Q.Assuming complete dissociation, calculate the pH of the following solutions:
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Start your 14-day free trial to unlock the full solution →Strong acids and bases dissociate completely in water, so their or equals the initial concentration. Use for acids and then for bases.
Understanding pH and Complete Dissociation
The pH scale measures acidity through hydrogen ion concentration. When we say a substance undergoes complete dissociation, we mean every molecule splits into ions. HCl, HBr, NaOH, and KOH are all strong electrolytes—they dissociate 100% in dilute aqueous solution.
For a strong acid like HCl:
Every mole of HCl produces exactly one mole of , so .
For a strong base like NaOH:
Similarly, .
The key relationship connecting hydrogen and hydroxide ions in water at 25°C is:
This gives us .
Solutions
(a) 0.003 M HCl
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Identify the species: HCl is a strong monoprotic acid.
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Find : Complete dissociation means .
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Calculate pH:
pH = 2.52
(b) 0.005 M NaOH
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Identify the species: NaOH is a strong base.
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Find : Complete dissociation gives .
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Calculate pOH:
- Convert to pH:
pH = 11.70
(c) 0.002 M HBr
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Identify the species: HBr is a strong monoprotic acid (one of the hydrohalic acids).
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Find : . …
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