Q.When 0.1 mol is treated with excess of , 0.2 mol of are obtained. The conductivity of solution will correspond to
The complex is , which dissociates into 3 ions (1 Co complex cation + 2 Cl⁻ anions), so it behaves as a 1:2 electrolyte. The correct option is (ii).
Why Conductivity and Precipitation Tell the Same Story
When you dissolve a coordination compound in water, its conductivity depends on how many ions it releases. A 1:1 electrolyte (like NaCl) gives 2 ions, a 1:2 electrolyte (like CaCl₂) gives 3 ions, and so on. The precipitation experiment with AgNO₃ is a clever way to count how many chloride ions are free — because only free Cl⁻ ions react with Ag⁺ to form AgCl. Chloride ions that are tightly bound inside the coordination sphere (as ligands) do not precipitate.
So the two experiments — conductivity and precipitation — are two sides of the same coin. If you know how many Cl⁻ ions are free, you know the ionic formula of the complex, and from that you can predict how many total ions it will produce in solution.
Step-by-Step Reasoning
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Interpret the precipitation data.
The reaction is:
From 0.1 mol of the complex, we get 0.2 mol of AgCl. That means 0.2 mol of free Cl⁻ ions were present in the solution.
So per mole of complex, the number of free Cl⁻ ions is:
Therefore, the complex must have two chloride ions outside the coordination sphere (as counter-ions) and the rest inside as ligands.
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Deduce the formula of the complex.
The molecular formula is . We have 3 Cl atoms total. Two are free (ionic), so the remaining one must be coordinated to cobalt inside the coordination sphere.
Hence the correct structural formula is:
The square brackets enclose the coordination sphere: one Co³⁺ ion, five NH₃ molecules, and one Cl⁻ ligand. Outside the sphere, two Cl⁻ ions balance the +3 charge on the cobalt (since Co³⁺ + 5 neutral NH₃ + 1 Cl⁻ ligand gives a net +2 charge on the complex ion, which is neutralized by the two free Cl⁻ ions).
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Determine the number of ions in solution.
When dissolves, it dissociates completely into:
That is 3 ions per formula unit: one complex cation with charge +2, and two chloride anions.
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Classify the electrolyte type.
An electrolyte that gives one cation of charge +2 and two anions of charge -1 is called a 1:2 electrolyte (the ratio of cation charge to anion charge is 1:2, but more commonly it refers to the number of ions: 1 cation : 2 anions).
Option (ii) matches this.
A common mistake is to think that all 3 chlorides are free because the formula shows 3 Cl atoms. Remember: only chlorides outside the coordination sphere precipitate with Ag⁺. The coordinated Cl⁻ is "invisible" to AgNO₃.
You can also work backwards from the conductivity: a 1:2 electrolyte gives a molar conductivity roughly double that of a 1:1 electrolyte (for similar ions), but here the precipitation data alone is sufficient — no need for actual conductivity values.
The correct option is (ii) 1:2 electrolyte.
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