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[(SH(4)CD)+(1(2)(9)longrightarrow C(2)H(...

[(SH_(4)CD)+(1_(2)(9)longrightarrow C_(2)H_(4)C_(2)CD)_(3)Delta H=-270*6kJmol^(-1)quad 9n],[Delta s=-139JK^(-1)" .What "13/_G" at "300K]

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C_(2)H_(4) +CI_(2) rarr C_(2)H_(4)CI_(2) DeltaH =- 270.6 kJ mol^(-1)K^(-1), DeltaS =- 139 J a. Is the reaction favoured by entropy, enthalpy both or none? b. Find DeltaG if T = 300K .

C_(2)H_(4) +CI_(2) rarr C_(2)H_(4)CI_(2) DeltaH =- 270.6 kJ mol^(-1)K^(-1), DeltaS =- 139 J a. Is the reaction favoured by entropy, enthalpy both or none? b. Find DeltaG if T = 300K .

For the reactions 4C _((g)) + 5 H _(2 (g)) to C _(4) H _(10) (n-bu tan e) Delta H ^(@) =- 133.7kJ/mol Delta S ^(@) =- 365.8 JK ^(-) mol ^(-1) 4 C _((g)) + 5 H _(2 (g)) to C _(4) H _(10) (Iso) Delta H ^(@) =- 132. 6 kJ mol ^(-1) Delta S ^(@) = 381J K ^(-1) mol ^(-1) What is Delta G^(@) for the conversion of n butane to isobutane and predict the nature of the process

Calculate the free energy change for the following reaction at 300 K. 2CuO_((s)) rarr Cu_(2)O_((s))+(1)/(2)O_(2(g)) Given Delta H = 145.6 kJ mol^(-1) and Delta S = 116.JK^(-1) mol^(-1)

Calculate the free energy change for the following reaction at 300 K. 2CuO_((s)) rarr Cu_(2)O_((s))+(1)/(2)O_(2(g)) Given Delta H = 145.6 kJ mol^(-1) and Delta S = 116.JK^(-1) mol^(-1)

Calculate the free energy change for the following reaction at 300 K. 2CuO_((s)) rarr Cu_(2)O_((s))+(1)/(2)O_(2(g)) Given Delta H = 145.6 kJ mol^(-1) and Delta S = 116.JK^(-1) mol^(-1)

For the reaction: CO(g) +H_(2)O(g) hArr CO_(2)(g) +H_(2)(g) (Delta_(r)H)_(300K) = 41.2 kJ mol^(-1) (Delta_(r)H)_(1200K) =- 33.0 kJ mol^(-1) (Delta_(r)S)_(300K) = -4.2 xx 10^(-2) kJ mol^(-1) (Delta_(r)S)_(1200K) =- 3.0 xx10^(-2) kJ mol^(-1) Predict the direction of spontaneity of the reaction at 300K and 1200K . also calculated log_(10)K_(p) at 300K and 1200K .

For the reaction: CO(g) +H_(2)O(g) hArr CO_(2)(g) +H_(2)(g) (Delta_(r)H)_(300K) = - 41.2 kJ mol^(-1) (Delta_(r)H)_(1200K) =- 33.0 kJ mol^(-1) (Delta_(r)S)_(300K) = - 4.2 xx 10^(-2) kJ mol^(-1) (Delta_(r)S)_(1200K) =- 3.0 xx10^(-2) kJ mol^(-1) Predict the direction of spontaneity of the reaction at 300K and 1200K . also calculated log_(10)K_(p) at 300K and 1200K .