If 65.0 g of AgNO3 (FW 169.87 g/mol ) is added to a solution containing 45.0 g of CaBr2 (FW 199.89 g/mol), what mass, in g, of AgBr (FW 187.77 g/mol) precipitate will be formed? The balanced equation is 2 AgNO3(aq) + CaBr₂(aq) -> 2 AgBr(s) + Ca(NO3)2(aq)

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter4: Types Of Chemical Reactions And Solution Stoichiometry
Section: Chapter Questions
Problem 59E: Separate samples of a solution of an unknown soluble ionic compound are treated with KCl, Na2SO4,...
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If 65.0 g of AgNO3 (FW 169.87 g/mol
) is added to a solution containing
45.0 g of CaBr2 (FW 199.89 g/mol),
what mass, in g, of AgBr (FW 187.77
g/mol) precipitate will be formed?
The balanced equation is
2 AgNO3(aq) + CaBr₂(aq) -> 2
AgBr(s) + Ca(NO3)2(aq)
Transcribed Image Text:If 65.0 g of AgNO3 (FW 169.87 g/mol ) is added to a solution containing 45.0 g of CaBr2 (FW 199.89 g/mol), what mass, in g, of AgBr (FW 187.77 g/mol) precipitate will be formed? The balanced equation is 2 AgNO3(aq) + CaBr₂(aq) -> 2 AgBr(s) + Ca(NO3)2(aq)
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