A 26.125 mg sample of a chemical known to contain only carbon, hydrogen, sulfur, and oxygen is put into a combustion analysis apparatus, yielding 46.540 mg of carbon dioxide and 19.051 mg of water. In another experiment, 41.419 mg of the compound is reacted with excess oxygen to produce 17.90 mg of sulfur dioxide. Add subscripts to the formula provided to correctly identify the empirical formula of this compound. Do not change the order of the elements. empirical formula: CHSO

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**General Chemistry 4th Edition**

**A 26.125 mg sample of a chemical known to contain only carbon, hydrogen, sulfur, and oxygen is put into a combustion analysis apparatus, yielding 46.540 mg of carbon dioxide and 19.051 mg of water. In another experiment, 41.419 mg of the compound is reacted with excess oxygen to produce 17.90 mg of sulfur dioxide.**

Add subscripts to the formula provided to correctly identify the empirical formula of this compound. Do not change the order of the elements.

**Empirical formula:** CHSO

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This exercise involves determining the empirical formula of a compound using data from combustion analysis. The text provides the quantities of carbon dioxide, water, and sulfur dioxide produced in experiments involving the compound. The task is to calculate and assign the correct subscripts to each element in the given chemical formula CHSO based on these data.
Transcribed Image Text:**General Chemistry 4th Edition** **A 26.125 mg sample of a chemical known to contain only carbon, hydrogen, sulfur, and oxygen is put into a combustion analysis apparatus, yielding 46.540 mg of carbon dioxide and 19.051 mg of water. In another experiment, 41.419 mg of the compound is reacted with excess oxygen to produce 17.90 mg of sulfur dioxide.** Add subscripts to the formula provided to correctly identify the empirical formula of this compound. Do not change the order of the elements. **Empirical formula:** CHSO --- This exercise involves determining the empirical formula of a compound using data from combustion analysis. The text provides the quantities of carbon dioxide, water, and sulfur dioxide produced in experiments involving the compound. The task is to calculate and assign the correct subscripts to each element in the given chemical formula CHSO based on these data.
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