A 0.2054 g sample of CaCO, (primary standard) is dissolved in hydrochloric acid and the solution is diluted with water to 250.0 mL (solution A). A 50.0 ml aliquot of solution A is titrated with 41.12 mL of EDTA solution. a) Calculate the molarity of the EDTA solution. A 100.0 mL sample of water containing Ca2+ and Mg2* is treated with NaOH to precipitate out Mg2* as Mg(OH)2, and solution is then titrated at pH 13 with 15.86 mL of the EDTA solution. Another 100.0 mL of the water sample is titrated with 22.74 ml of the EDTA solution at pH = 10.00. b) Calculate the ppm (mg/L) of CaCOz in the sample. c) Calculate the ppm MGCO; in the sample.

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A 0.2054 g sample of CaCO, (primary standard) is dissolved in hydrochloric acid and
the solution is diluted with water to 250.0 mL (solution A). A 50.0 mL aliquot of
solution A is titrated with 41.12 ml of EDTA solution.
a) Calculate the molarity of the EDTA solution.
A 100.0 ml sample of water containing Ca2* and Mg?* is treated with NaOH to
precipitate out Mg2* as Mg(OH)2, and solution is then titrated at pH 13 with 15.86 mL
of the EDTA solution. Another 100.0 mL of the water sample is titrated with 22.74 mL
of the EDTA solution at pH = 10.00.
b) Calculate the ppm (mg/L) of CaCOz in the sample.
c) Calculate the ppm MgCO3 in the sample.
Transcribed Image Text:A 0.2054 g sample of CaCO, (primary standard) is dissolved in hydrochloric acid and the solution is diluted with water to 250.0 mL (solution A). A 50.0 mL aliquot of solution A is titrated with 41.12 ml of EDTA solution. a) Calculate the molarity of the EDTA solution. A 100.0 ml sample of water containing Ca2* and Mg?* is treated with NaOH to precipitate out Mg2* as Mg(OH)2, and solution is then titrated at pH 13 with 15.86 mL of the EDTA solution. Another 100.0 mL of the water sample is titrated with 22.74 mL of the EDTA solution at pH = 10.00. b) Calculate the ppm (mg/L) of CaCOz in the sample. c) Calculate the ppm MgCO3 in the sample.
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