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प्रश्न
Identify the conjugate acid-base pair for the following reaction in an aqueous solution.
\[\ce{HPO^{2-}_4 + SO^{2-}_3 ⇌ PO^{3-}_4 + HSO^-_3}\]
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उत्तर
| Acid (Acid1) |
Conjugate base (Base1) |
Base (Base2) |
Conjugate acid (Acid2) |
|
| Forward reaction | \[\ce{HPO^{2-}_4}\] | \[\ce{PO^{3-}_4}\] | \[\ce{SO^{2-}_3}\] | \[\ce{HSO^{-}_3}\] |
| Backward reaction | \[\ce{HSO^{-}_3}\] | \[\ce{SO^{2-}_3}\] | \[\ce{PO^{3-}_4}\] | \[\ce{HPO^{2-}_4}\] |
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संबंधित प्रश्न
Answer the following in brief :
Ammonia serves as a Lewis base whereas AlCl3 is Lewis acid. Explain.
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Which of the following is a conjugate acid-base pair?
The conjugate acid of \[\ce{HSO^-_4}\] is ____________.
What are Lewis acids and bases? Give two examples for each.
Discuss the Lowry – Bronsted concept of acids and bases.
Identify the conjugate acid-base pair for the following reaction in an aqueous solution.
\[\ce{HS^-_{( aq)} + HF ⇌ F^-_{( aq)} + H2S_{(aq)}}\]
Identify the conjugate acid-base pair for the following reaction in an aqueous solution.
\[\ce{NH^+_4 + CO^{2-}_3 ⇌ NH3 + HCO^-_3}\]
Name one amphoteric solvent.
Identify the conjugate acid - base pair in the following reaction.
\[\ce{H2O + HCl -> H3O+ + Cl-}\]
Define acids according to Bronsted-Lowry theory.
