Q.The pH of 0.1M solution of cyanic acid (HCNO) is 2.34. Calculate the ionization constant of the acid and its degree of ionization in the solution.
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Start your 14-day free trial to unlock the full solution →A weak acid partially ionizes; given pH, we find and use it to calculate both (from the equilibrium expression) and (the fraction ionized). For 0.1 M HCNO with pH 2.34: and .
Cyanic acid is a weak acid, meaning it doesn't fully dissociate in water. Instead, it establishes an equilibrium between the undissociated molecule and its ions. The pH tells us the hydrogen ion concentration at equilibrium, which is the key to unlocking both the ionization constant (a measure of acid strength) and the degree of ionization (the fraction of molecules that actually ionized).
The equilibrium we're dealing with is:
The ionization constant is defined as:
Let's work through this systematically.
Step-by-step solution
1. Extract the hydrogen ion concentration from pH
The definition of pH gives us:
So:
This is the equilibrium concentration of hydrogen ions.
2. Recognize the stoichiometry at equilibrium
For every HCNO molecule that ionizes, we get one and one . Since the acid is the only source of both ions:
3. Find the equilibrium concentration of undissociated acid
We started with 0.1 M HCNO. Some of it ionized (the amount that ionized equals ), so:
For very weak acids where , you can approximate . Here, is about 4.6% of 0.1, so the approximation would introduce a small error but is often acceptable for quick estimates.
4. Calculate the ionization constant
Substitute the equilibrium concentrations into the expression:
So (using the exact equilibrium concentration M; the quick approximation with gives ). …
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