What is K a for each compound? Use a calculator when necessary. a. H 2 S p K a = 7.0 b. ClCH 2 COOH p K a = 2.8 c. HCN p K a = 9.1
What is K a for each compound? Use a calculator when necessary. a. H 2 S p K a = 7.0 b. ClCH 2 COOH p K a = 2.8 c. HCN p K a = 9.1
Solution Summary: The author explains that the equilibrium constant of an acid dissociation reaction is large for strong acids and small for weak acids. The value of K_a is calculated by the formula.
What is
K
a
for each compound? Use a calculator when necessary.
a.
H
2
S
p
K
a
=
7.0
b.
ClCH
2
COOH
p
K
a
=
2.8
c.
HCN
p
K
a
=
9.1
Expert Solution
Interpretation Introduction
(a)
Interpretation: The value of Ka for H2S is to be calculated.
Concept introduction: The equilibrium constant of an acid dissociation reaction depends on the strength of an acid involved in the reaction. The Ka value is large for strong acids and small for weak acids.
Acid dissociation constant Ka represents the acidity of an acid in a solution.
For an acid dissociation reaction,
HA+H2O⇌H3O++A−
Ka=[H3O+][A−][HA]
pKa=−logKa
The strength of an acid decreases as the value of pKa increases.
Answer to Problem 2.45P
The value of Ka for H2S is 10−7.
Explanation of Solution
The given value of pKa is 7.0.
The value of Ka is calculated by the formula,
Ka=10−pKa
Substitute the value of pKa in the above formula to calculate the value of Ka.
Ka=10−(7)Ka=10−7
Hence, the value of Ka is 10−7.
Conclusion
The value of Ka for H2S is 10−7.
Expert Solution
Interpretation Introduction
(b)
Interpretation: The value of Ka for ClCH2COOH is to be calculated.
Concept introduction: The equilibrium constant of an acid dissociation reaction depends on the strength of an acid involved in the reaction. The Ka value is large for strong acids and small for weak acids.
Acid dissociation constant Ka represents the acidity of an acid in a solution.
For an acid dissociation reaction,
HA+H2O⇌H3O++A−
pKa=[H3O+][A−][HA]
pKa=−logKa
The strength of an acid decreases as the value of pKa increases.
Answer to Problem 2.45P
The value of Ka for ClCH2COOH is 1.585×10−3.
Explanation of Solution
The given value of pKa is 2.8.
The value of Ka is calculated by the formula,
Ka=10−pKa
Substitute the value of pKa in the above formula to calculate the value of Ka.
Ka=10−(2.8)Ka=0.001585Ka=1.585×10−3
Hence, the value of Ka is 1.585×10−3.
Conclusion
The value of Ka for ClCH2COOH is 1.585×10−3.
Expert Solution
Interpretation Introduction
(c)
Interpretation: The value of Ka for HCN is to be calculated.
Concept introduction: The equilibrium constant of an acid dissociation reaction depends on the strength of an acid involved in the reaction. The Ka value is large for strong acids and small for weak acids.
Acid dissociation constant Ka represents the acidity of an acid in a solution.
For an acid dissociation reaction,
HA+H2O⇌H3O++A−
Ka=[H3O+][A−][HA]
pKa=−logKa
The strength of an acid decreases as the value of pKa increases.
Answer to Problem 2.45P
The value of Ka for HCN is 7.943×10−10.
Explanation of Solution
The given value of pKa is 9.1.
The value of Ka is calculated by the formula,
Ka=10−pKa
Substitute the value of pKa in the above formula to calculate the value of Ka.
Ka=10−(9.1)Ka=8×10−10
Hence, the value of Ka is 8×10−10.
Conclusion
The value of Ka for HCN is 8×10−10.
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