2. Use the Ksp values in the table to calculate the molar Compound Formula Ksp solubility of AgBr Silver bromide AgBr 5.35x10-13 Magnesium hydroxide Mg(OH)2 2.06x10-13 Scandium hydroxide Sc(OH)3 8.0x10-31 Use the Ksp values in the table to calculate the colubiliti

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**Exercise 2: Calculating Molar Solubility Using \( K_{sp} \) Values**

Use the \( K_{sp} \) values in the table provided to calculate the molar solubility of AgBr.

| Compound              | Formula    | \( K_{sp} \)           |
|-----------------------|------------|------------------------|
| Silver bromide        | AgBr       | \( 5.35 \times 10^{-13} \) |
| Magnesium hydroxide   | Mg(OH)₂    | \( 2.06 \times 10^{-13} \) |
| Scandium hydroxide    | Sc(OH)₃    | \( 8.0 \times 10^{-31} \) |

**Explanation:**
The table lists the compounds along with their chemical formulas and solubility product constants (\( K_{sp} \)). You can use these values to calculate the molar solubility, which refers to the number of moles of the compound that dissolve in a liter of solution to reach saturation.
Transcribed Image Text:**Exercise 2: Calculating Molar Solubility Using \( K_{sp} \) Values** Use the \( K_{sp} \) values in the table provided to calculate the molar solubility of AgBr. | Compound | Formula | \( K_{sp} \) | |-----------------------|------------|------------------------| | Silver bromide | AgBr | \( 5.35 \times 10^{-13} \) | | Magnesium hydroxide | Mg(OH)₂ | \( 2.06 \times 10^{-13} \) | | Scandium hydroxide | Sc(OH)₃ | \( 8.0 \times 10^{-31} \) | **Explanation:** The table lists the compounds along with their chemical formulas and solubility product constants (\( K_{sp} \)). You can use these values to calculate the molar solubility, which refers to the number of moles of the compound that dissolve in a liter of solution to reach saturation.
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