Calculate Δ?∘ΔG∘ at 298 K for the reaction CS2(l)+3O2(g)⟶CO2(g)+2SO2(g)CS2(l)+3O2(g)⟶CO2(g)+2SO2(g) based on these reactions. C(s)+O2(g)⟶CO2(g)Δ?∘=−397.28 kJ/molC(s)+O2(g)⟶CO2(g)ΔG∘=−397.28 kJ/mol S(s)+O2(g)⟶SO2(g)Δ?∘=−300.19 kJ/molS(s)+O2(g)⟶SO2(g)ΔG∘=−300.19 kJ/mol C(s)+2S(s)⟶CS2(l)Δ?∘=+62.37 kJ/molC(s)+2S(s)⟶CS2(l)ΔG∘=+62.37 kJ/mol Δ?∘=

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter17: Chemcial Thermodynamics
Section: Chapter Questions
Problem 17.38QE
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Calculate Δ?∘ΔG∘ at 298 K for the reaction

 

CS2(l)+3O2(g)⟶CO2(g)+2SO2(g)CS2(l)+3O2(g)⟶CO2(g)+2SO2(g)

 

based on these reactions.

 

C(s)+O2(g)⟶CO2(g)Δ?∘=−397.28 kJ/molC(s)+O2(g)⟶CO2(g)ΔG∘=−397.28 kJ/mol

 

 

S(s)+O2(g)⟶SO2(g)Δ?∘=−300.19 kJ/molS(s)+O2(g)⟶SO2(g)ΔG∘=−300.19 kJ/mol

 

 

C(s)+2S(s)⟶CS2(l)Δ?∘=+62.37 kJ/molC(s)+2S(s)⟶CS2(l)ΔG∘=+62.37 kJ/mol

 

Δ?∘=
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