3. Titration of an Antacid Antacid 2 Antacid 1 Alka Selter Tums Ca CD 3 79.20g 179.72g 1. Brand of antacid Na H C03 179.32g 179.79 Bases(s) in antacid 2. Mass of flask 3. Mass of flask and antacid O.10M 50.0mL 4. Molarity of HCl solution 0.10M 5. Total volume (mL) of HCI solution added 50.0ml 6. Molarity of NaOH solution 0.10M 0.10M 7. Initial volume (mL) of NaOH solution O.62ML 0.667ML 8. Final volume (mL) of NaOH solution 9. Mass of antacid 10. Volume of NaOH solution used 11. Volume of excess HCl solution 12. Volume of HCl solution neutralized by antacid mL stomach acid 13. 1g antacid 14. Write the neutralization equations that take place in the stomach with the base(s) present in the antacid product. 1. 2.
3. Titration of an Antacid Antacid 2 Antacid 1 Alka Selter Tums Ca CD 3 79.20g 179.72g 1. Brand of antacid Na H C03 179.32g 179.79 Bases(s) in antacid 2. Mass of flask 3. Mass of flask and antacid O.10M 50.0mL 4. Molarity of HCl solution 0.10M 5. Total volume (mL) of HCI solution added 50.0ml 6. Molarity of NaOH solution 0.10M 0.10M 7. Initial volume (mL) of NaOH solution O.62ML 0.667ML 8. Final volume (mL) of NaOH solution 9. Mass of antacid 10. Volume of NaOH solution used 11. Volume of excess HCl solution 12. Volume of HCl solution neutralized by antacid mL stomach acid 13. 1g antacid 14. Write the neutralization equations that take place in the stomach with the base(s) present in the antacid product. 1. 2.
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter15: Additional Aqueous Equilibria
Section: Chapter Questions
Problem 15.BCP
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