Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
Question
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Chapter 24, Problem 15QP
Interpretation Introduction

Interpretation:

The balanced chemical equation for the reaction of CaH2

and H2O

is to be shown and mass of CaH2

required to produce the given amount of H2

is to be calculated.

Concept introduction:

The balanced chemical equation must contain an equal number of similar atoms on each side.

The Ideal gas equation is given as:

PV=nRT

Here, P,V,n,R,andT

are pressure, volume, number of moles, universal gas constant, and temperature, respectively.

Expert Solution & Answer
Check Mark

Answer to Problem 15QP

Solution: The reaction is as follows:

CaH2+2H2OCa(OH)2+2H2

22.7gCaH2

Explanation of Solution

Given information:

Temperature 200C

=

Pressure 746mmHg

Volume of gas 26.6 L

Convert temperature Celsius to Kelvin

200C=20+273=293K

The reaction of CaH2

and H2O

produces Ca(OH)2

and hydrogen gas.

The balanced chemical equation of CaH2

and H2O

is written as follows:

CaH2+2H2OCa(OH)2+2H2

Hence, the balanced equation is stated.

The Ideal gas equation is given as:

PV=nRT

Rearrange above expression and substitute the value 0.0821L atm mol1 K1 for R, 293K

for T, 746mmHg

for P and 26.4L

for V in the expression as:

n=PVRT

n=(746mmHg×1atm760mmHg×26.4L0.0821L atm mol1 K1×293K)=1.08molH2

The molar mass of CaH2=42.10g.

The mass of CaH2

required in grams to produce 1.08molH2

by the mole ratio from the balanced chemical equation is calculated as follows:

mCaH2=(1.08molH2)(1molCaH22molH2)(42.10gCaH21molCaH2)=22.7g

Conclusion

The balanced chemical equation for the reaction of CaH2

and H2O

is written as required, and the mass of CaH2

required to produce the given amount of H2 is 22.7 g .

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