В. In her next experiment. she needs to determine the Ksp and identity of a sparingly soluble salt MF2. She was given two portions of 25.00 mL saturated MF solution. She used the first portion in the titration reaction against a 0.0100 M HNO, Sstandard solution. The table below shows the experimental data for this titration experiment. Initial buret reading 10.56 mL Final buret reading 20.01 mL 25.00° C Temperature 1. Determine the volume of HNOz delivered during the titration. 2. Determine the number of moles of HNO, consumed in the reaction. 3. Write the balanced equation for the titration reaction. 4. Determine the molar solubility of the M2* and F. 5. Determine the Kgo value of MF2. Report the final answer in proper SF.

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Please answer 4 and 5 4. Determine the molar solubility of the M2+ and F- 5. Determine the Ksp value of MF2
В.
In her next experiment. she needs to determine the Ksp and identity of a sparingly soluble salt MF2. She was given two portions of 25.00 mL
saturated MF solution. She used the first portion in the titration reaction against a 0.0100 M HNO, Sstandard solution. The table below shows
the experimental data for this titration experiment.
Initial buret reading
10.56 mL
20.01 mL
Final þuret reading
25.00° C
Temperature
1. Determine the volume of HNO3 delivered during the titration.
2. Determine the number of moles of HNO, consumed in the reaction.
3. Write the balanced equation for the titration reaction.
4. Determine the molar solubility of the M2* and F.
5. Determine the Kgo value of MF2. Report the final answer in proper SF.
Transcribed Image Text:В. In her next experiment. she needs to determine the Ksp and identity of a sparingly soluble salt MF2. She was given two portions of 25.00 mL saturated MF solution. She used the first portion in the titration reaction against a 0.0100 M HNO, Sstandard solution. The table below shows the experimental data for this titration experiment. Initial buret reading 10.56 mL 20.01 mL Final þuret reading 25.00° C Temperature 1. Determine the volume of HNO3 delivered during the titration. 2. Determine the number of moles of HNO, consumed in the reaction. 3. Write the balanced equation for the titration reaction. 4. Determine the molar solubility of the M2* and F. 5. Determine the Kgo value of MF2. Report the final answer in proper SF.
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