an electron cloud of delocalized electrons).
Metals are quickly replaced because they do not firmly hang on to electrons during metallic bonding. Electrons are delocalized and can freely pass between nuclei in metallic bonding. The nuclei move as a force is applied to a metal, but the bonds do not snap, giving metals their characteristic malleability. This property is absent in Non-Metals
Hence option C is correct.
Note :
Metallic bonding is a type of chemical bonding that results from the electrostatic attraction between positively charged metal ions and conduction electrons (in the form of an electron cloud of delocalized electrons).
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