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[" Calculate the number of mililitres of "NH_(3)(aq)" solution "(d=0.986g/mL)" contain "2.5%" by "],[" weight "NH_(3)" ,which will be required to precipitate iron as "Fe(OH)_(3)" in a "0.8g" sample that "],[" (a) "0.344mL" ."]

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Calculate the number of millilitre of NH_(3) (aq) solution (d=0.986g/ml) contain 2.5% by mass NH_(3) , which will be required to precipitate iron as Fe(OH)_(3) in a 0.8 g sample that contains 50% Fe_(2)O_(3) .

Calculate the number of millilitre of NH_(3) (aq) solution (d=0.986g/ml) contain 2.5% by mass NH_(3) , which will be required to precipitate iron as Fe(OH)_(3) in a 0.8 g sample that contains 50% Fe_(2)O_(3) .

Calculate the number of millilitre of NH_3 (aq) solution (d=0.986 g/mL) contain 2.5% by mass NH_3 , which will be required to precipitate iron as Fe(OH)_3 in a 0.8g sample that contains 50% Fe_2O_3 .

Calculate the number of millilitre of NH_3 (aq) solution (d=0.986 g/mL) contain 2.5% by mass NH_3 , which will be required to precipitate iron as Fe(OH)_3 in a 0.8g sample that contains 50% Fe_2O_3 .

Calculate the number of millilitre of NH_3 (aq) solution (d=0.986 g/mL) contain 2.5% by mass NH_3 , which will be required to precipitate iron as Fe(OH)_3 in a 0.8g sample that contains 50% Fe_2O_3 .

The density of NH_(4)OH solution is 0.6g//mL . It contains 34% by weight of NH_(4)OH . Calculate the normality of the solution:

The density of NH_(4)OH solution is 0.6g//mL . It contains 34% by weight of NH_(4)OH . Calculate the normality of the solution:

The density of NH_(4)OH solution is 0.6g//mL . It contains 34% by weight of NH_(4)OH . Calculate the normality of the solution:

The density of NH_4OH solution is found to be 0.6 g/ml. It contains 34% by weight of NH_4OH . Calculate the normality of the solution.