Chemical Kinetics In this lab, the kinetics of the decomposition of hydrogen peroxide, catalyzed by iodide ion, are explored. 2 H₂O2(aq) → 2 H₂O(1) + O2(9) Several different experiments are performed in order to determine the orders of reaction with respect to H₂O2 and r, as well as the specific rate constant (k). Why is it critical to maintain constant temperature during and between each experiment that is conducted? Kinetics.pdf OA. To ensure that the catalysis does not affect the rate of reaction. O B. To make sure the initial molarities calculated for H2O2 remain constant. O C. Lower temperatures could result in a lower rate of reaction making it harder to determine the volume of O2 evolved. O D. To validate the assumption in the calculations that the rate constant, k, remains constant throughout the experiments. O E. Higher temperatures could result in the decomposition of H2O2 used in this experiment.

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QUESTION 4
Chemical Kinetics In this lab, the kinetics of the decomposition of hydrogen peroxide, catalyzed by iodide ion, are explored.
2 H₂O2(aq) → 2 H₂O(1) + O2(g)
Several different experiments are performed in order to determine the orders of reaction with respect to H202 and F, as well as the specific rate constant (k). Why is it
critical to maintain constant temperature during and between each experiment that is conducted?
Kinetics.pdf
OA. To ensure that the catalysis does not affect the rate of reaction.
O B. To make sure the initial molarities calculated for H2O2 remain constant.
O C. Lower temperatures could result in a lower rate of reaction making it harder to determine the volume of O2 evolved.
O D. To validate the assumption in the calculations that the rate constant, k, remains constant throughout the experiments.
O E. Higher temperatures could result in the decomposition of H2O2 used in this experiment.
4
Transcribed Image Text:QUESTION 4 Chemical Kinetics In this lab, the kinetics of the decomposition of hydrogen peroxide, catalyzed by iodide ion, are explored. 2 H₂O2(aq) → 2 H₂O(1) + O2(g) Several different experiments are performed in order to determine the orders of reaction with respect to H202 and F, as well as the specific rate constant (k). Why is it critical to maintain constant temperature during and between each experiment that is conducted? Kinetics.pdf OA. To ensure that the catalysis does not affect the rate of reaction. O B. To make sure the initial molarities calculated for H2O2 remain constant. O C. Lower temperatures could result in a lower rate of reaction making it harder to determine the volume of O2 evolved. O D. To validate the assumption in the calculations that the rate constant, k, remains constant throughout the experiments. O E. Higher temperatures could result in the decomposition of H2O2 used in this experiment. 4
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