2. Use the following information (and the provided solubility chart) to answer the below questions. In the lab, an aqueous solution containing 5.5 g of Pb(NO3)2 is mixed with 250 mL of 0.15 M KI solution. A yellow precipitate was collected by filtration, dried and weighed to give a final mass of 6.25 g. Write a net ionic equation showing the formation of the yellow precipitate. (The final equation must be balanced and must include all physical states.) Calculate the percent yield for this reaction. S Calculate the mass or volume (in grams or mL) of the excess reactant remaining at the end of the reaction. i1l grode

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2. Use the following information (and the provided solubility chart) to answer the below questions. In the lab,
an aqueous solution containing 5.5 g of Pb(NO3)2 is mixed with 250 mL of 0.15 M KI solution. A yellow
precipitate was collected by filtration, dried and weighed to give a final mass of 6.25 g.
Write a net ionic equation showing the formation of the yellow precipitate. (The final
equation must be balanced and must include all physical states.)
Calculate the percent yield for this reaction. S
Calculate the mass or volume (in grams or mL) of the excess reactant remaining at the end of
the reaction.
11 groda
Transcribed Image Text:2. Use the following information (and the provided solubility chart) to answer the below questions. In the lab, an aqueous solution containing 5.5 g of Pb(NO3)2 is mixed with 250 mL of 0.15 M KI solution. A yellow precipitate was collected by filtration, dried and weighed to give a final mass of 6.25 g. Write a net ionic equation showing the formation of the yellow precipitate. (The final equation must be balanced and must include all physical states.) Calculate the percent yield for this reaction. S Calculate the mass or volume (in grams or mL) of the excess reactant remaining at the end of the reaction. 11 groda
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