Consider the gaseous reaction, \( \mathrm{N}_{2}+3 \mathrm{H}_{2} \rightarrow 2 \mathrm{NH}_{3} ...
Consider the gaseous reaction, \( \mathrm{N}_{2}+3 \mathrm{H}_{2} \rightarrow 2 \mathrm{NH}_{3} \)
\( 1 \mathrm{~mol} \mathrm{~N}_{2} \) and \( 4 \mathrm{~mole}_{2} \) are taken in \( 15 \mathrm{~L} \) flask at \( 27^{\circ} \mathrm{C} \). After the completion of the reaction, \( 5 \mathrm{~L} \) of \( \mathrm{H}_{2} \mathrm{O} \) is added to the reaction vessel, pressure setup in the flask would be (assume conversion to be \( 100 \%) \)
(a) \( \frac{3 \times 0.0821 \times 300}{15} \mathrm{~atm} \)
(b) \( \frac{2 \times 0.0821 \times 300}{10} \mathrm{~atm} \)
- (c) \( \frac{1 \times 0.0821 \times 300}{15} \mathrm{~atm} \)
(d) \( \frac{1 \times 0.0821 \times 300}{10} \mathrm{~atm} \)
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