The pH range of an Indicator can be O computed from the difference of its pKb and pka. O The acid dissociation constant, Ka is a factor in the determination of completeness of reactions and/or feasibility of titration. For a system of a weak base (analyte) and a strong acid (titrant) O with the same analytical concentration, the pH at the equivalence point would be acidic In acid-base neutralisation O reactions, the pH at the equivalence point is always 7.0

Fundamentals Of Analytical Chemistry
9th Edition
ISBN:9781285640686
Author:Skoog
Publisher:Skoog
Chapter13: Titrations In Analytical Chemistry
Section: Chapter Questions
Problem 13.5QAP
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Which is False?

O
The pH range of an Indicator can be
computed from the difference of its
pKb and pka.
O
The acid dissociation constant, Ka
is a factor in the determination of
completeness of reactions and/or
feasibility of titration.
For a system of a weak base
(analyte) and a strong acid (titrant)
O with the same analytical
concentration, the pH at the
equivalence point would be acidic
In acid-base neutralisation
reactions, the pH at the equivalence
point is always 7.0
Transcribed Image Text:O The pH range of an Indicator can be computed from the difference of its pKb and pka. O The acid dissociation constant, Ka is a factor in the determination of completeness of reactions and/or feasibility of titration. For a system of a weak base (analyte) and a strong acid (titrant) O with the same analytical concentration, the pH at the equivalence point would be acidic In acid-base neutralisation reactions, the pH at the equivalence point is always 7.0
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