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Consider the following E^@ values . E(F...

Consider the following ` E^@` values . `E_(Fe^(3+)//Fe^(2+)^@ = + 0.77 V`,
`E_(Sn^(2+)//Sn)^@=- 15. V` The `E_(cell)^@` for the reaction ,
`Sn (s) + 2Fe_(aq)^(3+) rarr 2 Fe_(aq.)^(2+) + Sn_(aq.)^(2+) is :

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Consider the following E^@ values . E_(Fe^(3+)//Fe^(2+)^@ = + 0.77 V , E_(Sn^(2+)//Sn)^@=- 0.14 V The E_(cell)^@ for the reaction , Sn (s) + 2Fe^(3+)(aq) rarr 2 Fe^(2+)(aq)+ Sn^(2+)(aq) is ? (a) -0.58 V (b) -0.30 V (c) +0.30V (d) +0.58 V

Consider the following E_(0) values, E_(Fe^(3+)//F^(2+))^(0)=+0.77V, E_(Sn^(2+)//Sn)^(0)=-0.14V , the E_(cell)^(0) for the reaction, Sn_((s))+2Fe_((aq.))^(3+)rarr2F_((aq.))^(2+)+Sn_((aq.))^(2+) is:

Consider the following E^(0) values E_(Fe^(3+) // Fe^(2+))^(0) = + 0.77 V , E_(Sn^(2+) // Sn)^(0)=-0.14 V Under standard condition the potential for the reaction Sn_((s)) + 2Fe_((aq))^(3+) to 2Fe_((aq))^(2+) + Sn_((aq))^(2+) is

Consider the following E^o values : E^o _Fe^(3+)//FE^(2+)o = + 0.77 V E_(Sn^(2+)//Sn) =- 0.14 V Under standard conditions the potential for reaction Sn(s) +2Fe^(3+) (aq) rarr 2Fe^(2+) (sq) + Sn^(2+) (aq) is.

Consider the following E^o values : E^o _Fe^(3+)//FE^(2+)o = + 0.77 V E_(Sn^(2+)//Sn) =- 0.14 V Under standard conditions the potential for reaction Sn(s) +2Fe^(3+) (aq) rarr 2Fe^(2+) (sq) + Sn^(2+) (aq) is.

Consider the following E^(@) values E^(o)""_(Fe^(3+)//Fe^(2+))= +0.77 V" "E^(o)""_(Sn^(2+)//Sn)= 0.14V Under standard conditions the EMF for the reaction Sn(s) + 2Fe^(3+) (aq) rarr 2Fe^(2+)(aq)+Sn^(2+)(aq) is :

Consider the following E^(@) values E^(o)""_(Fe^(3+)//Fe^(2+))= +0.77 V" "E^(o)""_(Sn^(2+)//Sn)= 0.14V Under standard conditions the EMF for the reaction Sn(s) + 2Fe^(3+) (aq) rarr 2Fe^(2+)(aq)+Sn^(2+)(aq) is :