A gas mixture containing CH, fragments, C,H, molecules, and an inert gas (He) was prepared at 600.0 K with a total pressure of 5.42 atm. The elementary reaction CH, + C,Hg → CH, + C,Hg has a second-order rate constant of 3.00 × 10ʻLM · s. Given that the mole fractions of CH3 and C,H, are 0.000920 and 0.000720, respectively, calenlate the initial rate of the reaction at this temperature. Mis

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A gas mixture containing CH, fragments, C,H, molecules, and an inert gas (He) was prepared at
600.0 K with a total pressure of 5.42 atm. The elementary reaction
CH, + C,H, → CH, + C,Hg
has a second order rate constant of 3.00 x 10M s. Given that the mole fractions of CH, and C,H, are
0.000920 and 0.000720, respectively, calculate the initial rate of the reaction at this temperature.
M/s
Transcribed Image Text:A gas mixture containing CH, fragments, C,H, molecules, and an inert gas (He) was prepared at 600.0 K with a total pressure of 5.42 atm. The elementary reaction CH, + C,H, → CH, + C,Hg has a second order rate constant of 3.00 x 10M s. Given that the mole fractions of CH, and C,H, are 0.000920 and 0.000720, respectively, calculate the initial rate of the reaction at this temperature. M/s
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