Q.Match the following species with the corresponding conjugate acid.
Species
Conjugate acid
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Start your 14-day free trial to unlock the full solution →Using the Brønsted–Lowry definition, a conjugate acid is formed when the base accepts a proton (). Matching each species to its conjugate acid gives: (i)→(b), (ii)→(e), (iii)→(c), (iv)→(d).
The Brønsted–Lowry theory defines an acid as a proton donor and a base as a proton acceptor. When a base accepts a proton, it becomes its conjugate acid. The conjugate acid always has one more hydrogen atom and one more positive charge than the original base.
This is the core idea: to find the conjugate acid of any species, simply add one to its formula and adjust the charge accordingly. Let's apply this to each species.
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NH (ammonia)
Ammonia is a well-known base. It accepts a proton () to form the ammonium ion.
The conjugate acid is , which matches option (b).
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HCO (bicarbonate ion)
Bicarbonate can act as a base. Adding one gives carbonic acid.
The conjugate acid is , which matches option (e).
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HO (water)
Water is amphoteric — it can act as a base. When it accepts a proton, it forms the hydronium ion.
The conjugate acid is , which matches option (c).
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HSO (bisulfate ion)
Bisulfate can accept a proton to form sulfuric acid.
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