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Concentrations measured as a function of...

Concentrations measured as a function of time when gaseous `N_(2)O_(5)` at initial concentration of `0.0200 M` decomposes ot gaseous `NO_(2)"and"O_(2) "at" 50^(@)C.`The change in concentration with time is given by the following graph.

The rate of formation of `O_(2)` during the period 600-700 s is :

A

`4xx10^(-5) M//s`

B

`3xx10^(-5) M//s`

C

`5xx10^(-5)M//s`

D

`7.5xx10^(-6) M//s`

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The correct Answer is:
D
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Concentrations measured as a function of time when gaseous N_(2)O_(5) at initial concentration of 0.0200 M decomposes ot gaseous NO_(2)"and"O_(2) "at" 50^(@)C. The change in concentration with time is given by the following graph. The rate of decomposition of N_(2)O_(5) during the period 300-400 s is :

Concentrations measured as a function of time when gaseous N_(2)O_(5) at initial concentration of 0.0200 M decomposes ot gaseous NO_(2)"and"O_(2) "at" 50^(@)C. The change in concentration with time is given by the following graph. The instantaneous rate of disappearance of N_(2)O_(5) at the beginning of the reaction is :

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2N_(2)O_(5)(g)to4NO_(2)+O_(2)(g) What is the ratio of the rate of decomposition of N_(2)O_(5) to rate of formation of NO_(2)

The thermal decomposition of N_(2)O_(5) occues as: 2N_(2)O_(5) rarr 4NO_(2)+O_(2) Experimental studies suggest that rate of decomposition of N_(2)O_(5) rate of formation of NO_(2) or rate of formation of O_(2) all becomes double if concentration of N_(2)O_(5) is doubled. If rate of formation of O_(2) is 16 g//hr then rate of decomposition of N_(2)O_(5) and rate of formation of NO_(2) respectively is

Decompsition of H_(2)O_(2) follows a frist order reactions. In 50 min the concentrations of H_(2)O_(2) decreases from 0.5 to 0.125 M in one such decomposition . When the concentration of H_(2)O_(2) reaches 0.05 M, the rate of fromation of O_(2) will be

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