Consider the Ellingham diagram shown below. Choose the INCORRECT statement among the following choices. Ag₂0 500 °C 1500 °C +250 CuQ AG rxn (kJ) O ZnO <-500 -1000 MgO is more stable than SiO, at all temperatures. At 500 °C, ZnO can be reduced to Zn through reaction with Mg. At 500 °C, Ag,0 is more thermodynamically stable than Ag. Ⓒ Above 1500 °C, CO cannot be reduced to C by coupling with the oxidation of Zn. SiO₂ MgO -C → CO₂ C→CO Cao 500 1000 1500 2000 2500 Temperature (°C)
Consider the Ellingham diagram shown below. Choose the INCORRECT statement among the following choices. Ag₂0 500 °C 1500 °C +250 CuQ AG rxn (kJ) O ZnO <-500 -1000 MgO is more stable than SiO, at all temperatures. At 500 °C, ZnO can be reduced to Zn through reaction with Mg. At 500 °C, Ag,0 is more thermodynamically stable than Ag. Ⓒ Above 1500 °C, CO cannot be reduced to C by coupling with the oxidation of Zn. SiO₂ MgO -C → CO₂ C→CO Cao 500 1000 1500 2000 2500 Temperature (°C)
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter16: Thermodynamics: Directionality Of Chemical Reactions
Section: Chapter Questions
Problem 103QRT
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