EBK CHEMISTRY: PRINCIPLES AND REACTIONS
EBK CHEMISTRY: PRINCIPLES AND REACTIONS
8th Edition
ISBN: 9780100547964
Author: Hurley
Publisher: YUZU
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Chapter 13, Problem 52QAP

Penicillin ( MM = 356 g / mol ) , an antibiotic often used to treat bacterial infections, is a weak acid. Its Ka is 1.7 × 10 3 . Calculate [H+] in solutions prepared by adding enough water to the following to make 725 mL.

(a) 0.187 mol

(b) 127 g

Expert Solution
Check Mark
Interpretation Introduction

(a)

Interpretation:

The concentration of hydrogen ion in the given solution should be calculated.

Concept introduction:

The dissociation reaction of a weak acid is represented as follows:

HBH++B

The expression for the acid dissociation constant will be as follows:

Ka=[H+][B][HB]

Here, [H+] is equilibrium concentration of hydrogen ion, [B] is equilibrium concentration of conjugate base and [HB] is the equilibrium concentration of weak acid.

Answer to Problem 52QAP

0.020 M

Explanation of Solution

The acid dissociation constant of penicillin is 1.7×103. The volume of solution is 725 mL and number of moles of the acid is 0.187 mol.

The molarity of penicillin can be calculated as follows:

M=nV(L)

Putting the values,

M=0.187 mol725 mL(103 L1 mL)=0.258 M

Thus, the concentration of penicillin is 0.258 M.

The molecular formula of penicillin is C16H18N2O4S.

The concentration all the species can be calculated using the ICE table as follows:

      C16H18N2O4SC16H17N2O4S+H+I     0.258                    -               -C     -x                      x             xE     0.258-x             x             x

The expression for Ka is as follows:

Ka=[C4H3N2O3][H+][HC4H3N2O3]

Putting the values,

1.7×103=(x)(x)(0.258x)

On rearranging,

1.7×103(0.258)1.7×103x=x24.386×1041.7×103x=x2

Or,

x2+1.7×103x4.386×104=0

Comparing this with the general quadratic equation as follows:

ax2+bxc=0

Solving the quadratic equation,

x=b±b24ac2a

Putting the values,

x=1.7×103±(1.7×103)24(1)(4.386×104)2(1)=1.7×103±2.89×106+1.75×1032(1)=1.7×103±0.0422

x=0.020,0.022

Since, the value of x cannot be negative thus, the value of x will be 0.020.

From the ICE table, it is equal to the concentration of hydrogen ion thus,

[H+]=0.020

Therefore, the concentration of hydrogen ion is 0.020 M.

Expert Solution
Check Mark
Interpretation Introduction

(b)

Interpretation:

The concentration of hydrogen ion in the given solution should be calculated.

Concept introduction:

The dissociation reaction of a weak acid is represented as follows:

HBH++B

The expression for the acid dissociation constant will be as follows:

Ka=[H+][B][HB]

Here, [H+] is equilibrium concentration of hydrogen ion, [B] is equilibrium concentration of conjugate base and [HB] is the equilibrium concentration of weak acid.

Answer to Problem 52QAP

0.02805 M

Explanation of Solution

The mass of penicillin is given as 127 g. The molecular formula of the penicillin is C16H18N2O4S thus, its molar mass is 356 g/mol.

Now, from mass and molar mass of the C16H18N2O4S, its number of moles can be calculated as follows:

n=mM=127 g356 g/mol=0.3567 mol

Now, the molarity of C16H18N2O4S can be calculated as follows:

M=nV(L)

Putting the values,

M=0.3567 mol725 mL(103 L1 mL)=0.492 M

Thus, the concentration of C16H18N2O4S is 0.492 M.

The concentration all the species can be calculated using the ICE table as follows:

      C16H18N2O4SC16H17N2O4S+H+I     0.492                    -               -C     -x                      x             xE     0.492-x             x             x

The expression for Ka is as follows:

Ka=[C4H3N2O3][H+][HC4H3N2O3]

Putting the values,

1.7×103=(x)(x)(0.492x)

On rearranging,

1.7×103(0.492)1.7×103x=x28.364×1041.7×103x=x2

Or,

x2+1.7×103x8.364×104=0

Comparing this with the general quadratic equation as follows:

ax2+bxc=0

Solving the quadratic equation,

x=b±b24ac2a

Putting the values,

x=1.7×103±(1.7×103)24(1)(8.364×104)2(1)=1.7×103±2.89×106+3.3456×1032(1)=1.7×103±0.05782

x=0.02805,0.03

Since, the value of x cannot be negative thus, the value of x will be 0.02805.

From the ICE table, it is equal to the concentration of hydrogen ion thus,

[H+]=0.02805

Therefore, the concentration of hydrogen ion is 0.02805 M.

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Chapter 13 Solutions

EBK CHEMISTRY: PRINCIPLES AND REACTIONS

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