1 For the reaction. 4A(g) + 3B(g) →→→ 2C(g) The following data were obtained at constant temperature: Initial [A] Initial [B] Experiment Initial Rate(mol/L min) (mol/L) (mol/L) 1 0.100 0.100 5 2 0.300 0.100 45 3 0.100 0.200 10 4 0.300 0.200 90 Pick the best expression for the rate law for the reaction: Ok[A] [B]³ Ok[A] [B] Ok[A]²[B]¹.5 Ok[A][B] Calculate k (using the data from the table), L² mol 2 min1

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Chapter1: Chemical Foundations
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For the reaction 4A(g) + 3B(g) →→→ 2C(g)
The following data were obtained at constant temperature:
Experiment
Initial [A] Initial [B]
(mol/L) (mol/L)
Initial Rate(mol/L min)
1
0.100
0.100
5
2
0.300
0.100
45
3
0.100
0.200
10
4
0.300
0.200
90
Pick the best expression for the rate law for the reaction:
Ok[A] [B]³
Ok[A]²[B]
Ok[A]²[B]¹.5
O k[A][B]
Calculate k (using the data from the table),
L² mol min-1
Transcribed Image Text:For the reaction 4A(g) + 3B(g) →→→ 2C(g) The following data were obtained at constant temperature: Experiment Initial [A] Initial [B] (mol/L) (mol/L) Initial Rate(mol/L min) 1 0.100 0.100 5 2 0.300 0.100 45 3 0.100 0.200 10 4 0.300 0.200 90 Pick the best expression for the rate law for the reaction: Ok[A] [B]³ Ok[A]²[B] Ok[A]²[B]¹.5 O k[A][B] Calculate k (using the data from the table), L² mol min-1
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