INTRODUCTION TO CHEMISTRY-ACCESS
INTRODUCTION TO CHEMISTRY-ACCESS
5th Edition
ISBN: 9781260518542
Author: BAUER
Publisher: MCG
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Chapter 11, Problem 138QP

(a)

Interpretation Introduction

Interpretation:

Whether the statement, “ 0.0500 mol of K2SO4 completely reacts with 0.0250 mol of AgNO3 â€�, describes the given reaction or not is to be determined and, if not, the statement is to be modified such that it does.

(a)

Expert Solution
Check Mark

Explanation of Solution

The reaction between silver nitrate and potassium sulphate forms the precipitate of aluminium sulphate and soluble potassium nitrate.

2AgNO3(aq)+K2SO4(aq)Ag2SO4(s)+2KNO3(aq)

So, from the mole ratio of the above balanced equation, it can be conclude that 2mol of AgNO3 will react with 1mol of K2SO4 to give 1mol of Ag2SO4 and 2mol of KNO3 precipitates, which are soluble in water.

The moles of AgNO3 present in 25mL of 1MAgNO3 solution is:

mol AgNO3=25.0 mL AgNO3×1L1000mL×1.00molL AgNO3=0.0250mol AgNO3

The moles of K2SO4 present in 25mL of 2MK2SO4 solution is:

mol K2SO4=25.0 mL K2SO4×1L1000mL×2.00molL K2SO4=0.0500mol K2SO4

So, from the mole ratio of the reaction, it can be stated that 0.0250mol AgNO3 will react with 0.0125mol K2SO4 0.0250mol K2SO4/2 .

The given statement, “ 0.0500mol of K2SO4 completely reacts with 0.0250mol of AgNO3 �, is incorrect because a sufficient amount of AgNO3 is not present in 25mL of 1MAgNO3 to react completely with 0.0500mol of K2SO4 .

The corrected statement is “ 0.0125mol of K2SO4 completely reacts with 0.0250mol of AgNO3 solution�.

(b)

Interpretation Introduction

Interpretation:

Whether the statement, “ 0.0125mol of Ag2SO4 should be formed as a precipitate�, describes the given reaction or not is to be determined and, if not, the statement is to be modified such that it does.

(b)

Expert Solution
Check Mark

Explanation of Solution

From the above calculation it is clear that given statement is correct. From the mole ratio of the balanced equation 1 , it can be concluded that 1mol of K2SO4 will produce 1mol of Ag2SO4 . Since 0.0125mol of K2SO4 takes part in the reaction, it will produce 0.0125mol of Ag2SO4 . Hence, the statement is correct.

(c)

Interpretation Introduction

Interpretation:

Whether the statement, “ 0.100mol of aqueous KNO3 should be produced�, describes the given reaction or not is to be determined and, if not, the statement is to be modified such that it does.

(c)

Expert Solution
Check Mark

Explanation of Solution

The given statement, “ 0.100mol of aqueous KNO3 should be produced�, is incorrect. According to reaction 1 , the number of moles of KNO3 produced will be:

mol KNO3=0.0250 mol AgNO3×2 mol KNO32 mol AgNO3=0.0250 mol KNO3

The corrected statement is “ 0.0250mol of aqueous KNO3 will be produced�.

(d)

Interpretation Introduction

Interpretation:

Whether the statement, “the final reaction mixture will contain the products and unreacted AgNO3 �, describes the given reaction or not is to be determined and, if not, the statement is to be modified such that it does.

(d)

Expert Solution
Check Mark

Explanation of Solution

The given statement is incorrect because all of the AgNO3 will be consumed during the course of the reaction and unreacted K2SO4 will remain in the solution.

The corrected statement is “the final reaction mixture will contain the products and unreacted K2SO4 �.

(e)

Interpretation Introduction

Interpretation:

Whether the statement, “ 0.0250mol of K2SO4 remains unreacted�, describes the given reaction or not is to be determined and, if not, the statement is to be modified such that it does.

(e)

Expert Solution
Check Mark

Explanation of Solution

The given statement is incorrect because the unreacted K2SO4 will be of 0.0375mol 0.0500mol0.0125mol , and not 0.0250mol .

Therefore, the corrected statement is “ 0.0375mol of K2SO4 remains unreacted�.

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Chapter 11 Solutions

INTRODUCTION TO CHEMISTRY-ACCESS

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