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N2O5 decomposes to NO and O2 and follows...

N2O5 decomposes to NO and O2 and follows first order kinetics. After 50 minutes, the pressure inside the vessel increases from 50 mmHg to 87.5 mmHg. The pressure of the gaseous mixture after 100 minute at constant temperature will be: [MAINS-2018(online)]

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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):