101.3 mg sample of an organic compound known to contain Cl is burned in pure Oz2 and the combustion gases collected in absorbent tubes. The tube used to trap CO2 increases in mass by 167.6 mg, and of 121.8 mg is treated with concentrated HNO: producing C12, which subsequently reacts with Ag* forming 262.7 mg og AgCl. (MM of C= 12.01 g/mol, O=16.00 g/mol, Cl=35.45 g/mol, H=1.008 g/mol, AgCl=143.32 g/mol. Determine the: 1. % w/w C. 2. % w/w H. 3. % w/w CI 4. Empirical formula of compound.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A 101.3 mg sample of an organic compound known to contain Cl is burned in pure O2
and the combustion gases collected in absorbent tubes. The tube used to trap CO2
increases in mass by 167.6 mg, and of 121.8 mg is treated with concentrated HNO3
producing C12, which subsequently reacts with Ag* forming 262.7 mg 9g AgCl. (MM of C=
12.01 g/mol, O=16.00 g/mol, Cl=35.45 g/mol, H=1.008 g/mol, AgCl=143.32 g/mol.
Determine the:
1. % w/w C.
2. % w/w H.
3. % w/w CI
4. Empirical formula of compound.
Transcribed Image Text:A 101.3 mg sample of an organic compound known to contain Cl is burned in pure O2 and the combustion gases collected in absorbent tubes. The tube used to trap CO2 increases in mass by 167.6 mg, and of 121.8 mg is treated with concentrated HNO3 producing C12, which subsequently reacts with Ag* forming 262.7 mg 9g AgCl. (MM of C= 12.01 g/mol, O=16.00 g/mol, Cl=35.45 g/mol, H=1.008 g/mol, AgCl=143.32 g/mol. Determine the: 1. % w/w C. 2. % w/w H. 3. % w/w CI 4. Empirical formula of compound.
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