What is the \Delta rG for the following reaction (in kJ mol-1) at 298 K? CH4 (g) + 2 O2 (g) CO2 (g) + 2 H2O (g) The conditions for this reaction are: PCH4 1.93 bar PO2 = 1.81 bar PCO2 1.99 bar PH2O 0.53 bar You will also need to use Appendix II in your textbook ( containing standard Gibbs energies of formation). A copy of Appendix II has also been posted on eClass. Please use the method of Gibbs energy of formation to calculate \Delta rG\deg if needed. For partial credit, enter the value of "Q" for this reaction.

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What is the \Delta rG for the following reaction (in kJ mol-1)
at 298 K?
CH4 (g) + 2 O2 (g) CO2 (g) + 2 H2O (g)
The conditions for this reaction are:
PCH4 1.93 bar
PO2 = 1.81 bar
PCO2 1.99 bar
PH2O 0.53 bar
You will also need to use Appendix II in your textbook (
containing standard Gibbs energies of formation). A copy of
Appendix II has also been posted on eClass.
Please use the method of Gibbs energy of formation to
calculate \Delta rG\deg if needed.
For partial credit, enter the value of "Q" for this reaction.
Transcribed Image Text:What is the \Delta rG for the following reaction (in kJ mol-1) at 298 K? CH4 (g) + 2 O2 (g) CO2 (g) + 2 H2O (g) The conditions for this reaction are: PCH4 1.93 bar PO2 = 1.81 bar PCO2 1.99 bar PH2O 0.53 bar You will also need to use Appendix II in your textbook ( containing standard Gibbs energies of formation). A copy of Appendix II has also been posted on eClass. Please use the method of Gibbs energy of formation to calculate \Delta rG\deg if needed. For partial credit, enter the value of "Q" for this reaction.
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