Q.The compounds and represent
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Start your 14-day free trial to unlock the full solution →These two compounds have the SAME coordination sphere, , but DIFFERENT counter-ions ( vs. ). Because the counter-ion is different, the two compounds don't even share the same overall molecular formula — so they cannot be isomers of each other at all. The correct answer is (iv) no isomerism.
Isomers, by definition, must have the same molecular formula but a different arrangement of atoms or ions. Before deciding which kind of isomerism relates two compounds, you must first check whether they are isomers at all.
Step-by-step reasoning
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Identify the coordination sphere in each compound.
In , the square brackets enclose bonded to one sulfate ion (, acting as a ligand) and five ammonia molecules. Bromide sits outside the sphere as the counter-ion.
In , the coordination sphere is identical — same metal, same ligands (one sulfate, five ammines), same charge on the complex ion. Only the counter-ion is chloride instead of bromide.
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Compare the overall molecular formulas.
The first compound's formula contains one bromine atom; the second contains one chlorine atom instead. These are simply two different chemical formulas — a bromide salt and a chloride salt of the same complex cation.
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Check each isomerism type against this pair:
- Linkage isomerism requires an ambidentate ligand (like or ) bonding through a different atom in the two compounds. No ambidentate ligand is present here.
- Ionisation isomerism requires the same overall molecular formula, with an anion exchanging roles — a ligand in one compound, a free counter-ion in the other — e.g. vs. (both compounds share the formula ). In our pair, sulfate stays a ligand in both compounds — nothing ever moves in or out of the coordination sphere. Only the identity of the free halide itself changes ( vs. ), which makes the overall formula different between the two compounds — this fails the basic requirement for ionisation isomerism.
- Coordination isomerism requires both the cation and the anion to be complex ions that exchange ligands between them (e.g. vs. ). Here the counter-ions (, ) are simple monatomic anions, not complex ions — this is impossible. …
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