10. A second-order reaction is found to take 159 seconds for the reactant concentration to drop from 1.3 M to 0.23 M. How much longer will it take for the reactant to further deplete by a concentration of 0.05 M?

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Chapter1: Chemical Foundations
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6.
Calculate the activation energy ofra reaction ir the rate constant at 765 K is 3.78x10" and
at 932 K it is 2,76x109.
7. Calculate the rate constant at 65°C for the reaction A+ 3B → 2C given that the rate
constant of the reaction is equal to 3.25x10 M's at 100 C. (Ea-137 kJ/mol).
S. A reaction rate is two thousand times faster at 46°C than at -12°C. Find the activation
energy of the reaction.
9. For a second-order reaction, the rate constant is 5.9x10 Msat 48°C and 5.9x10 M
slat 1°C. Find the activation energy of the reaction.
10. A second-order reaction is found to take 159 seconds for the reactant concentration to
drop from 1.3 M to 0.23 M. How much longer will it take for the reactant to further
deplete by a concentration of 0.05 M?
Transcribed Image Text:6. Calculate the activation energy ofra reaction ir the rate constant at 765 K is 3.78x10" and at 932 K it is 2,76x109. 7. Calculate the rate constant at 65°C for the reaction A+ 3B → 2C given that the rate constant of the reaction is equal to 3.25x10 M's at 100 C. (Ea-137 kJ/mol). S. A reaction rate is two thousand times faster at 46°C than at -12°C. Find the activation energy of the reaction. 9. For a second-order reaction, the rate constant is 5.9x10 Msat 48°C and 5.9x10 M slat 1°C. Find the activation energy of the reaction. 10. A second-order reaction is found to take 159 seconds for the reactant concentration to drop from 1.3 M to 0.23 M. How much longer will it take for the reactant to further deplete by a concentration of 0.05 M?
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