The smell of rotten eggs comes from dihydrogen monosulfide, which is created through anaerobic respiration of bacteria in low-oxygen environments. In the lab, however, it can be synthesized by reacting aluminum sulfide with water, with aluminum hydroxide as a byproduct. A chemist synthesizes dihydrogen monosulfide and collects 37.8 mL over water at 298 K and 762 mmHg. Assuming water was the excess reactant, what mass of aluminum sulfide was reacted?
The smell of rotten eggs comes from dihydrogen monosulfide, which is created through anaerobic respiration of bacteria in low-oxygen environments. In the lab, however, it can be synthesized by reacting aluminum sulfide with water, with aluminum hydroxide as a byproduct. A chemist synthesizes dihydrogen monosulfide and collects 37.8 mL over water at 298 K and 762 mmHg. Assuming water was the excess reactant, what mass of aluminum sulfide was reacted?
Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter9: The Gaseous State
Section: Chapter Questions
Problem 34P
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The smell of rotten eggs comes from dihydrogen monosulfide, which is created through anaerobic respiration of bacteria in low-oxygen environments. In the lab, however, it can be synthesized by reacting aluminum sulfide with water, with aluminum hydroxide as a byproduct. A chemist synthesizes dihydrogen monosulfide and collects 37.8 mL over water at 298 K and 762 mmHg. Assuming water was the excess reactant, what mass of aluminum sulfide was reacted?
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