CCI4, an important commercial solvent, is prepared by the reaction of Cl2(g) with a carbo compound. Determine AH° for the reaction CS2(1) + 3 Cl2(g) → CC14(1) + S2Cl2(1) Use appropriate data from the following listing. CS2(1) +3 O2(g) → CO2(g) + 2 SO2(g) 2 S(s) + Cl2(g) → S2Cl2(1) → C(s) + 2 Cl2(g) CCI 4(1) S(s) + O2(g) SO2(g) SO2(g) + Cl2(g) → SO2Cl2(1) C(s) + O2(g) CO2(g) CC14(1) + O2(g) COCl2(g) + Cl₂O(g) → AH° = ? ΔΗ° = - 1077 ΚΙ ΔΗ° = -58.2 ΚΙ ΔΗ° = -135.4 ΚΙ AH° = -296.8 kJ AH° = -+97.3 kJ ΔΗ° = -393.5 ΚΙ AH° = -5.2 kJ
CCI4, an important commercial solvent, is prepared by the reaction of Cl2(g) with a carbo compound. Determine AH° for the reaction CS2(1) + 3 Cl2(g) → CC14(1) + S2Cl2(1) Use appropriate data from the following listing. CS2(1) +3 O2(g) → CO2(g) + 2 SO2(g) 2 S(s) + Cl2(g) → S2Cl2(1) → C(s) + 2 Cl2(g) CCI 4(1) S(s) + O2(g) SO2(g) SO2(g) + Cl2(g) → SO2Cl2(1) C(s) + O2(g) CO2(g) CC14(1) + O2(g) COCl2(g) + Cl₂O(g) → AH° = ? ΔΗ° = - 1077 ΚΙ ΔΗ° = -58.2 ΚΙ ΔΗ° = -135.4 ΚΙ AH° = -296.8 kJ AH° = -+97.3 kJ ΔΗ° = -393.5 ΚΙ AH° = -5.2 kJ
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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
Transcribed Image Text:CCI4, an important commercial solvent, is prepared by the reaction of Cl2(g) with a carbo
compound. Determine AH° for the reaction
CS2(1) + 3 Cl2(g) → CC14(1) + S2Cl2(1)
Use appropriate data from the following listing.
CS2(1) +3 O2(g) → CO2(g) + 2 SO2(g)
2 S(s) + Cl2(g) → S2Cl2(1)
→
C(s) + 2 Cl2(g) CCI 4(1)
S(s) + O2(g) SO2(g)
SO2(g) + Cl2(g) → SO2Cl2(1)
C(s) + O2(g) CO2(g)
CC14(1) + O2(g) COCl2(g) + Cl₂O(g)
→
AH° = ?
ΔΗ° = - 1077 ΚΙ
ΔΗ° = -58.2 ΚΙ
ΔΗ° = -135.4 ΚΙ
AH° = -296.8 kJ
AH° = -+97.3 kJ
ΔΗ° = -393.5 ΚΙ
AH° = -5.2 kJ
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