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The decomposition of N(2) O(5) by 2N(2) ...

The decomposition of `N_(2) O_(5)` by `2N_(2) O_(5) to 4NO_(2) + O_(2)` follows first order kinetics. Select the incorrect statement.

A

the reaction is bimolecular

B

the reaction is unimolecular

C

t_(1/2).prop a^0

D

none of the above

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The correct Answer is:
C
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The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: Calculate the rate constant.

The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: What is the rate law?

The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: Find the half-life period for the reaction.

The decomposition of N_(2) O_(5) according to the equation, 2N_(2) O_(5) (g) to 4NO_(2) (g) + O_(2) (g) is a first order reaction. After 30 minutes from the start of the decomposition in a closed vessel, the total pressure developed is found to be 284.5 mm of Hg and on complete decomposition, the total pressure is 584.5 mm of Hg. Calculate the rate constant of the reactions.

The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: Calculate the half-life period from k and compare it with above.

The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: Draw a graph between log [N_(2) O_(5)] and t .

The experimental data for the decomposition of N_(2) O_(5) , [2N_(2) O_(5) to 4NO_(2) + O_(2)] in gas phase of 318 K are given below: Plot [N_(2) O_(5) ] against t .

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