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The rate of a reaction was followed by the absorption of light by the reactants and products as a function of wavelengths $\left(\lambda_{1}, \lambda_{2}, \lambda_{3}\right)$ as time progresses. Which of the following mechanisms is consistent with the experimental data?(a) $\mathrm{A} \longrightarrow \mathrm{B}, \mathrm{A} \longrightarrow \mathrm{C}$(b) $\mathrm{A} \longrightarrow \mathrm{B}+\mathrm{C}$(c) $\mathrm{A} \longrightarrow \mathrm{B}, \mathrm{B} \longrightarrow \mathrm{C}+\mathrm{D}$(d) $\mathrm{A} \longrightarrow \mathrm{B}, \mathrm{B} \longrightarrow \mathrm{C}$

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$$\text { (d) } A \longrightarrow B, B \longrightarrow C$$

Chemistry 102

Chapter 6

Chemical Kinetics

Kinetics

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In probability theory, the conditional probability of an event A given that another event B has occurred is defined as the probability of A given B, written as P(A|B). It is a function of the probability of B, the probability of A given B, and the probability of B.

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In chemistry, kinetics is the study of the rates of chemical reactions. The rate of a reaction is the change in concentration of a reactant over time. The rate of reaction is dependent on the concentration of the reactants, temperature, and the activation energy of the reaction.

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The rate of a reaction was…

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Okay, so we see this chart right here and we see that initially we started off with only a because there was only observance of a right. So a must be a first reacting. And now we see that B and C we both start off zero. But when we look at beauty, that increases, and then it decreases right with time. So a makes be and we see that see starts out with zero, but consistently increases. This means that be must be converted to see. And when we look at our answer sources, we see that answer D is our answer.

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