Equivalence point (mL) Mass of filter paper + precipitate (g) Mass of filter paper (g) Mass of precipitate (g) Molarity of H₂SO. (M) Trial 1 Trial 2 4.997mL 8861mL 0.68a5 0.6757 0.5200 0.1m 0.5175 Trial 3 DATA ANALYSIS 1. Use the titration results to calculate the moles of H.SO, that were used to reach the equivalence point in each trial. Conductimetric Titradon and Gravimetric Determination of 3. Convert the mass of the barium sulfate precipitate, formed in each trial, to moles.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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 Thrradon 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 Thrradon 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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