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Iron reacts rapidly with chlorine gas to form a reddish brown, ionic compound (A), which contains iron in the higher of its two common oxidation states. Strong heating decomposes compound A to compound B, another ionic compound, which contains iron in the lower of its two oxidation states. When compound A is formed by the reaction of 50.6 g of Fe and 83.8 g of Cl2 and then heated, how much compound B forms?

Short Answer

Expert verified

You need to calculate when compound A is formed by the reaction of 50.6 g of Fe and 83.8 g of Cl2 and then heated, how much compound B forms.

Step by step solution

01

Balanced equation

Iron reacts with chlorine and forms iron chloride (compound A). The balanced equation is

3Fe(s)+CI2(g)→2FeCI3(s)

02

Calculation of moles of Fe

According to the question,

Mass of Fe = 50.6g

Molecular mass of Fe = 55.85g/mol

Again you know,

moles=mass(given)mass(molar)

Moles of Fe

=50.655.85(mol=0.906(mol)

Hence, moles of Fe are 0.906mol.

03

Calculation of moles of FeCl3 when Fe is limiting reagent

According to the balanced equation

3Fe(s)+CI2(g)→2FeCI3(s)

3 moles of Fe produces 2 moles FeCl3

Now, moles of FeCl3

=0.906×22(mol)=0.906(mol)

Hence, moles of FeCl3 when Fe is limiting reagent are 0.906mol.

04

Calculation of moles of Cl2

According to the question,

Mass of Cl2 = 83.8g

Molecular mass of Cl2 = 70g/mol

Again you know,

moles=mass(given)mass(molar)

Moles of Cl2

=83.870(mol)=1.197(mol)

Hence, moles of Cl2 are 1.197mol.

05

Calculation of moles of FeCl3 when Cl2 is limiting reagent

According to the balanced equation

3Fe(s)+CI2(g)→2FeCI3(s)

1 mole of Cl2 produces 2 moles FeCl3

Now, moles of FeCl3

=1.197×23(mol)=0.798(mol)

Hence, moles of FeCl3 when Cl2 is limiting reagent are 0.798mol.

06

Conclusion

Cl2 is the limiting reagent in this reaction as moles of FeCl3 is less in terms of Cl2.

07

Calculation of moles of compound B

FeCl3 dissociates to produce FeCl2 (compound B) and Cl2. The balanced equation is

2FeCI3(A)→2FeCI2(B)+CI2

Moles of FeCl3 = 0.798moles

According to the equation,

2 moles of FeCl3 produces 2 moles of FeCl2

Now moles of FeCl2

=0.798×22(mol)=0.798(mol)

08

Calculation of mass of compound B

Molecular mass of FeCl2 = 125.85g/mol

Again you know,

mass = moles x mass(molar)

Mass of FeCl2

=0.798×125.85(g)=100.4283(g)

Hence, mass of FeCl2 is 100.4283.

09

Conclusion

When compound A is formed by the reaction of 50.6 g of Fe and 83.8 g of Cl2 and then heated, the mass of compound B is 100.4283g.

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