Solubility Equilibria of Sparingly Soluble Salts
CHXI07:EQUILIBRIUM

314939 Assertion :
\({\text{NaCl}}\) is precipitated when \(\mathrm{HCl}\) gas is passed in a saturated solution of \(\mathrm{NaCl}\).
Reason :
\(\mathrm{HCl}\) is a strong acid.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI07:EQUILIBRIUM

314940 Solubility of \(\mathrm{Ag}_{2} \mathrm{CrO}_{4}\) is decreased in the presence of

1 \(\mathrm{AgNO}_{3}\)
2 \(\mathrm{AgCl}\)
3 \(\mathrm{BaCrO}_{4}\)
4 \(\mathrm{PbCrO}_{4}\)
CHXI07:EQUILIBRIUM

314941 The solubility of \({\text{AgI}}\) in \({\text{NaI}}\) solution is less than that in pure water, because

1 the temperature of the solution decreases
2 solubility product of \({\text{AgI}}\) is less than that of \({\text{NaI}}\)
3 of common ion effect
4 \({\text{AgI}}\) forms complex with \({\text{NaI}}\)
CHXI07:EQUILIBRIUM

314942 \({\text{MY}}\), and \({\text{N}}{{\text{Y}}_{\text{3}}}\) two nearly insoluble salts, have the same \({{\rm{K}}_{{\rm{SP}}}}\) values of \(6.2 \times 10^{-13}\) at room temperature. Which statement would be true in regard to \(\mathrm{MY}\) and \(\mathrm{NY}_{3}\) ?

1 The addition of the salt of \({\text{KY}}\) to solution of \(\mathrm{MY}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) will have no effect on their solubilities.
2 The molar solubilities of \({\text{MY}}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) in water are identical.
3 The molar solubility of \({\rm{MY}}\) in water is less than that of \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\)
4 The salts \({\rm{MY}}\) and \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\) are more soluble in \({\text{0}}{\text{.5M}}\) \({\text{KY}}\) than in pure water.
CHXI07:EQUILIBRIUM

314939 Assertion :
\({\text{NaCl}}\) is precipitated when \(\mathrm{HCl}\) gas is passed in a saturated solution of \(\mathrm{NaCl}\).
Reason :
\(\mathrm{HCl}\) is a strong acid.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI07:EQUILIBRIUM

314940 Solubility of \(\mathrm{Ag}_{2} \mathrm{CrO}_{4}\) is decreased in the presence of

1 \(\mathrm{AgNO}_{3}\)
2 \(\mathrm{AgCl}\)
3 \(\mathrm{BaCrO}_{4}\)
4 \(\mathrm{PbCrO}_{4}\)
CHXI07:EQUILIBRIUM

314941 The solubility of \({\text{AgI}}\) in \({\text{NaI}}\) solution is less than that in pure water, because

1 the temperature of the solution decreases
2 solubility product of \({\text{AgI}}\) is less than that of \({\text{NaI}}\)
3 of common ion effect
4 \({\text{AgI}}\) forms complex with \({\text{NaI}}\)
CHXI07:EQUILIBRIUM

314942 \({\text{MY}}\), and \({\text{N}}{{\text{Y}}_{\text{3}}}\) two nearly insoluble salts, have the same \({{\rm{K}}_{{\rm{SP}}}}\) values of \(6.2 \times 10^{-13}\) at room temperature. Which statement would be true in regard to \(\mathrm{MY}\) and \(\mathrm{NY}_{3}\) ?

