(a) Interpretation: The molar solubility of AgI in pure water is to be calculated. Concept introduction: Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby K sp . Consider A x B y an ionic compound. Its dissociation occurs as: A x B y ⇌ x A y + + y A x − The expression for its K sp is as follows: K sp = [ A y + ] x [ B x − ] y
(a) Interpretation: The molar solubility of AgI in pure water is to be calculated. Concept introduction: Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby K sp . Consider A x B y an ionic compound. Its dissociation occurs as: A x B y ⇌ x A y + + y A x − The expression for its K sp is as follows: K sp = [ A y + ] x [ B x − ] y
Solution Summary: The author explains the molar solubility of AgI in pure water.
The molar solubility of AgI in pure water is to be calculated.
Concept introduction:
Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby Ksp. Consider AxBy an ionic compound. Its dissociation occurs as:
AxBy⇌xAy++yAx−
The expression for its Ksp is as follows:
Ksp=[Ay+]x[Bx−]y
Interpretation Introduction
(b)
Interpretation:
The molar solubility of AgI in 0.10M
NaCN is to be calculated.
Concept introduction:
Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denoted by Ksp. Consider AxBy is an ionic compound. Its dissociation occurs as:
AxBy⇌xAy++yAx−
The expression for its Ksp is as follows:
Ksp=[Ay+]x[Bx−]y
A complex ion is ion that contains a metal cation bonded to one or more small ions. The formation of complex ion is generally a stepwise procedure and each step has its equilibrium constant. The stability of complex ion is measured by formation constant (Kf).
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Determine the pH of solution of HC3H5O2 By constructing an ICE table writing the equilibrium constant expression, and using this information to determine the pH. The Ka of HC3H5O2 is 1.3 x 10-5
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell