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N2O5 decomposes to NO2 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:a)106.25 mmHgb)116.25 mmHgc)136.25 mmHgd)175.0 mmHgCorrect answer is option 'A'. Can you explain this answer? for JEE 2025 is part of JEE preparation. The Question and answers have been prepared
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N2O5 decomposes to NO2 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:a)106.25 mmHgb)116.25 mmHgc)136.25 mmHgd)175.0 mmHgCorrect answer is option 'A'. Can you explain this answer?, a detailed solution for N2O5 decomposes to NO2 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:a)106.25 mmHgb)116.25 mmHgc)136.25 mmHgd)175.0 mmHgCorrect answer is option 'A'. Can you explain this answer? has been provided alongside types of N2O5 decomposes to NO2 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:a)106.25 mmHgb)116.25 mmHgc)136.25 mmHgd)175.0 mmHgCorrect answer is option 'A'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice N2O5 decomposes to NO2 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:a)106.25 mmHgb)116.25 mmHgc)136.25 mmHgd)175.0 mmHgCorrect answer is option 'A'. Can you explain this answer? tests, examples and also practice JEE tests.