18. The oxidation of NO to NO,, 2 NO(g) + 0,(g) 2 NO,(g) is exothermic. Predict the effect of each of these changes on the position of the equilibrium; that is, state which way the equilibrium will shift (left, right, or no change) when each change is made in a constant-volume system. a) Adding more O, b) Adding more NO, ) Lowering the temperature

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18. The oxidation of NO to NO,
2 NO(g) + 0,(g) 2 NO,(g)
is exothermic. Predict the effect of each of these changes on the position of the equilibrium; that is, state which way the
equilibrium will shift (left, right, or no change) when each change is made in a constant-volume system.
a) Adding more O,
b) Adding more NO,
c) Lowering the temperature
Transcribed Image Text:18. The oxidation of NO to NO, 2 NO(g) + 0,(g) 2 NO,(g) is exothermic. Predict the effect of each of these changes on the position of the equilibrium; that is, state which way the equilibrium will shift (left, right, or no change) when each change is made in a constant-volume system. a) Adding more O, b) Adding more NO, c) Lowering the temperature
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