Computer 16 DATA TABLE Equivalence point (mL) Mass of filter paper + precipitate (g) Mass of filter paper (g) Mass of precipitate (g) Molarity of H₂SO. (M) Trial 1 4.997mL 0.6825 0.5200 0.1m Trial 2 8861mL 0.6757 0.5175 Trial 3 DATA ANALYSIS 1. Use the titration results to calculate the moles of H₂SO, that were used to reach the equivalence point in each trial. Conductimetric Titration and Gravimetric Determination of a Precipitate 3. Convert the mass of the barium sulfate precipitate, formed in each trial, to moles.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Computer 16
DATA TABLE
Equivalence point (mL)
Mass of filter paper + precipitate (g)
Mass of filter paper (g)
Mass of precipitate (g)
Molarity of H₂SO. (M)
Trial 1
4.997mL
0.6825
0.5200
0.1m
Trial 2
8861mL
0.6757
0.5175
Trial 3
DATA ANALYSIS
1. Use the titration results to calculate the moles of H₂SO, that were used to reach the
equivalence point in each trial.
Conductimetric Titration and Gravimetric Determination of a Precipitate
3. Convert the mass of the barium sulfate precipitate, formed in each trial, to moles.
Transcribed Image Text:Computer 16 DATA TABLE Equivalence point (mL) Mass of filter paper + precipitate (g) Mass of filter paper (g) Mass of precipitate (g) Molarity of H₂SO. (M) Trial 1 4.997mL 0.6825 0.5200 0.1m Trial 2 8861mL 0.6757 0.5175 Trial 3 DATA ANALYSIS 1. Use the titration results to calculate the moles of H₂SO, that were used to reach the equivalence point in each trial. Conductimetric Titration and Gravimetric Determination of a Precipitate 3. Convert the mass of the barium sulfate precipitate, formed in each trial, to moles.
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