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Assertion (A): For a Daniell cell : Zn...

Assertion `(A):` For a Daniell cell `:`
`Zn|Zn^(2+)||Cu^(2+)|Cu` with `E_(cell)=1.1V`, the application of opposite potential greater than `1.1V` results into the flow of electron from cathod to anode.

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Statement 1: For the Daniell cell, Zn|Zn^(2+)||Cu^(2+)|Cu with E_("cell")= 1.1 volt, the application of opposite potential greater than 1.1V results into flow of electrons from cathode to anode. Statement 2: Zn is deposited at anode and Cu is dissolved at cathode

A Daniell cell : Zn|Zn^(2+)||Cu^(2+)|Cu with E_(cell)=1.1V is given. Is this a spontaneous cell?

For the Daniell cell Zn| Zn^(2+) || Cu^(2+) | Cu with The questions consist of two statements each, printed as Assertion and Reason. While answering these questions you are required to choose any one of the following four responses : E_(cell) = 1.1 V , the application of oposite potential grater than 1.1 V results into folow of electron from Cu to Zn . Zn is deposited at anode and Cu is deposited at cathode .

Assertion : For the Daniel cell, Zn//Zn^(2+)||Cu^(2+)|Cu" with "E_(cell)=1.1V results into flow of electron from cathode to anode. Reason : Zn is deposited at anode and Cu is dissolved at cathode.