Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 11, Problem 143AP

A closed vessel of volume 9.6 L contains 2.0 g of water. Calculate the temperature ( in ºC ) at which only half of the water remains in the liquid phase. (See Table 10.5 for vapor pressures of water at different temperatures.)

Expert Solution & Answer
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Interpretation Introduction

Interpretation:

The temperature, at which half of the water remains in the liquid phase in a closed container, is to be calculated.

Concept introduction:

The ideal gas equation is as follows:

P=nRTV

Here, P

is the pressure, R

is the ideal gas constant, T

is the temperature, and V

is the volume.

Answer to Problem 143AP

Solution: 55°C or 328 K.

Explanation of Solution

Given information: Volume of the vessel is 9.6 L, mass of water is 2.0 g.

According to the ideal gas equation;

P=nRTV

The initial mass of water is 2.0 g. Mass of water in the liquid state is 1.0 g. Thus, water in the gaseous state is 1.0 g.

Convert 1.0 g

mass to moles by multiplying 1.0 g

with the conversion factor, 1 mol18.02 g, and substitute it for n

;0.0821L.atm/K.mol

for R

; and 9.6 L

for V

in the ideal gas equation as follows:

P=0.0821L.atm/K.mol(1.0 g)×(mol18.02 g)×T(K)9.6 LP=4.7×104 T.atm

As, 1 atm=760 mm Hg

Multiply (4.7×104) Tatm

with the conversion factor 760 mm Hg1 atm as follows:

(4.7×104)Tatm×(760 mm Hgatm)=0.36 Tmm Hg

Assume temperature equal to 40°C or 313 K, 45°C

or 318 K, 50°C

or 323 K, 55°C or 328 K, and 60°C or 333 K, 65°C or 338 K, the vapour pressure is as follows:

P=0.36×313 mmHg=112.7 mmHgP=0.36×318 mmHg=114.5 mmHgP=0.36×323 mmHg=116.3 mmHg

P=0.36×328 mmHg=118.1 mmHgP=0.36×333 mmHg=119.9 mmHgP=0.36×338 mmHg=121.7 mmHg

Compare this with the actual vapour pressure at these temperatures, as follows:

P=55.3 mmHg at 40°CP=71.9 mmHg at 45°CP=92.5 mmHg at 50°C

P=118.0 mmHg at 55°CP=149.4 mmHg at 60°CP=187.5 mmHg at 65°C

The calculated pressure at 55°C or 328 K, is close to the actual pressure at 55°C or 328 K.

Conclusion

The temperature at which half of the water remains in the liquid phase in a closed container containing 2.0 g

water, is 55°C or 328 K.

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Chapter 11 Solutions

Chemistry

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