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[N(2)O(5)" decomposes to "NO(2)" and "O(...

[N_(2)O_(5)" decomposes to "NO_(2)" and "O_(2)" and "],[" follows first order kinetics.After "],[50" minutes,the pressure inside the vessel "],[" increases from "50mmHg" to "87.5mmHg" ."],[" The pressure of the gaseous mixture after "],[100" minute at constant temperature will "]

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N_(2)O_(5) decomposes to NO_(2) and O_(2) and follows first order kinetics. After 50 minutes the pressure inside the vessel increases from 50 mm Hg to 87.5 mmHg . The pressure of the gaseous mixture afte 100 minute at constant temperature will be :

The reaction 2N_(2)O_(5)(g)rarr4NO_(2)(g)+O_(2)(g) follows first order kinetics. The pressure of a vessel containing only N_(2)O_(5) was found to increase from 50 mm Hg to 87.5 mm Hg in 30 mim. The pressure exerted by the gases after 60 min. will be (Assume temperature remains constant):

The reaction 2N_(2)O_(5)(g)rarr4NO_(2)(g)+O_(2)(g) follows first order kinetics. The pressure of a vessel containing only N_(2)O_(5) was found to increase from 50 mm Hg to 87.5 mm Hg in 30 mim. The pressure exerted by the gases after 60 min. will be (Assume temperature remains constant):