Q.Assertion: for weak electrolytes shows a sharp increase when the electrolytic solution is diluted.
Reason: For weak electrolytes degree of dissociation increases with dilution of solution.
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Start your 14-day free trial to unlock the full solution →The assertion is true — molar conductivity of weak electrolytes rises sharply on dilution — and the reason is also true: dilution increases the degree of dissociation. The reason correctly explains the assertion, so option (i) is correct.
Why This Works
The key idea is molar conductivity () and how it behaves for weak electrolytes like acetic acid. Unlike strong electrolytes (which are fully dissociated even at moderate concentrations), weak electrolytes dissociate only partially. When you dilute the solution, the equilibrium shifts toward more dissociation — that’s Le Chatelier’s principle in action.
The sharp increase in on dilution is not because ions move faster; it’s because more ions are produced per mole of electrolyte. Let’s walk through it.
- What is ? Molar conductivity is defined as:
where is the specific conductivity and is the concentration in mol/L. For a weak electrolyte, itself depends on the number of ions present. At higher concentration, dissociation is low, so is small. On dilution, decreases, but the degree of dissociation increases — so the number of ions per mole rises, and does not drop as fast as does. The net effect: increases sharply.
- Why does increase with dilution? For a weak electrolyte dissociating as , the equilibrium constant is:
At a given temperature, is fixed. If you dilute (decrease ), the numerator must adjust to keep constant. The only way is for to increase — because appears in the numerator, a small drop in can be compensated by a rise in . This is a direct consequence of the equilibrium law.
For weak electrolytes, is related to by , where is the limiting molar conductivity at infinite dilution. Since increases with dilution, rises.
- The sharp increase — why “sharp”? For strong electrolytes, increases only gradually on dilution (due to reduced ion-ion interactions). For weak electrolytes, the increase is much steeper because the number of charge carriers itself multiplies. At very high dilution, approaches 1, and approaches , but the approach is rapid in the dilute region. …
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