NO reacts with chlorine in a gas phase reaction to form NOCI. From the data below, determine the form of the equation that describes the relationship of the reaction rate to initial concentration of reactants. 2 NO + Cl₂ → 2 NOCI Run Initial [NO] Initial Rate 1 0.50 1.00 1.00 1 1 a) Rate = k[NO] b) Rate = k[NO][Cl₂] c) Rate = k[NO]² Initial [Cl₂] 0.50 1.00 0.50 1.14 M/hr 9.12 M/hr 4.56 M/hr d) Rate = k[NO]²[C1₂] e) Rate = k[NO]²[C1₂]² f) Rate = k[Cl2₂]²

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NO reacts with chlorine in a gas phase reaction to form NOCI. From the data below,
determine the form of the equation that describes the relationship of the reaction rate
to initial concentration of reactants. 2 NO + Cl₂ → 2 NOCI
Run
Initial [NO]
Initial Rate
1
0.50
1.00
1.00
1
1
a) Rate = k[NO]
b) Rate = k[NO][Cl₂]
c) Rate = k[NO]²
Initial [Cl₂]
0.50
1.00
0.50
1.14 M/hr
9.12 M/hr
4.56 M/hr
d) Rate = k[NO]²[C1₂]
e) Rate = k[NO]²[C1₂]²
f) Rate = k[Cl2₂]²
Transcribed Image Text:NO reacts with chlorine in a gas phase reaction to form NOCI. From the data below, determine the form of the equation that describes the relationship of the reaction rate to initial concentration of reactants. 2 NO + Cl₂ → 2 NOCI Run Initial [NO] Initial Rate 1 0.50 1.00 1.00 1 1 a) Rate = k[NO] b) Rate = k[NO][Cl₂] c) Rate = k[NO]² Initial [Cl₂] 0.50 1.00 0.50 1.14 M/hr 9.12 M/hr 4.56 M/hr d) Rate = k[NO]²[C1₂] e) Rate = k[NO]²[C1₂]² f) Rate = k[Cl2₂]²
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