A. Determination of Solubility and Ksp 1. Consider 50 mL of a saturated solution of PbC12 at 250C. 2. In one experiment, the solution was evaporated and 0.54 g of solid PbC12 was obtained. 3. Solve for the solubility (in molarity) of PbC12 at the measured temperature. 4. From the solubility data, solve for the Ksp of PbC12 Table 1. Determination of Solubility and Ksp Parameter Observation Volume of saturated PbCl2 solution Mass of the residue Temperature of solution Solubility of PbCl2 (in molarity) Dissociation equation for PbCl2 Ksp expression for PBCI2 Ksp of PbCl2 I. Computations Solubility of PbC12 (in molarity): Ksp of P6C12

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A. Determination of Solubility and Ksp
1. Consider 50 mL of a saturated solution of PBC12 at 250C.
2. In one experiment, the solution was evaporated and 0.54 g of solid PBC12 was
obtained.
3. Solve for the solubility (in molarity) of PbC12 at the measured temperature.
4. From the solubility data, solve for the Ksp of P6C12
Table 1. Determination of Solubility and Ksp
Parameter
Observation
Volume of saturated PbClz solution
Mass of the residue
Temperature of solution
Solubility of PbCl2 (in molarity)
Dissociation equation for PbCl2
Ksp expression for PbCl2
Ksp of PbCl2
I. Computations
Solubility of PbC12 (in molarity):
Ksp of PbC12
Transcribed Image Text:A. Determination of Solubility and Ksp 1. Consider 50 mL of a saturated solution of PBC12 at 250C. 2. In one experiment, the solution was evaporated and 0.54 g of solid PBC12 was obtained. 3. Solve for the solubility (in molarity) of PbC12 at the measured temperature. 4. From the solubility data, solve for the Ksp of P6C12 Table 1. Determination of Solubility and Ksp Parameter Observation Volume of saturated PbClz solution Mass of the residue Temperature of solution Solubility of PbCl2 (in molarity) Dissociation equation for PbCl2 Ksp expression for PbCl2 Ksp of PbCl2 I. Computations Solubility of PbC12 (in molarity): Ksp of PbC12
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