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[" Calculate "Delta_(r)G^(@)" and log "K_(c)" for the following reaction at "298K.],[2Cr_((s))+3C_((ga))^(2+)longrightarrow2Cr_((aq))^(3+)+3Cd_((s))],[" [Given : "E_(" cell ")^(@)=+0.34V,IF=96500Cmol^(-1)]]

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Calculate Delta_(r)G^(@) and log K_(c) for the following reaction at 298 K. 2Cr_((s))+Cd_((aq))^(3+)+33Cd_((s)){Given :E^(@)""_(Cell")=+0.34V,IF=96500Cmol^(-1)]

Calculate DeltaG^(@) and log K_(c) for the following reaction at 298 K : 2Al(s)+3Cu^(2+)(aq)rarr2Al^(3+)(aq)+3Cu(s) Given E_(cell)^(@) =2.02 V

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Calculate E_(cell)^(@) for the following reaction at 298 K : 2 Cr (s ) + 3 Fe^(2+) (0.01 M) to 2 Cr^(3+) (0.01 M) + 3 Fe (s) Given : E_(cell) = 0.261 V

Caculate the E_(cell)^@ for the following reaction at 298K: 2Cr(s)+3Fe^(2+)(0.01M)rarr2Cr^(3+)(0.01M)+3Fe(s) Given E_(cell)=0.261V .

Calculate E_("cell")^(@) for the following reaction at 298K : 2Al(s)+3Cu^(2+)(0.01M)rarr 2Al^(3+)(0.01M)+3Cu(s) [GIven E_(cell)=1.98V ]

Calculate Delta ,G^@ and log K_c for the following reation: Cd^(+2)(aq)+Zn^(2+)(aq)+Cd(s) Given : E_(cd^(2+)//cd)^(0)=0.403 V E_(Zn^2+//Zn)^(0)=0.763 V

Calculate Delta ,G^@ and log K_c for the following reation: Cd^(+2)(aq)+Zn^(2+)(aq)+Cd(s) Given : E_(cd^(2+)//cd)^(0)=0.403 V E_(Zn^2+//Zn)^(0)=0.763 V