
Concept explainers
A volume of 75 mL of 0.060 M NaF is mixed with 25 mL of

Interpretation:
Thefinal concentration of
Concept introduction:
The amount of solute dissolved in a given volume of the solvent to form a saturated solution at a given temperature is termed as solubility of the solute in the solvent, at that temperature.
The solubility product of the sparingly soluble salt is given as the product of the concentration of the ions raised to the power equal to the number of times the ion occurs in the equation, after dissociation of the electrolyte.
Number of moles of solute dissolved per litre of solution is called molar solubility.
The number of moles of compound are calculated by the expression:
The mole is converted into the concentration by dividing with volume.
At a given temperature, the product of molar concentrations of the ions of a salt present in the solution is known as the solubility product of the salt. It is represented by
Higher is the value of solubility product of a salt, higher is its solubility.
The presence of common ions in the solution decreases the solubility of a given compound.
For a general reaction:
The solubility product can be calculated by the expression as:
Here,
The molar solubility of a compound is directly proportional to the number of molecules present in the given amount of solvent.
Answer to Problem 58QP
Solution: The final concentration of
Explanation of Solution
Given information: The solubility product of
The equation of ionic reactionis as follows:
Moles of
Substitute the value of concentration and volume in the above expression.
Moles of
Substitute the value of concentration and volume in the above expression,
Using the stoichiometry of the balanced equation, moles of
The limiting reagent of the reactionis calculated as follows:
The stoichiometry coefficient of
The ratio is as follows:
The stoichiometry coefficient of
The ratio is as follows:
Compare both ratios. The one with the lowest ratio is the limiting reagent.
Thus,
Summarize the moles at the equilibrium as follows:
Total volume of the solution is
The mole is converted into the concentration by dividing with volume.
Summarise the concentration at the equilibrium as follows:
Consider s be the molar solubility.
The equilibrium expression for a reaction is written as:
Here,
Substitute the value of
The value s is very small as compared to 0.0115. It can be neglected.
Concentration of
Concentration of
Both sodium and nitrate ions are the spectator ions because it does not affect the equilibrium. It exits in same form in both side of the reaction.
Concentration of
The concentration of
The final concentration of
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