Consider the following equilibria in aqueous solution: Ag* + Cl- AgCl(aq) K = 2.0 x10 3 AgCI(aq) + CI AgCl2- K = 9.3 x101 AgCI(s) = Ag* + CI- K = 1.8 x10 -10 1. Calculate the numerical value of the equilibrium constant for the reaction AgCI(s) AgCl(aq). 2. Calculate the concentration of AgCl(aq) in equilibrium with excess undissolved solid AgCl. 3. Find the numerical value of K for the reaction AgCl2- AgCl(s) + CIF.

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter5: Introduction To Chemical Equilibrium
Section: Chapter Questions
Problem 5.49E: 5.49. Consider the following equilibrium: What is the effect on the equilibrium of each of the...
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Consider the following equilibria in aqueous solution:
Ag* + Cl- AGCI(aq)
K = 2.0 x10 3
AgCI(aq) + CI= AgCl2
K = 9.3 x10 1
AgCl(s) = Ag* + CI-
K = 1.8 x10 -10
1. Calculate the numerical value of the equilibrium constant for the reaction AgCI(s) AgCl(aq).
2. Calculate the concentration of AgCl(aq) in equilibrium with excess undissolved solid AgCl.
3. Find the numerical value of K for the reaction AgCl2- ABCI(s) + CI.
Transcribed Image Text:Consider the following equilibria in aqueous solution: Ag* + Cl- AGCI(aq) K = 2.0 x10 3 AgCI(aq) + CI= AgCl2 K = 9.3 x10 1 AgCl(s) = Ag* + CI- K = 1.8 x10 -10 1. Calculate the numerical value of the equilibrium constant for the reaction AgCI(s) AgCl(aq). 2. Calculate the concentration of AgCl(aq) in equilibrium with excess undissolved solid AgCl. 3. Find the numerical value of K for the reaction AgCl2- ABCI(s) + CI.
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