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Consider the Reaction 3A + B + C \to D + E Where the Rate Law Is Defined as

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Consider the reaction 3A + B + C \to D + E where the rate law is defined as  Consider the reaction 3A + B + C  \to  D + E where the rate law is defined as   . An experiment is carried out where [B]<sub>0</sub> = [C]<sub>0</sub> = 1.00 M and [A]<sub>0</sub> = 1.00  \times  10<sup>-</sup><sup>4</sup> M. -The concentration of A after 10.0 minutes is A) 1.06  \times  10<sup>-</sup><sup>9</sup> M B) 2.38  \times  10<sup>-</sup><sup>6</sup> M C) 9.80  \times  10<sup>-</sup><sup>6</sup> M D) 1.27  \times  10<sup>-</sup><sup>5</sup> M E) none of these .
An experiment is carried out where [B]0 = [C]0 = 1.00 M and [A]0 = 1.00 ×\times 10-4 M.
-The concentration of A after 10.0 minutes is


A) 1.06 ×\times 10-9 M
B) 2.38 ×\times 10-6 M
C) 9.80 ×\times 10-6 M
D) 1.27 ×\times 10-5 M
E) none of these

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