A gas mixture was prepared at 561 K with total pressure 3.27 atm and a mole fraction of 2.63x10 of HI and 3.54x10 of CH3. The elementary reaction HI(g) + CH3(g) →I(g) + CH4(g) has a second-order rate constant of 3.50x10° L mol" s at this temperature. Calculate the initial rate of the reaction under these conditions. mol L-s

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A gas mixture was prepared at 561 K with total pressure 3.27 atm and a mole
fraction of 2.63x10 of HI and 3.54x10 of CH3. The elementary reaction
HI(g) + CH3(g) I(g) + CH,(g)
has a second-order rate constant of 3.50x10' L mol s at this temperature.
Calculate the initial rate of the reaction under these conditions.
mol L's
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Transcribed Image Text:A gas mixture was prepared at 561 K with total pressure 3.27 atm and a mole fraction of 2.63x10 of HI and 3.54x10 of CH3. The elementary reaction HI(g) + CH3(g) I(g) + CH,(g) has a second-order rate constant of 3.50x10' L mol s at this temperature. Calculate the initial rate of the reaction under these conditions. mol L's Submit Answer 5 question attempts remaining
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