Calculate AGn for Equation 3 in Part A to show that this is a spontaneous process. Take AG"(CIO] = +33.5 kJ mol-1 and AG°{Os] = 71.47 kJ mol.

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Chapter6: Thermochemisty
Section: Chapter Questions
Problem 6.21QP: Is the following reaction the appropriate one to use in determining the enthalpy of formation of...
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a) Using the enthalpy of reaction for two reactions with ozone, determine the enthalpy
of reaction for the reaction of chlorine with ozone.
(1) CIO(g) + Oa(g) –→ CI(g) + 2 Oz(g)
AHm = -122.8 kJ mot
(2) 2 Os(g) → 3 Oz(9)
AH"om =-285.3 kJ mol
(3) Os(g) + CI(g) – CIO(g) + Oz(g)
AHnn =?
Transcribed Image Text:a) Using the enthalpy of reaction for two reactions with ozone, determine the enthalpy of reaction for the reaction of chlorine with ozone. (1) CIO(g) + Oa(g) –→ CI(g) + 2 Oz(g) AHm = -122.8 kJ mot (2) 2 Os(g) → 3 Oz(9) AH"om =-285.3 kJ mol (3) Os(g) + CI(g) – CIO(g) + Oz(g) AHnn =?
(1) CIO(g) + Os(g) → CI(g) + 2 Oz(g)
AH"om =-122.8 kJ mol
(2) 2 Os(g) – 3 O2(g)
AH"m = -285.3 kJ mot
(3) Os(g) + CI(g) → CIO(g) + Oz(g)
AHrn =?
b) Calculate AG°non for Equation 3 in Part A to show that this is a spontaneous process.
Take AG"(CIO] = +33.5 kJ mol and AG°{Os] = 71.47 kJ mo".
Transcribed Image Text:(1) CIO(g) + Os(g) → CI(g) + 2 Oz(g) AH"om =-122.8 kJ mol (2) 2 Os(g) – 3 O2(g) AH"m = -285.3 kJ mot (3) Os(g) + CI(g) → CIO(g) + Oz(g) AHrn =? b) Calculate AG°non for Equation 3 in Part A to show that this is a spontaneous process. Take AG"(CIO] = +33.5 kJ mol and AG°{Os] = 71.47 kJ mo".
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