Answer:
ĪG° = -118x10³ J/mol
Explanation:
The two half-reactions in the cell are:
Oxidation half-reaction:
Co(s) ā Co²āŗ(aq) + 2eā»; E° = -0,28V
Reduction half-reaction:
Cu²āŗ(aq)+2eā» ā Cu(s); E° = 0,34V
The E° of the cell is defined as:
[tex]E_{cell} = E_{red} - E_{ox}[/tex]
Replacing:
0,34V - (-0,28V) = 0,62V
It is possible to obtain the keq from E°cell with Nernst equation thus:
nE°cell/0,0592 = log (keq)
Where:
E°cell is standard electrode potential (0.62 V)
n is number of electrons transferred (2 electrons, from the half-reactions)
Replacing:
0,62VĆ2/0,0592 = log (keq)
20,946 = log keq
keq = 8,83x10²ā°ā 5,88x10²ā°
ĪG° is defined as:
ĪG° = -RT ln Keq
Where R is gas constant (8,314472 J/molK) and T is temperature (298K):
ĪG° = -8,314472 J/molKĆ298K ln5,88x10²ā°
ĪG° = -118x10³ J/mol
I hope it helps!