1 The addition of the salt of \({\text{KY}}\) to solution of \(\mathrm{MY}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) will have no effect on their solubilities.
2 The molar solubilities of \({\text{MY}}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) in water are identical.
3 The molar solubility of \({\rm{MY}}\) in water is less than that of \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\)
4 The salts \({\rm{MY}}\) and \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\) are more soluble in \({\text{0}}{\text{.5M}}\) \({\text{KY}}\) than in pure water.
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CHXI07:EQUILIBRIUM

314939 Assertion :
\({\text{NaCl}}\) is precipitated when \(\mathrm{HCl}\) gas is passed in a saturated solution of \(\mathrm{NaCl}\).
Reason :
\(\mathrm{HCl}\) is a strong acid.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI07:EQUILIBRIUM

314940 Solubility of \(\mathrm{Ag}_{2} \mathrm{CrO}_{4}\) is decreased in the presence of

1 \(\mathrm{AgNO}_{3}\)
2 \(\mathrm{AgCl}\)
3 \(\mathrm{BaCrO}_{4}\)
4 \(\mathrm{PbCrO}_{4}\)
CHXI07:EQUILIBRIUM

314941 The solubility of \({\text{AgI}}\) in \({\text{NaI}}\) solution is less than that in pure water, because

1 the temperature of the solution decreases
2 solubility product of \({\text{AgI}}\) is less than that of \({\text{NaI}}\)
3 of common ion effect
4 \({\text{AgI}}\) forms complex with \({\text{NaI}}\)
CHXI07:EQUILIBRIUM

314942 \({\text{MY}}\), and \({\text{N}}{{\text{Y}}_{\text{3}}}\) two nearly insoluble salts, have the same \({{\rm{K}}_{{\rm{SP}}}}\) values of \(6.2 \times 10^{-13}\) at room temperature. Which statement would be true in regard to \(\mathrm{MY}\) and \(\mathrm{NY}_{3}\) ?

1 The addition of the salt of \({\text{KY}}\) to solution of \(\mathrm{MY}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) will have no effect on their solubilities.
2 The molar solubilities of \({\text{MY}}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) in water are identical.
3 The molar solubility of \({\rm{MY}}\) in water is less than that of \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\)
4 The salts \({\rm{MY}}\) and \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\) are more soluble in \({\text{0}}{\text{.5M}}\) \({\text{KY}}\) than in pure water.
CHXI07:EQUILIBRIUM

314939 Assertion :
\({\text{NaCl}}\) is precipitated when \(\mathrm{HCl}\) gas is passed in a saturated solution of \(\mathrm{NaCl}\).
Reason :
\(\mathrm{HCl}\) is a strong acid.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but Reason is correct.
CHXI07:EQUILIBRIUM

314940 Solubility of \(\mathrm{Ag}_{2} \mathrm{CrO}_{4}\) is decreased in the presence of

1 \(\mathrm{AgNO}_{3}\)
2 \(\mathrm{AgCl}\)
3 \(\mathrm{BaCrO}_{4}\)
4 \(\mathrm{PbCrO}_{4}\)
CHXI07:EQUILIBRIUM

314941 The solubility of \({\text{AgI}}\) in \({\text{NaI}}\) solution is less than that in pure water, because

1 the temperature of the solution decreases
2 solubility product of \({\text{AgI}}\) is less than that of \({\text{NaI}}\)
3 of common ion effect
4 \({\text{AgI}}\) forms complex with \({\text{NaI}}\)
CHXI07:EQUILIBRIUM

314942 \({\text{MY}}\), and \({\text{N}}{{\text{Y}}_{\text{3}}}\) two nearly insoluble salts, have the same \({{\rm{K}}_{{\rm{SP}}}}\) values of \(6.2 \times 10^{-13}\) at room temperature. Which statement would be true in regard to \(\mathrm{MY}\) and \(\mathrm{NY}_{3}\) ?

1 The addition of the salt of \({\text{KY}}\) to solution of \(\mathrm{MY}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) will have no effect on their solubilities.
2 The molar solubilities of \({\text{MY}}\) and \({\text{N}}{{\text{Y}}_{\text{3}}}\) in water are identical.
3 The molar solubility of \({\rm{MY}}\) in water is less than that of \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\)
4 The salts \({\rm{MY}}\) and \({\rm{N}}{{\rm{Y}}_{\rm{3}}}\) are more soluble in \({\text{0}}{\text{.5M}}\) \({\text{KY}}\) than in pure water.