et compounds of iron You are studying coordination with cyanide ligands. You add 0.270 g of yellow potassium ferrocyanide to 1.00 liters of a solution of excess potassium nitrite. You observe that the pH increases from neutral to 11.17 and the color changes from yellow to red. You isolate a red crystalline compound, and hypothesize that at least one of the cyanide ligands has been substituted for nitrosyl (NO): K_Fe(CN) + (x)KNO₂ + H₂O → K₁₂Fe(CN).x(NO)x + (x)KCN + (2x)KOH How many grams of iron are contained in 0.150 g of the red complex?

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You are studying coordination compounds of iron
with cyanide ligands. You add 0.270 g of yellow
potassium ferrocyanide to 1.00 liters of a solution of
excess potassium nitrite. You observe that the pH
increases from neutral to 11.17 and the color
changes from yellow to red. You isolate a red
crystalline compound, and hypothesize that at least
one of the cyanide ligands has been substituted for
nitrosyl (NO):
2
K Fe(CN) + (x)KNO₂ + H₂O → KFe(CN)x(NO)x +
(x)KCN + (2x)KOH
Question 29 of 29
How many grams of iron are contained in 0.150 g
of the red complex?
11
#tv ♫
C
STEZA
7
+/-
Transcribed Image Text:2/7 ver ean d 5d 5d and net 5 5d 8 3C us 5d < ous 5d practice que on 8 #2 mous 5d You are studying coordination compounds of iron with cyanide ligands. You add 0.270 g of yellow potassium ferrocyanide to 1.00 liters of a solution of excess potassium nitrite. You observe that the pH increases from neutral to 11.17 and the color changes from yellow to red. You isolate a red crystalline compound, and hypothesize that at least one of the cyanide ligands has been substituted for nitrosyl (NO): 2 K Fe(CN) + (x)KNO₂ + H₂O → KFe(CN)x(NO)x + (x)KCN + (2x)KOH Question 29 of 29 How many grams of iron are contained in 0.150 g of the red complex? 11 #tv ♫ C STEZA 7 +/-
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