Chemistry for Engineering Students
Chemistry for Engineering Students
3rd Edition
ISBN: 9781285199023
Author: Lawrence S. Brown, Tom Holme
Publisher: Cengage Learning
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Chapter 4, Problem 4.86PAE
Interpretation Introduction

Interpretation: The mass percentage of aluminum in the alloy should be found out if 0.3284 g of H2(g) was produced when a 7.264 g sample of a particular iron-aluminum alloy was dissolved in excess hydrochloric acid.

Concept introduction:

Iron- aluminum alloys possess a property of getting magnetized in the presence of a magnetic field and to get demagnetized in its absence.

When metals above Hydrogen in the reactivity series are reacted with hydrochloric acid, it will result in the metal chloride with bubbles of hydrogen gas.

Expert Solution & Answer
Check Mark

Answer to Problem 4.86PAE

Solution:

Percentage of aluminum in alloy = 12.6 %

.

Explanation of Solution

Given information:

Total mass of Alloy = 7.264 g

Total mass of H2(g) released out = 0.3284 g

Aluminum and iron react with HCl as shown below.

2Al(s)+ 6HCl(aq) 2AlCl3(aq)+ 3H2(g)Fe(s)+ 2HCl(aq)  FeCl2(aq)+ H2(g)

Assuming that,

Mass of Aluminum = m g

Mass of Iron = 7.264 - m g

Stoichiometry of,

Al: H2 = 1: 3/2

Fe: H2 = 1: 1

Because of excess HCl, it is assumed that total alloy reacted.

Therefore,

Reacted number of moles of Al=  m g 27gmo l 1 Reacted number of moles of Fe=  7.264m g 56  gmol 1  Evolved H2(g) mols from total Al mols = (  m/ 27 ) × 3/2 molsEvolved H2(g) mols from total Fe mols = [( 7.264  m)/ 56] × 1 mols  

According to given data,

Evolved H2(g) moles = 0.3284 g / 2 gmol-1

Stoichiometric H2(g) moles = practically evolved H2(g) moles

(m/27)×3/2 mol+ [(7.264  m)/ 56] × 1 mol= 0.3284 g / 2 gmol1(3m /54 ) mol+ [(7.264  m ) / 56] mol        = 0.1642 mol    168 m+(392.25654m)54×56 mol        = 0.1642 mol       114 m       = [0.1642×(54×56)]- 392.256       m        =104.2848114       m        = 0.915 g     

Percentage of aluminum = 0.915 g7.264 g×100%   = 12.6%

Conclusion

Mass percentage of a metal in an alloy can be found out when the total mass of alloy and the mass of hydrogen gas released out when the alloy is reacted with hydrochloric acid is known.

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Chapter 4 Solutions

Chemistry for Engineering Students

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