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Zorluk: OrtaSolubility Curves and Temperature Effects

The table below shows the solubility of potassium trioxonitrate(V), KNO3\text{KNO}_3, in water at two different temperatures:

Temperature (C^\circ\text{C})Solubility (g / 100 g H2O\text{g / } 100\text{ g } \text{H}_2\text{O})
60110.0
2032.0

What mass of KNO3\text{KNO}_3 will deposit when 420.0 g420.0\text{ g} of a saturated solution of KNO3\text{KNO}_3 at 60C60^\circ\text{C} is cooled to 20C20^\circ\text{C}?

  1. A
    78.0 g78.0\text{ g}
  2. 156.0 g156.0\text{ g}Cevap
  3. C
    220.0 g220.0\text{ g}
  4. D
    327.6 g327.6\text{ g}

Cevap

156.0 g156.0\text{ g}
At 60C60^\circ\text{C}, every 210.0 g210.0\text{ g} of saturated solution contains 100.0 g100.0\text{ g} of water and 110.0 g110.0\text{ g} of solute. Thus, 420.0 g420.0\text{ g} of solution contains 200.0 g200.0\text{ g} of water and 220.0 g220.0\text{ g} of dissolved KNO3\text{KNO}_3. Upon cooling to 20C20^\circ\text{C}, the solubility drops to 32.0 g32.0\text{ g} per 100 g100\text{ g} of water, so 200.0 g200.0\text{ g} of water can retain only 64.0 g64.0\text{ g} of solute. The excess solute that crystallizes out is 220.0 g64.0 g=156.0 g220.0\text{ g} - 64.0\text{ g} = 156.0\text{ g}.

Adım Adım Çözüm

1
Determine the composition of a saturated solution at 60C60^\circ\text{C}
At 60C60^\circ\text{C}, 100.0 g100.0\text{ g} of water dissolves 110.0 g110.0\text{ g} of KNO3\text{KNO}_3, yielding 100.0+110.0=210.0 g100.0 + 110.0 = 210.0\text{ g} of saturated solution.
Solubility is expressed per 100 g100\text{ g} of water, so total solution mass is the sum of solvent and solute masses.
2
Calculate the mass of water and solute in 420.0 g420.0\text{ g} of saturated solution at 60C60^\circ\text{C}
Mass of water = 420.0×100.0210.0=200.0 g420.0 \times \frac{100.0}{210.0} = 200.0\text{ g}. Mass of KNO3\text{KNO}_3 = 420.0×110.0210.0=220.0 g420.0 \times \frac{110.0}{210.0} = 220.0\text{ g}.
Scaling the ratio of components to the given solution mass.
3
Calculate the mass of solute remaining dissolved at 20C20^\circ\text{C}
At 20C20^\circ\text{C}, 100.0 g100.0\text{ g} of water holds 32.0 g32.0\text{ g} of KNO3\text{KNO}_3. Therefore, 200.0 g200.0\text{ g} of water holds 2×32.0=64.0 g2 \times 32.0 = 64.0\text{ g} of KNO3\text{KNO}_3.
Solubility at the lower temperature determines the maximum solute that stays in solution.
4
Calculate the mass of salt crystallized (deposited)
Mass deposited = 220.0 g64.0 g=156.0 g220.0\text{ g} - 64.0\text{ g} = 156.0\text{ g}.
Subtracting the solute remaining in solution from the initial mass of dissolved solute.

Anahtar Kavram

Solubility curves and fractional crystallization calculations
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