A 25.00-mL sample containing Fe3+ and Cu2+ required 16.06 mL of 0.050 83 M EDTA for complete titration. A 50.00-mL sample of the unknown was treated with NH4F to protect the Fe3+. Then Cu2+ was reduced and masked by thiourea. Addition of 25.00 mL of 0.050 83 M EDTA liberated Fe3+ from its fluoride complex to form an EDTA complex. The excess EDTA required 19.77 mL of 0.018 83 M Pb2+ to reach a xylenol orange end point. Find [Cu2+] in the unknown.

Short Answer

Expert verified

The amount of Cu2+ in the unknown will be 0.015M.

Step by step solution

01

Given information

Amount of sample containing Fe3+ and Cu2+ = 25 mL

Amount of unknown sample treated with NH4F to protect the Fe3+=50.00 mL

Amount required to form EDTA complex =25.00 mL of 0.05083 M EDTA liberated Fe3+ from its fluoride complex

Excess EDTA required to achieve xynol orange end point= 19.77 mL of 0.01883

02

EDTA

EDTA (Ethylenediaminetetraacetic acid) is a chelating compound used in different medicinal management like treatment of heavy metal toxicity, lead poisoning, neurotoxicity, coronary artery disease etc. This compound has several applications in industries, and laboratories also

03

Determine Cu2+

No of moles of Fe3+ and Cu2+ in 25.00 mL solution

=16.06mL×0.05083M=0.82mmol

For 2nd titration

No of moles of EDTA used = 25.00mL0.05083M=1.271mmol

No of moles of Pb2+ required =19.77mL0.01883M=0.372mmol

No of moles of Fe3+ present = (1.271-0.372)=0.899mmol

As 50 mL of unknown sample were used in 2nd titration

No of moles of Fe3+ present in 25 mL will be = 120.899mmol=0.449mmol

Therefore, no of moles of Cu2+ present in 25 mL will be

=0.82-0.449mmol=0.37mmol

Concentration of Cu2+

=0.37mmol25mL=0.0148M0.15M

Therefore, the amount of Cu2+ in the unknown will be 0.015M.

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Most popular questions from this chapter

State the purpose of an auxiliary complexing agent and give an example of its use.

Calcium ion was titrated with EDTA at pH 11, using Calmagite as indicator (Table 12-3). Which is the principal species of Calmagite at pH 11? What color was observed before the equivalence point? After the equivalence point?

Give three circumstances in which an EDTA back titration might be necessary

Spreadsheet equation for formation of the complexes ML and ML2.Consider the titration of metal M (initial concentration = CM, initial volume = VM) with ligand L (concentration = CL, volume added = VL), which can form 1:1 and 2 : 1 complexes:

M+L𝆏MLβ1=[ML][M][L]M+2L𝆏ML2β2=[ML2][M][L]2

Let αM be the fraction of metal in the form M, αML be the fraction in the form ML, and αML2be the fraction in the form ML2. Following the derivation in Section 12-5, you could show that these fractions are given by

role="math" localid="1667801924683" αM1=11+β1[L]+β2[L]2αML=β1[L]1+β1[L]+β2[L]2αML2=β2[L]21+β1[L]+β2[L]2

The concentrations of ML and ML2are

[ML]=αMLCMVMVM+VL[ML2]=αML2CMVMVM+VL

because CMVMVM+VLis the total concentration of all metal in the solution. The mass balance for ligand is

[L]+[ML]+2[ML2]=CMVMVM+VL

By substituting expressions for [ML] and [ML2] into the mass balance, show that the master equation for a titration of metal by ligand is

ϕ=CLVLVM+VM=αML+2αML2+LCM1-LCL

How many milliliters of 0.050 0 M EDTA are required to react with 50.0 mL of 0.010 0 M Ca2+? With 50.0 mL of 0.010 0 M Al3+?

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