Introduction to Chemistry
Introduction to Chemistry
4th Edition
ISBN: 9781259288722
Author: BAUER
Publisher: MCG
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Chapter 11, Problem 139QP

(a)

Interpretation Introduction

Interpretation:

Whether 1.5M KBr is expected to have the lowest freezing point or not is to be discussed, and the effects of this solution on osmotic pressure, vapor pressure and boiling point are to be compared.

(a)

Expert Solution
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Explanation of Solution

A solution that gives the highest number of particles has the lowest freezing point. 1.5m KBr dissociates in water in the following way:

KBrsK+aq+Braq

One formula unit of 1.5M KBr breaking into two ions is less than those of 1.5M Al(NO3)3 . So, 1.5M KBr will have a higher freezing point than 1.5M Al(NO3)3 .

(b)

Interpretation Introduction

Interpretation:

Whether 1.5M Al(NO3)3 is expected to have the lowest freezing point or not is to be discussed, and the effects of this solution on osmotic pressure, vapor pressure and boiling point are to be compared.

(b)

Expert Solution
Check Mark

Explanation of Solution

1.5M Al(NO3)3 dissociates in water in the following way:

Al(NO3)3sAl3+aq+3NO3aq

One formula unit of 1.5M Al(NO3)3 breaks into four ions, which is the least among all the given solutions. So, 1.5M Al(NO3)3 will have the lowest freezing point.

(c)

Interpretation Introduction

Interpretation:

Whether 1.5M Na2CO3 is expected to have the lowest freezing point or not is to be discussed, and the effects of this solution on osmotic pressure, vapor pressure and boiling point are to be compared.

(c)

Expert Solution
Check Mark

Explanation of Solution

1.5M Na2CO3 dissociates in water by the following way:

Na2CO3s2Na+aq+CO3aq

One formula unit of 1.5M Na2CO3 breaking into three ions is less than those of 1.5M Al(NO3)3 . So, 1.5M Na2CO3 will have a higher freezing point than 1.5M Al(NO3)3 .

(d)

Interpretation Introduction

Interpretation:

Whether 1.5M CH3OH is expected to have the lowest freezing point or not is to be discussed, and the effects of this solution on osmotic pressure, vapor pressure and boiling point are to be compared.

(d)

Expert Solution
Check Mark

Explanation of Solution

The given 1.5M CH3OH aqueous solution dissociates in water in the following way:

CH3OHlCH3OHaq

One formula unit of 1.5M CH3OH does not dissociate. So, 1.5M CH3OH will have a higher freezing point than that of 1.5M Al(NO3)3 .

(e)

Interpretation Introduction

Interpretation:

Whether 1.5M MgCl2 is expected to have a lowest freezing point or not is to be discussed, and the effects of this solution on osmotic pressure, vapor pressure and boiling point are to be compared.

(e)

Expert Solution
Check Mark

Explanation of Solution

1.5M MgCl2 dissociates in water in the following way:

MgCl2sMg2+aq+2Claq

One formula unit of 1.5M MgCl2 breaking into three ions is less than those of 1.5M Al(NO3)3 . So, 1.5M MgCl2 will have a higher freezing point than 1.5M Al(NO3)3 .

As compared to pure water, each solution causes an increase in boiling point and osmotic pressure and a decrease in freezing point and vapor pressure. The order of the increasing effects on these properties is as follows:

d<a<c=e<b

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Chapter 11 Solutions

Introduction to Chemistry

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Solutions: Crash Course Chemistry #27; Author: Crash Course;https://www.youtube.com/watch?v=9h2f1Bjr0p4;License: Standard YouTube License, CC-BY