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[N(2)+3H(2)longrightarrow2NH(3).1molN(2)...

[N_(2)+3H_(2)longrightarrow2NH_(3).1molN_(2)" and "4molH_(2)" are taken in "15" Lflask at "27^(@)C" .After complete conversion of "N_(2)],[" into "NH_(3)" ,"5" L of "H_(2)O" is added.Pressure set up in the flask is: "]

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N_(2)+3H_(2)rarr2NH_(3) . 1 mol N_(2) and 4 mol H_(2) are taken in 15L flask at 27^(@)C After complete conversion of N_(2) into NH_(3),5L of H_(2)O is added. pressure set up in the flask is:

N_(2)+3H_(2)rarr2NH_(3) . 1 mol N_(2) and 4 mol H_(2) are taken in 15L flask at 27^(@)C After cmomplete conversion of N_(2) into NH_(3),5L of H_(2)O is added pressure set up in the flask is:

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2 "mole" N_(2) and 3 "mole" H_(2) gas are allowed to react in a 20 L flask at 400 K and after complete conversion of H_(2) into NH_(3) . 10 L H_(2)O was added and temperature reduced to 300 K . Pressure of the gas after reaction is : N_(2)+3H_(2)to2NH_(3)

2 "mole" N_(2) and 3 "mole" H_(2) gas are allowed to react in a 20 L flask at 400 K and after complete conversion of H_(2) into NH_(3) . 10 L H_(2)O was added and temperature reduced to 300 K . Pressure of the gas after reaction is : N_(2)+3H_(2)to2NH_(3)

2 "mole" N_(2) and 3 "mole" H_(2) gas are allowed to react in a 20 L flask at 400 K and after complete conversion of H_(2) into NH_(3) . 10 L H_(2)O was added and temperature reduced to 300 K . Pressure of the gas after reaction is : N_(2)+3H_(2)to2NH_(3)