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(a) Calculate Delta(r)G^(@) for the reac...

(a) Calculate `Delta_(r)G^(@)` for the reaction `Mg(s)+Cu^(2)(aq)rarrMg^(2+)(aq)+Cu(s)`
Given : `E^(@)cell=+2.71 V,1F=96500 C mol^(-1)`
(b) Name the type of cell which was used Apollo space progromme for providing electrical, power

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(a) Calculate Delta_(r)G^(@) for the reaction Mg(s)+Cu^(2)(aq)rarrMg^(2+)(aq)+Cu(s) Given : E^(@)cell=+2.71 V,1F=96500 C mol^(-1) (b) Name the type of cell which was used Apollo space programme for providing electrical power

Calculate Delta_(r)G^(@) for the reaction : Mg(s)+Cu^(2+)(aq) to Mg^(2+)(aq)+Cu(s) [Given E_(cell)^(@)=+2.71" V ", 1F=96500" C " ]

Calculate the equilibrium costant log (K_(c)) for the reaction Zn(s)+Cu^(2+)(aq)rarrZn^(2+)(aq)+Cu(s) [Given E_(cell)^(2)=1.1 V ]

Represent the cell for the reaction Mg_(s)+Cu_(aq)^(+2)rarrMg_(aq)^(+2)+Cu_(s)

Calculate equilibrium constant for the reaction at 25^(@)C Cu(s)+2Ag^(+)(aq) hArr Cu^(2+)(aq)+2Ag(s) E^(@) value of the cell is 0.46 " V " .

What is the Gibbs energy of the following reaction? Zn(s)+Cu^(2+) (aq) rarr Zn^(2+)(aq)+Cu^(2+) (s), E_("cell")^(@)=1.1 V

The equilibrium constant (K) for the reaction Cu(s)+2Ag^(+) (aq) rarr Cu^(2+) (aq)+2Ag(s) , will be [Given, E_(cell)^(@)=0.46 V ]

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