* TOOLS x10 What is the concentration when Hg, Cl, precipitation is 99.99% complete? concentration of CI¯ = What is the concentration of Cl¯ required, in molarity, when PbCI, precipitation begins? concentration of Cl¯ =

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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A solution contains 0.031 M Hg3* and 0.027 M Pb²+. If you add CI¯, Hg,Cl, and PbCl, will begin to precipitate.
What is the concentration of Cl¯ required, in molarity, when Hg,Cl, precipitation begins?
concentration of Cl¯ =
M
* TOOLS
What is the concentration X10'
when Hg, Cl, precipitation is 99.99% complete?
concentration of Cl¯ =
M
What is the concentration of CI¯ required, in molarity, when PbCl, precipitation begins?
concentration of Cl¯ =
M
Transcribed Image Text:A solution contains 0.031 M Hg3* and 0.027 M Pb²+. If you add CI¯, Hg,Cl, and PbCl, will begin to precipitate. What is the concentration of Cl¯ required, in molarity, when Hg,Cl, precipitation begins? concentration of Cl¯ = M * TOOLS What is the concentration X10' when Hg, Cl, precipitation is 99.99% complete? concentration of Cl¯ = M What is the concentration of CI¯ required, in molarity, when PbCl, precipitation begins? concentration of Cl¯ = M
What is the concentration of CI¯ required, in molarity, when PbCl, precipitation is 99.99% complete?
concentration of Cl¯ =
M
Finally, give the CI" concentration range in which Hg3+ can be completely separated from Pb2+ by precipitation.
Give the lowest Cl¯ concentration for the separation of Hg+ from Pb2+.
concentration of CI
M
Give the highest Cl¯ concentration for the separation of Hg3+ from Pb2+.
concentration of Cl¯ =
M
Transcribed Image Text:What is the concentration of CI¯ required, in molarity, when PbCl, precipitation is 99.99% complete? concentration of Cl¯ = M Finally, give the CI" concentration range in which Hg3+ can be completely separated from Pb2+ by precipitation. Give the lowest Cl¯ concentration for the separation of Hg+ from Pb2+. concentration of CI M Give the highest Cl¯ concentration for the separation of Hg3+ from Pb2+. concentration of Cl¯ = M
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