Please help me to solove this question step by step I need t

Please help me to solove this question step by step, I need to see all the details. Credits will not be given if there is only

answer provided (The correct answer is Eu, but I don\'t know how to get it)


In order to determine the identity of a particular lanthanide metal (M), a voltaic cell is constructed at 25 °C with the

anode consisting of the lanthanide metal as the electrode immersed in a solution of 0.0136 M MCl3, and the cathode

consisting of a copper electrode immersed in a 1.00 M Cu(NO3)2 solution. The two half-reactions are as follows. The

potential measured across the cell is 2.37 V. What is the identity of the metal?

M(s) à M3+(aq) + 3e–

Cu2+(aq) + 2e–à Cu(s)

Reduction Half-Reaction

â„° ° (V)

Reduction Half-Reaction

â„° ° (V)

Cu2+(aq) + 2e–à Cu(s)

0.34

Eu3+(aq) + 3e–à Eu(s)

–1.991

Ce3+(aq) + 3e–à Ce(s)

–2.336

Gd3+(aq) + 3e–à Gd(s)

–2.279

Dy3+(aq) + 3e–à Dy(s)

–2.295

Sm3+(aq) + 3e–à Sm(s)

–2.304

a) Ce

b) none of these

c) Dy

d) Gd

e) Eu



Reduction Half-Reaction

â„° ° (V)

Reduction Half-Reaction

â„° ° (V)

Cu2+(aq) + 2e–à Cu(s)

0.34

Eu3+(aq) + 3e–à Eu(s)

–1.991

Ce3+(aq) + 3e–à Ce(s)

–2.336

Gd3+(aq) + 3e–à Gd(s)

–2.279

Dy3+(aq) + 3e–à Dy(s)

–2.295

Sm3+(aq) + 3e–à Sm(s)

–2.304

Solution

emf = emf0 + (.059 log[M3+]^2/[cu+2]^3)/n

n = 6

2.64 = emf0 + .33

emfo = 2.31

here = emfo = 1.991 +.34 = 2.331

Please help me to solove this question step by step, I need to see all the details. Credits will not be given if there is only answer provided (The correct answ
Please help me to solove this question step by step, I need to see all the details. Credits will not be given if there is only answer provided (The correct answ

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