Polyatomic atoms
These groups are called polyatomic ions. They act as a single charged entity in chemical reactions and can form ionic bonds with other atoms or ions to achieve a stable electron configuration. Examples include sulfate (SO4^2-), nitrate (NO3^-), and ammonium (NH4^+).
A molecule is made of covalently bonded atoms. Covalent bonds involve the sharing of electron pairs between atoms, creating molecular structures. These bonds are strong and stable, leading to the formation of various compounds.
Hair gel is typically not an ionic compound. It is usually made up of polymers and other organic molecules that are covalently bonded, rather than having ionic bonds.
In a covalently bonded molecule, the number of electrons that an atom shares with others is typically equal to the number of electrons needed to achieve a stable octet (or duet for hydrogen). This sharing allows each atom to satisfy the octet rule, resulting in a more stable molecular structure.
Inorganic compounds are typically held together by ionic bonds. Ionic bonds are formed when electrons are transferred from one atom to another, resulting in the attraction between positively and negatively charged ions.
These groups are called polyatomic ions. They act as a single charged entity in chemical reactions and can form ionic bonds with other atoms or ions to achieve a stable electron configuration. Examples include sulfate (SO4^2-), nitrate (NO3^-), and ammonium (NH4^+).
A molecule is made of covalently bonded atoms. Covalent bonds involve the sharing of electron pairs between atoms, creating molecular structures. These bonds are strong and stable, leading to the formation of various compounds.
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A covalently bonded molecular compound
Usually only one
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In other words, valence value is the combining capacity of and element.
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Covalent bonded compounds have generally lower melting and boiling points, are not hard, are less conductive etc.
In a covalently bonded molecule, the number of electrons that an atom shares with others is typically equal to the number of electrons needed to achieve a stable octet (or duet for hydrogen). This sharing allows each atom to satisfy the octet rule, resulting in a more stable molecular structure.
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