Consider the precipitation of anion X* with metal cation M xM + mX* M,X (s) K...
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Consider the precipitation of anion X* with metal cation M xM" + mX* M,X (s) K = [M"* *[X" The following equation relates the volume of added M* (VM) to [M*] and [X ] at a given point in the titration, and the initial volume of the X* solution (V), plus the initial concentrations of M* (C) and X (C) xC + m[M"* ]- x[X*] mC - m[M"*]+ x[X* ]. VM = where [X] = (K/ỊM"* r"). Use a spreadsheet to generate a titration curve for 10.0 ml. of 0.100 M Cro titrated with 0.100 M Ag* to produce Ag, Cro, (s) (K = 1.20 x 10-12). Report the volume of Ag* added at the following pAg* values of the titration. 1/m %3D pAg* = 5.31 VAs = ml + TOOLS x10 pAg* = 4.86 VAg = ml pAg = 3.83 Vag= ml pAg" = 2.65 Vag- = ml %3D pAg* = 1.98 Vag- mL Consider the precipitation of anion X* with metal cation M xM" + mX* M,X (s) K = [M"* *[X" The following equation relates the volume of added M* (VM) to [M*] and [X ] at a given point in the titration, and the initial volume of the X* solution (V), plus the initial concentrations of M* (C) and X (C) xC + m[M"* ]- x[X*] mC - m[M"*]+ x[X* ]. VM = where [X] = (K/ỊM"* r"). Use a spreadsheet to generate a titration curve for 10.0 ml. of 0.100 M Cro titrated with 0.100 M Ag* to produce Ag, Cro, (s) (K = 1.20 x 10-12). Report the volume of Ag* added at the following pAg* values of the titration. 1/m %3D pAg* = 5.31 VAs = ml + TOOLS x10 pAg* = 4.86 VAg = ml pAg = 3.83 Vag= ml pAg" = 2.65 Vag- = ml %3D pAg* = 1.98 Vag- mL
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