
Concept explainers
(a)
Interpretation:
A 35.0 mL solution of
Concept Introduction:
Solubility product constant:
The equilibrium constant of a more soluble ionic compound in water at the higher solubility is known as solubility product constant.
The equilibrium constant of more soluble ionic compound is given by
Ion product:
The multiplication of concentrations of ions which are raised to the power of number of respective ions present in the molecular formula. This gives the ion product.
Precipitation occurs when solution is supersaturated,
Precipitation will not occurs when solution is saturated and in equilibrium,
Precipitation will not occurs when solution is unsaturated,
(b)
Interpretation:
A 35.0 mL solution of
Concept Introduction:
Solubility product constant:
The equilibrium constant of a more soluble ionic compound in water at the higher solubility is known as solubility product constant.
The equilibrium constant of more soluble ionic compound is given by
Ion product:
The multiplication of concentrations of ions which are raised to the power of number of respective ions present in the molecular formula. This gives the ion product.
Precipitation occurs when solution is supersaturated,
Precipitation will not occurs when solution is saturated and in equilibrium,
Precipitation will not occurs when solution is unsaturated,
(c)
Interpretation:
A 35.0 mL solution of
Concept Introduction:
Solubility product constant:
The equilibrium constant of a more soluble ionic compound in water at the higher solubility is known as solubility product constant.
The equilibrium constant of more soluble ionic compound is given by
Ion product:
The multiplication of concentrations of ions which are raised to the power of number of respective ions present in the molecular formula. This gives the ion product.
Precipitation occurs when solution is supersaturated,
Precipitation will not occurs when solution is saturated and in equilibrium,
Precipitation will not occurs when solution is unsaturated,

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Chapter 19 Solutions
Chemistry: The Molecular Nature of Matter and Change - Standalone book
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