k 3) For the reaction NO2+ C0 → NO + CO2, the dependence of the rate constant 4 on temperature is shown as a graph In k vs 1/T. Determine: 2 y = -2000x + 10 a) activation energy, b) preexponential factor and c) rate constant at 100 C for this reaction. In k

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k
3) For the reaction NO2+ C0 → NO + CO2, the dependence of the rate constant
4
on temperature is shown as a graph In k vs 1/T. Determine:
2
y = -2000x + 10
a) activation energy, b) preexponential factor and c) rate constant at 100 C for this reaction.
In k
Transcribed Image Text:k 3) For the reaction NO2+ C0 → NO + CO2, the dependence of the rate constant 4 on temperature is shown as a graph In k vs 1/T. Determine: 2 y = -2000x + 10 a) activation energy, b) preexponential factor and c) rate constant at 100 C for this reaction. In k
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