Reacting GeO2 with H2O forms the tetraprotic (four H+ ions) acid, H4GeO4. On a piece of paper, write down the chemical equations for the four acid dissociation equilibria. Match each chemical species below with its correct role in this polyprotic acid system. H4GeO4 H3GeO4 - H2GeO4 2- HGeO4 3- GeO4 4- [ Choose ] the conjugate base of H3GeO4 - the acid in the second H+ dissociation this species' conjugate acid is HGeO4 3- the conjugate base in the third H+ dissociation the conjugate acid of H3GeO4 -
Reacting GeO2 with H2O forms the tetraprotic (four H+ ions) acid, H4GeO4. On a piece of paper, write down the chemical equations for the four acid dissociation equilibria. Match each chemical species below with its correct role in this polyprotic acid system. H4GeO4 H3GeO4 - H2GeO4 2- HGeO4 3- GeO4 4- [ Choose ] the conjugate base of H3GeO4 - the acid in the second H+ dissociation this species' conjugate acid is HGeO4 3- the conjugate base in the third H+ dissociation the conjugate acid of H3GeO4 -
General Chemistry - Standalone book (MindTap Course List)
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Chapter16: Acid-base Equilibria
Section: Chapter Questions
Problem 16.130QP: Malic acid is a weak diprotic organic acid with Ka1 = 4.0 104 and Ka2 = 9.0 105. a Letting the...
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Reacting GeO2 with H2O forms the tetraprotic (four H+ ions) acid, H4GeO4. On a piece of paper, write down the chemical equations for the four acid dissociation equilibria. Match each chemical species below with its correct role in this polyprotic acid system.
H4GeO4
H3GeO4 -
H2GeO4 2-
HGeO4 3-
GeO4 4-
[ Choose ] the conjugate base of H3GeO4 - the acid in the second H+ dissociation this species' conjugate acid is HGeO4 3- the conjugate base in the third H+ dissociation the conjugate acid of H3GeO4 -
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