2.0.5000 g of CaCO3 (the limiting reagent) react with 100.0 mL of 0.0800 M sulfuric acid at 751.8 mm Hg and 23.6 °C. The gas is collected over water. a. Calculate the mass of CO2 produced from the reaction of 0.5000 g of CaCO3. b. Using the graph, determine the mass of CO2 dissolved in solution. Assume the density of the solution is 1.00 g/mL and that this solution is all water.

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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EXPERIMENT 9 GAS LAWS
Error Analysis
Use the following balanced chemical reaction for this question:
CaCO3 (s) + H₂SO4 (aq) → →
1. Graph the following data of the amount of CO₂ dissolved in water:
T (°C)
0
10
20
30
40
50
60
g CO₂/kg water
3.30
2.50
1.70
1.25
1.00
0.75
0.60
(1)
H₂O + CaSO4 (s) + CO2 (g)
2.0.5000 g of CaCO3 (the limiting reagent) react with 100.0 mL of 0.0800 M sulfuric acid at
751.8 mm Hg and 23.6 °C. The gas is collected over water.
a. Calculate the mass of CO2 produced from the reaction of 0.5000 g of CaCO3.
b. Using the graph, determine the mass of CO2 dissolved in solution. Assume the density of
the solution is 1.00 g/mL and that this solution is all water.
c. Determine the mass of CO2 collected (this is the difference between produced and dissolved CO2
d. Using the ideal gas equation, determine the volume of CO2 collected.
8 117
Transcribed Image Text:EXPERIMENT 9 GAS LAWS Error Analysis Use the following balanced chemical reaction for this question: CaCO3 (s) + H₂SO4 (aq) → → 1. Graph the following data of the amount of CO₂ dissolved in water: T (°C) 0 10 20 30 40 50 60 g CO₂/kg water 3.30 2.50 1.70 1.25 1.00 0.75 0.60 (1) H₂O + CaSO4 (s) + CO2 (g) 2.0.5000 g of CaCO3 (the limiting reagent) react with 100.0 mL of 0.0800 M sulfuric acid at 751.8 mm Hg and 23.6 °C. The gas is collected over water. a. Calculate the mass of CO2 produced from the reaction of 0.5000 g of CaCO3. b. Using the graph, determine the mass of CO2 dissolved in solution. Assume the density of the solution is 1.00 g/mL and that this solution is all water. c. Determine the mass of CO2 collected (this is the difference between produced and dissolved CO2 d. Using the ideal gas equation, determine the volume of CO2 collected. 8 117
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