If stomach acid has a concentration of 0.14 M HCl, assuming the density of stomach acid to be similar to that of water (1.00 g/mL), what is the mass of stomach acid that the 1.03 g of antiacid tablet can neutralize? Does this number support the claim in the commercial?

Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter4: Reactions In Aqueous Solution
Section: Chapter Questions
Problem 22QAP: Follow the directions of Question 21 for the following bases: (a) toluidine, C7H9N (b) strontium...
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Summary 2
b. If stomach acid has a concentration of 0.14 M HCl, assuming the density of stomach acid
to be similar to that of water (1.00 g/mL), what is the mass of stomach acid that the 1.03
g of antiacid tablet can neutralize? Does this number support the claim in the
commercial?
Transcribed Image Text:Summary 2 b. If stomach acid has a concentration of 0.14 M HCl, assuming the density of stomach acid to be similar to that of water (1.00 g/mL), what is the mass of stomach acid that the 1.03 g of antiacid tablet can neutralize? Does this number support the claim in the commercial?
6. An old antacid commercial claimed that each tablet of their product could "neutralize 47 times its
mass in stomach acid". The active ingredient in the antiacid tablet, NaAl(OH)₂CO3, reacts with
HCI in stomach acid according to this balanced reaction:
How many moles of HCI can a 1.03 g of antiacid tablet neutralize if the tablet contains
0.246 g of the active ingredient?
Transcribed Image Text:6. An old antacid commercial claimed that each tablet of their product could "neutralize 47 times its mass in stomach acid". The active ingredient in the antiacid tablet, NaAl(OH)₂CO3, reacts with HCI in stomach acid according to this balanced reaction: How many moles of HCI can a 1.03 g of antiacid tablet neutralize if the tablet contains 0.246 g of the active ingredient?
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