Chemistry
Chemistry
4th Edition
ISBN: 9780393124170
Author: Thomas R. Gilbert
Publisher: NORTON
Question
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Chapter 22, Problem 22.55QP
Interpretation Introduction

Interpretation: The pH value of 1.00×103M solution of selenocysteine is to be calculated.

Concept introduction: The negative logarithm of the hydrogen ion concentration of a solution is known as pH .

The pH is calculated by the formula,

pH=log[H+]

To determine: The pH value of 1.00×103M solution of selenocysteine.

Expert Solution & Answer
Check Mark

Answer to Problem 22.55QP

Solution

The pH value of 1.00×103M solution of selenocysteine is 3.11_ .

Explanation of Solution

Explanation

Given

The concentration of solution of selenocysteine is 1.00×103M .

The value of pKa1 is 2.21 .

The value of pKa2 is 5.43 .

The negative logarithm of the hydrogen ion concentration of a solution is known as pH .

The pH is calculated by the formula,

pH=log[H+] (1)

Where,

  • [H+] is concentration of H+ ions.

The negative logarithm to the equilibrium constant for the acidic reaction is known as pKa . It is calculated by the formula,

pKa=logKa

Where,

  • Ka is equilibrium constant for the acidic reaction.

The value of Ka is calculated by the formula,

Ka=10pKa (2)

The reaction of selenocysteine in ionized form is,

Selenocysteine(aq)H+(aq)+Selenocysteine(aq)

The equilibrium constant for the above reaction is,

Ka=[H+][Selenocysteine][Selenocysteine] (3)

Where,

  • Ka is equilibrium constant for the acidic reaction.
  • [H+] is concentration of H+ ions.
  • [Selenocysteine] is concentration of selenocysteine ions.
  • [Selenocysteine] is concentration of selenocysteine.

The value of pKa is calculated by the formula,

pKa=pKa2pKa1

Substitute the given values of pKa1 and pKa2 in the above expression.

pKa=5.432.21=3.22

Substitute the value of pKa in equation (2) to get the value of Ka .

Ka=103.22=6.03×104

In the beginning of the reaction,

The initial concentration of selenocysteine is 1.00×103M .

The initial concentration of selenocysteine ions is 0 .

The initial concentration of H+ ions is 0 .

At equilibrium,

The moles of reactant (selenocysteine) that is used up is assumed to be x .

Therefore, concentration of selenocysteine is,

[Selenocysteine]=(1.00×103x)M

The value of x is very small in comparison with 1.00×103M . So,

[Selenocysteine]=(1.00×103x)M1.00×103M

The concentration of product is assumed to be x that is increased.

[H+]=[Selenocysteine]=xM

The table to show concentration of reactant and products

[Selenocysteine]M[Selenocysteine]M[H+]MIntial1.00×10300Changex+x+xEqulibrium1.00×103x1.00×103xx

Substitute the values of Ka , [Selenocysteine] , [Selenocysteine] and [H+] in the equation (3) .

6.03×104=(x)(x)1.00×103Mx=7.77×104M

Therefore, concentration of H+ is 7.77×104M .

Substitute the value of concentration of H+ in equation (1) to calculate the value of pH .

pH=log(7.77×104)=3.11

Therefore, pH value of 1.00×103M solution of selenocysteine is 3.11_ .

Conclusion

The pH value of 1.00×103M solution of selenocysteine is 3.11_ .

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Chapter 22 Solutions

Chemistry

Ch. 22 - Prob. 22.6VPCh. 22 - Prob. 22.7VPCh. 22 - Prob. 22.8VPCh. 22 - Prob. 22.9VPCh. 22 - Prob. 22.10VPCh. 22 - Prob. 22.11QPCh. 22 - Prob. 22.12QPCh. 22 - Prob. 22.13QPCh. 22 - Prob. 22.14QPCh. 22 - Prob. 22.15QPCh. 22 - Prob. 22.16QPCh. 22 - Prob. 22.17QPCh. 22 - Prob. 22.18QPCh. 22 - Prob. 22.19QPCh. 22 - Prob. 22.20QPCh. 22 - Prob. 22.21QPCh. 22 - Prob. 22.22QPCh. 22 - Prob. 22.23QPCh. 22 - Prob. 22.24QPCh. 22 - Prob. 22.25QPCh. 22 - Prob. 22.26QPCh. 22 - Prob. 22.27QPCh. 22 - Prob. 22.28QPCh. 22 - Prob. 22.29QPCh. 22 - Prob. 22.30QPCh. 22 - Prob. 22.31QPCh. 22 - Prob. 22.32QPCh. 22 - Prob. 22.33QPCh. 22 - Prob. 22.34QPCh. 22 - Prob. 22.35QPCh. 22 - Prob. 22.36QPCh. 22 - Prob. 22.37QPCh. 22 - Prob. 22.38QPCh. 22 - Prob. 22.39QPCh. 22 - Prob. 22.40QPCh. 22 - Prob. 22.41QPCh. 22 - Prob. 22.42QPCh. 22 - Prob. 22.43QPCh. 22 - Prob. 22.44QPCh. 22 - Prob. 22.45QPCh. 22 - Prob. 22.46QPCh. 22 - Prob. 22.47QPCh. 22 - Prob. 22.48QPCh. 22 - Prob. 22.49QPCh. 22 - Prob. 22.50QPCh. 22 - Prob. 22.51QPCh. 22 - Prob. 22.52QPCh. 22 - Prob. 22.53QPCh. 22 - Prob. 22.54QPCh. 22 - Prob. 22.55QPCh. 22 - Prob. 22.56QPCh. 22 - Prob. 22.57QPCh. 22 - Prob. 22.58QPCh. 22 - Prob. 22.59QPCh. 22 - Prob. 22.60QPCh. 22 - Prob. 22.61QPCh. 22 - Prob. 22.62QPCh. 22 - Prob. 22.63QPCh. 22 - Prob. 22.64QPCh. 22 - Prob. 22.65QPCh. 22 - Prob. 22.66QPCh. 22 - Prob. 22.67QPCh. 22 - Prob. 22.68QPCh. 22 - Prob. 22.69QPCh. 22 - Prob. 22.70QPCh. 22 - Prob. 22.71QPCh. 22 - Prob. 22.72QPCh. 22 - Prob. 22.73QPCh. 22 - Prob. 22.74QPCh. 22 - Prob. 22.75QPCh. 22 - Prob. 22.76QPCh. 22 - Prob. 22.77QPCh. 22 - Prob. 22.78QPCh. 22 - Prob. 22.79QPCh. 22 - Prob. 22.80QPCh. 22 - Prob. 22.81QPCh. 22 - Prob. 22.82QPCh. 22 - Prob. 22.83QPCh. 22 - Prob. 22.84QPCh. 22 - Prob. 22.85QPCh. 22 - Prob. 22.86QPCh. 22 - Prob. 22.87QPCh. 22 - Prob. 22.88QPCh. 22 - Prob. 22.89QPCh. 22 - Prob. 22.90QPCh. 22 - Prob. 22.91QPCh. 22 - Prob. 22.92QPCh. 22 - Prob. 22.93QPCh. 22 - Prob. 22.94QPCh. 22 - Prob. 22.95QPCh. 22 - Prob. 22.96QPCh. 22 - Prob. 22.97QPCh. 22 - Prob. 22.98QPCh. 22 - Prob. 22.99QPCh. 22 - Prob. 22.100QP
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