2 A+B+C → products Four trials of the reaction above were carried out in order to determine its rate law. The following data were collected. Initial rate [A] |C] Trial [B] M sec 0.02 0.02 0.02 1.6 x...


2 A+B+C → products<br>Four trials of the reaction above were carried out in order to determine its rate law. The following data were<br>collected.<br>Initial rate<br>[A]<br>|C]<br>Trial<br>[B]<br>M sec<br>0.02<br>0.02<br>0.02<br>1.6 x 10-3<br>2<br>0.01<br>0.02<br>0.02<br>8.0 x 104<br>3<br>0.01<br>0.04<br>0.02<br>1.6 x 10-3<br>4<br>0.01<br>0.04<br>0.03<br>1.6 x 10-3<br>As any trial of this reaction proceeds at constant temperature, the rate of the reaction<br>A) remains the same because no catalyst is added<br>B) remains the same because the temperature is constant<br>C) decreases because the concentrations of the reactants decrease<br>D) decreases because the effectiveness of collisions between molecules decreases<br>

Extracted text: 2 A+B+C → products Four trials of the reaction above were carried out in order to determine its rate law. The following data were collected. Initial rate [A] |C] Trial [B] M sec 0.02 0.02 0.02 1.6 x 10-3 2 0.01 0.02 0.02 8.0 x 104 3 0.01 0.04 0.02 1.6 x 10-3 4 0.01 0.04 0.03 1.6 x 10-3 As any trial of this reaction proceeds at constant temperature, the rate of the reaction A) remains the same because no catalyst is added B) remains the same because the temperature is constant C) decreases because the concentrations of the reactants decrease D) decreases because the effectiveness of collisions between molecules decreases

Jun 10, 2022
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