Question 13 You combine 100. mL of 0.100 M Fe(NO3)2 and 100. mL of 0.00125 M Na₂CO3. What is the concentration of Fe2+ at equilibrium? O 0.049 M O 2.1 x 109 M O 4.2 x 10-10 M O 0.0099 M

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**Question 13**

You combine 100. mL of 0.100 M Fe(NO₃)₂ and 100. mL of 0.00125 M Na₂CO₃. What is the concentration of Fe²⁺ at equilibrium?

- O 0.049 M
- O 2.1 x 10⁻⁹ M
- O 4.2 x 10⁻¹⁰ M
- O 0.00099 M
Transcribed Image Text:**Question 13** You combine 100. mL of 0.100 M Fe(NO₃)₂ and 100. mL of 0.00125 M Na₂CO₃. What is the concentration of Fe²⁺ at equilibrium? - O 0.049 M - O 2.1 x 10⁻⁹ M - O 4.2 x 10⁻¹⁰ M - O 0.00099 M
### Solubility Product Constants (25 °C)

The table below lists various compounds along with their solubility product constants (\( K_{sp} \)) at 25 °C. The \( K_{sp} \) value is a measure of the solubility of a compound in water. A smaller \( K_{sp} \) indicates a lower solubility.

| Compound (s) | \( K_{sp} \)         |
|--------------|----------------------|
| BaF₂         | \( 2.4 \times 10^{-5} \)  |
| CuCl(s)      | \( 1.9 \times 10^{-7} \)  |
| PbF₂         | \( 4.0 \times 10^{-8} \)  |
| AgCl(s)      | \( 1.6 \times 10^{-10} \) |
| FeCO₃        | \( 2.1 \times 10^{-11} \) |
| Mn(OH)₂      | \( 2.0 \times 10^{-13} \) |
| AuCl(s)      | \( 2.0 \times 10^{-13} \) |
| Cd(OH)₂      | \( 1.2 \times 10^{-14} \) |

This information is crucial for understanding solubility trends in different chemical contexts.
Transcribed Image Text:### Solubility Product Constants (25 °C) The table below lists various compounds along with their solubility product constants (\( K_{sp} \)) at 25 °C. The \( K_{sp} \) value is a measure of the solubility of a compound in water. A smaller \( K_{sp} \) indicates a lower solubility. | Compound (s) | \( K_{sp} \) | |--------------|----------------------| | BaF₂ | \( 2.4 \times 10^{-5} \) | | CuCl(s) | \( 1.9 \times 10^{-7} \) | | PbF₂ | \( 4.0 \times 10^{-8} \) | | AgCl(s) | \( 1.6 \times 10^{-10} \) | | FeCO₃ | \( 2.1 \times 10^{-11} \) | | Mn(OH)₂ | \( 2.0 \times 10^{-13} \) | | AuCl(s) | \( 2.0 \times 10^{-13} \) | | Cd(OH)₂ | \( 1.2 \times 10^{-14} \) | This information is crucial for understanding solubility trends in different chemical contexts.
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