Account for the relationship between the rate of a reaction and its activation energy, and the relationship between the rate of the reaction and the reaction temperature. Group of answer choices The rate of reaction will increase as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will remain the same as the reaction temperature increases. The rate of reaction will increase as the activation energy increases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will remain the same as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will decrease as the reaction temperature increases.
Account for the relationship between the rate of a reaction and its activation energy, and the relationship between the rate of the reaction and the reaction temperature. Group of answer choices The rate of reaction will increase as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will remain the same as the reaction temperature increases. The rate of reaction will increase as the activation energy increases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will remain the same as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will decrease as the reaction temperature increases.
Account for the relationship between the rate of a reaction and its activation energy, and the relationship between the rate of the reaction and the reaction temperature. Group of answer choices The rate of reaction will increase as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will remain the same as the reaction temperature increases. The rate of reaction will increase as the activation energy increases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will remain the same as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases. The rate of reaction will increase as the activation energy decreases; the rate of reaction will decrease as the reaction temperature increases.
Account for the relationship between the rate of a reaction and its activation energy, and the relationship between the rate of the reaction and the reaction temperature.
Group of answer choices
The rate of reaction will increase as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases.
The rate of reaction will increase as the activation energy decreases; the rate of reaction will remain the same as the reaction temperature increases.
The rate of reaction will increase as the activation energy increases; the rate of reaction will increase as the reaction temperature increases.
The rate of reaction will remain the same as the activation energy decreases; the rate of reaction will increase as the reaction temperature increases.
The rate of reaction will increase as the activation energy decreases; the rate of reaction will decrease as the reaction temperature increases.
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
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