Answer:
Numbers of electrons transferred in the electrolytic or voltaic cell is 6 electrons.
Step-by-step explanation:
![Fe^(3+) (aq) + 3 e^-\rightarrow Fe (s) ,E^o = -0.036 V](https://img.qammunity.org/2020/formulas/chemistry/college/u6jz8r3hd5y0h7mg5zpjv96mkf3xseuceo.png)
![Mg^(2+)(aq) + 2 e^- \rightarrow Mg (s),E^o = -2.37 V](https://img.qammunity.org/2020/formulas/chemistry/college/k8ujoj2e9kf4kgwqvxw69t4t9mf8g9qdlz.png)
The substance having highest positive reduction
potential will always get reduced and will undergo reduction reaction.
Reduction : cathode
..[1]
Oxidation: anode
..[2]
Oxidation reaction occurs at anode and reduction reaction occurs at cathode.
To calculate the
of the reaction, we use the equation:
![E^o_(cell)=E^o_(red,cathode)-E^o_(red,anode)](https://img.qammunity.org/2020/formulas/chemistry/high-school/q2lvvj1fk7ey64ml7e5c5kpc6ls809d9ya.png)
![E^o_(cell)=-0.036V-(-2.37 V)=2.334 V](https://img.qammunity.org/2020/formulas/chemistry/college/a69nqhxg8foi5qzbay7sipy4b2u1qzxhbi.png)
The overall reaction will be:
2 × [1] + 3 × [2] :
![2Fe^(3+) (aq) + 3Mg(s)+6e^-\rightarrow 2Fe (s)+3Mg^(2+)(aq)+6e^-](https://img.qammunity.org/2020/formulas/chemistry/college/qqki1ygop1yvu4qg1i3yq521aqis533hjn.png)
Electrons on both sides will get cancelled :
![2Fe^(3+) (aq) + 3Mg(s)\rightarrow 2Fe (s)+3Mg^(2+)(aq)](https://img.qammunity.org/2020/formulas/chemistry/college/itzq09vieihl16t9p6abtmauu3kaefrbk3.png)
Numbers of electrons transferred in the electrolytic or voltaic cell is 6 electrons.