General Chemistry
General Chemistry
11th Edition
ISBN: 9781305859142
Author: Ebbing, Darrell D., Gammon, Steven D.
Publisher: Cengage Learning,
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Chapter 15, Problem 15.85QP

Write a reaction for each of the following in which the species acts as a Brønsted acid. The equilibrium should favor the product side.

  1. a H2O2
  2. b HCO3
  3. c NH4
  4. d H2PO4
Expert Solution & Answer
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Interpretation Introduction

Interpretation:

A reaction for each of the given species acts as a Bronsted acid with equilibrium should favor the product side has to be written.

Concept introduction:

Acid:

According to Bronsted-Lowry theory, a species which donates a proton in a proton transfer-reaction is said to be an acid.

Base:

According to Bronsted-Lowry theory, a species which accepts a proton in a proton transfer-reaction is said to be base.

Answer to Problem 15.85QP

(a)

The reaction for each of the given species acts as Bronsted acid is

H2O2(aq) + S2-(aq) HO2-(aq) + HS-(aq)

(b)

The reaction for each of the given species acts as Bronsted acid is

HCO3-(aq) + OH-(aq) CO32-(aq) + H2O(l)

(c)

The reaction for each of the given species acts as Bronsted acid is

NH4+(aq) + CN-(aq)  NH3(aq) + HCN(aq)

(d)

The reaction for each of the given species acts as Bronsted acid is

H2PO4-(aq) + OH-(aq) HPO42-(aq) + H2O(l)

Explanation of Solution

(a)

According to Bronsted-Lowry theory, the equilibrium reaction for the reaction between water and  S2- ion is represented as follows.

H2O2(aq) + S2-(aq) HO2-(aq) + HS-(aq)

(b)

According to Bronsted-Lowry theory, the equilibrium reaction for the reaction between  HCO3- and OH- ion is represented as follows.

HCO3-(aq) + OH-(aq) CO32-(aq) + H2O(l)

(c)

According to Bronsted-Lowry theory, the equilibrium reaction for the reaction between NH4+ and CN- ion is represented as follows.

NH4+(aq) + CN-(aq)  NH3(aq) + HCN(aq)

(d)

According to Bronsted-Lowry theory, the equilibrium reaction for the reaction between H2PO4- and OH- ion is represented as follows.

H2PO4-(aq) + OH-(aq) HPO42-(aq) + H2O(l)

Conclusion

A reaction for each of the given species acts as a Bronsted acid with equilibrium should favor the product side was written.

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Chapter 15 Solutions

General Chemistry

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