(a)
Interpretation:
The stronger nucleophile from the given molecules should be identified.
Concept introduction:
Nucleophile: Nucleophiles are electron rich compounds which donates electrons to electrophilic compounds which results in bond formation.
Nucleophilic nature depends on the negative charge present in the molecule, the solvent in which it present and the electronegativity of the atom.
Solvent: it is substance which dissolves the chemical substrate. They are classified as polar protic and
Polar protic solvent: It contains at least one
Polar aprotic solvent: It does not contain
Electropositive: The tendency of a metal to lose electrons readily in
(b)
Interpretation:
The stronger nucleophile from the given molecules should be identified.
Concept introduction:
Nucleophile: Nucleophiles are electron rich compounds which donates electrons to electrophilic compounds which results in bond formation.
Nucleophilic nature depends on the negative charge present in the molecule, the solvent in which it present and the electronegativity of the atom.
Solvent: it is substance which dissolves the chemical substrate. They are classified as polar protic and polar aprotic solvent.
Polar protic solvent: It contains at least one
Polar aprotic solvent: It does not contain
Electropositive: The tendency of a metal to lose electrons readily in chemical reaction.
(c)
Interpretation:
The stronger nucleophile from the given molecules should be identified.
Concept introduction:
Nucleophile: Nucleophiles are electron rich compounds which donates electrons to electrophilic compounds which results in bond formation.
Nucleophilic nature depends on the negative charge present in the molecule, the solvent in which it present and the electronegativity of the atom.
Solvent: it is substance which dissolves the chemical substrate. They are classified as polar protic and polar aprotic solvent.
Polar protic solvent: It contains at least one
Polar aprotic solvent: It does not contain
Electropositive: The tendency of a metal to lose electrons readily in chemical reaction.
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