Q.What will be the conjugate bases for the Brönsted acids: HF, H2SO4 and HCO– 3?
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Start your 14-day free trial to unlock the full solution →The conjugate base of a Brønsted acid is what remains after the acid donates a proton (). For HF, it is ; for , it is ; and for , it is .
The Brønsted-Lowry theory defines an acid as a proton donor. When an acid gives away a proton (), it transforms into its conjugate base — the species that can potentially accept a proton back. The relationship is simple: conjugate base = acid minus one .
The trick is to subtract exactly one proton, and to adjust the charge correctly. A proton has a charge of , so removing it reduces the positive charge (or increases the negative charge) by one unit.
Let’s apply this to each acid.
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HF (Hydrofluoric acid)
Remove one from .
The fluorine atom retains the electron pair that was shared with the proton, giving it a negative charge.
Conjugate base: (fluoride ion).
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(Sulfuric acid)
This is a diprotic acid — it can donate two protons, but we only remove one to get the conjugate base.
The hydrogen sulfate ion () is the conjugate base of sulfuric acid.
Watch outA common mistake is to remove both protons at once, giving . That is the conjugate base of , not of . Always remove exactly one for the first conjugate base. …
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