At 400 °C, the AG* rxn for the oxidation of a monoatomic liquid element Z in the presence of O2(g) forming ZO(s) is -25.0 kJ per mol O₂. In the compound ZO(s), Z has a +2 formal charge. Which of the following statements is CORRECT? O Z cannot be oxidized to ZO because Z is more stable than ZO at 400 °C or any T above it. O ZO cannot be reduced back to Z at any temperature because reduction of ZO to Z has +AG. O The oxidation of Z with O₂ is exothermic. The oxidation of Z with O₂ is marked by an increase in entropy.

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Chapter1: Chemical Foundations
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At 400 °C, the AG*rxn for the oxidation of a monoatomic liquid element Z in the presence of O2(g) forming ZO(s)
is -25.0 kJ per mol O₂. In the compound ZO(s), Z has a +2 formal charge. Which of the following statements is
CORRECT?
O Z cannot be oxidized to ZO because Z is more stable than ZO at 400 °C or any T above it.
O ZO cannot be reduced back to Z at any temperature because reduction of ZO to Z has +AG.
O The oxidation of Z with O₂ is exothermic.
The oxidation of Z with O₂ is marked by an increase in entropy.
Transcribed Image Text:At 400 °C, the AG*rxn for the oxidation of a monoatomic liquid element Z in the presence of O2(g) forming ZO(s) is -25.0 kJ per mol O₂. In the compound ZO(s), Z has a +2 formal charge. Which of the following statements is CORRECT? O Z cannot be oxidized to ZO because Z is more stable than ZO at 400 °C or any T above it. O ZO cannot be reduced back to Z at any temperature because reduction of ZO to Z has +AG. O The oxidation of Z with O₂ is exothermic. The oxidation of Z with O₂ is marked by an increase in entropy.
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