Consider the reaction data. \( \mathrm{A} \longrightarrow \) products \begin{tabular}{|c|c|} \hline \( \boldsymbol{T}(\mathbf{K}) \) & \( \boldsymbol{k}\left(\mathrm{s}^{\mathbf{- 1}}\right) \) \\ \hline 225 & 0.381 \\ \hline 875 & 0.857 \\ \hline \end{tabular} What two points should be plotted to graphically determine the activation energy of this reaction? To avoid rounding errors, use at least three significant figures in all values. \[ x_{1}= \] \[ y_{1}=\square \] \[ x_{2}= \] \[ y_{2}= \] Determine the rise, run, and slope of the line formed by these points. rise: run: slope: What is the activation energy of this reaction? \[ E_{\mathrm{a}}= \] \( \mathrm{J} / \mathrm{mol} \)
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314 J/mol·K), and \(T\) is the temperature in Kelvin. To graphically determine the activation energy, we can use the linear form of the Arrhenius equation: \(\ln(k) = \ln(A) - \frac{E_a}{R} \cdot \frac{1}{T}\). Show more…
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Consider the reaction data. A ightarrow products T (K) k (s^-1) 275 0.373 525 0.865 What two points should be plotted to graphically determine the activation energy of this reaction? To avoid rounding errors, use at least three significant figures in all values. Determine the rise, run, and slope of the line formed by these points. rise: run: slope: What is the activation energy of this reaction? Ea = J/mol
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