ma 2 12. 3.000 g BaCl₂.H₂O (molar mass=244.263 g/mol) was added to a solution of 100 mL of 0.050 M Na₂CO3. BaCl₂ (aq) +Na₂CO3 (aq) → BaCO3 (s) + 2NaCl Ksp for BaCO3 = 1.1 x 10-¹5 Calculate the concentration of CO2 in the resulting solution. a) 5M b) 0.050 M c) 0.072 M d) 1.5 x 10-¹3 M e) 1.5 x 10-¹4 M

Chemistry & Chemical Reactivity
9th Edition
ISBN:9781133949640
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter16: Principles Of Chemical Reactivity: The Chemistry Of Acids And Bases
Section16.6: Types Of Acid-base Reactions
Problem 2RC: 2. Equal amounts (moles) of acetic acid(aq) and sodium sulfite, Na2SO3(aq), are mixed. The resulting...
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12. 3.000 g BaCl₂.H₂O (molar mass=244.263 g/mol) was added to a
solution of 100 mL of 0.050 M Na₂CO3.
BaCl₂ (aq) + Na₂CO3 (aq) → BaCO3 (s) + 2NaCl
Ksp for BaCO3 = 1.1 x 10-¹5
Calculate the concentration of CO2 in the resulting solution.
a) 5M b) 0.050 M
c) 0.072 M d) 1.5 x 10-¹³ M
e) 1.5 x 10-14 M
Transcribed Image Text:12. 3.000 g BaCl₂.H₂O (molar mass=244.263 g/mol) was added to a solution of 100 mL of 0.050 M Na₂CO3. BaCl₂ (aq) + Na₂CO3 (aq) → BaCO3 (s) + 2NaCl Ksp for BaCO3 = 1.1 x 10-¹5 Calculate the concentration of CO2 in the resulting solution. a) 5M b) 0.050 M c) 0.072 M d) 1.5 x 10-¹³ M e) 1.5 x 10-14 M
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