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15.2 Algorithmic Questions 1) Given the following balanced equation, determine the rate of reaction with respect to [SO2]. 2 SO2(g) + O2(g) → 2 SO3(g) A) Rate = – B) Rate = + C) Rate = – D) Rate = + E) It is not possible to determine without more information. 2) Given the following balanced equation, determine the rate of reaction with respect to [O2]. 2 SO2(g) + O2(g) → 2 SO3(g) A) Rate = – B) Rate = + C) Rate = – D) Rate = + E) It is not possible to determine without more information. 3) Given the following balanced equation, determine the rate of reaction with respect to [SO3]. 2 SO2(g) + O2(g) → 2 SO3(g) A) Rate = – B) Rate = + C) Rate = – D) Rate = – E) It is not possible to determine without more information. 4) Given the following balanced equation, determine the rate of reaction with respect to [O2]. 2 O3(g) → 3 O2(g) A) Rate = + B) Rate = – C) Rate = + D) Rate = – E) It is not possible to determine without more information. 5) Given the following balanced equation, determine the rate of reaction with respect to [H2]. N2(g) + 3 H2(g) → 2 NH3(g) A) Rate = + B) Rate = – C) Rate = + D) Rate = – E) It is not possible to determine without more information. 6) The rate of disappearance of HBr in the gas phase reaction 2HBr(g) → (g) + (g) is 0.301 M at 150°C. The rate of appearance of is ________ M . A) 1.66 B) 0.151 C) 0.0906 D) 0.602 E) 0.549 7) The rate of disappearance of HBr in the gas phase reaction 2HBr(g) → (g) + (g) is 0.190 M at 150°C. The rate of appearance of H2 is ________ M . A) 2.63 B) 0.0950 C) 0.0361 D) 0.380 E) 0.0860 8) The combustion of ethylene proceeds by the reaction (g) + (g) → (g) + O(g) When the rate of disappearance of is 0.28 M , the rate of appearance of is ________ A) 0.19 B) 0.093 C) 0.84 D) 0.42 E) 0.56 9) The combustion of ethylene proceeds by the reaction (g) + 3(g) → 2C(g) + O(g) When the rate of disappearance of is 0.23 M , the rate of disappearance of is ________ A) 0.15 B) 0.077 C) 0.69 D) 0.35 E) 0.46 10) Given the following balanced equation, determine the rate of reaction with respect to [Cl2]. If the rate of Cl2 loss is 4.24 × 10-2 M/s, what is the rate of formation of NOCl? 2 NO(g) + Cl2(g) → 2 NOCl(g) A) 4.24 × 10-2 M/s B) 2.12 × 10-2 M/s C) 1.06 × 10-1 M/s D) 8.48 × 10-2 M/s E) 1.61 × 10-2 M/s

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