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[" The enthalpy of formation of "CO(g),C...

[" The enthalpy of formation of "CO(g),CO_(2)(g),N_(2)O(g),N_(2)O_(4)(g)" are "-110,-393,81ar],[9.7Kj/mol" respectively."],[" Find the value of "A_(r)H^(@)" for the reaction "],[N_(2)O_(4)(g)+3CO(g)=N_(2)O(g)+3CO_(2)(g)]

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Enthalpies of formation of CO(g), CO_(2)(g),N_(2)O(g) and N_(2)O_(4)(g) are -110,-393,81 and 9.7kJ*mol^(-1) respectively. Find the value of Delta_(r)H for the reaction: N_(2)O_(4)(g)+3CO(g)toN_(2)O(g)+3CO_(2)(g) .

Enthalpies of formation of CO(g), CO_(2)(g),N_(2)O(g) and N_(2)O_(4)(g) are -110, -393.81 and 9.7 kJ mol^(-1) respectively. Find the value of D_(r)H for the reaction: N_(2)O_(4)(g)+3CO(g)toN_(2)O(g)+3CO_(2)(g)

Enthalpies of formation of CO(g), CO_(2)(g),N_(2)O(g) and N_(2)O_(4)(g) are -110, -393, 81 and 9.7 kJ mol^(-1) respectively. Calculate Delta_(r)H for the reaction: N_(2)O_(4)(g) + 3CO(g) to N_(2)O(g) + 3CO_(2)(g) .

Enthalpies of formation of CO(g), CO_(2)(g),N_(2)O(g) and N_(2)O_(4)(g) are -110, -393, 81 and 9.7 kJ mol^(-1) respectively. Calculate Delta_(r)H for the reaction: N_(2)O_(4)(g) + 3CO(g) to N_(2)O(g) + 3CO_(2)(g) .

Enthaples of formation of CO(g), CO_(2)(g), N_(2)O (g) and N_(2)O_(4) (g) are - 110, - 393, 81 and 9.7 kj mol^(-1) respectively. Find the value of Delta H for the reaction: N_(2)O_(4) (g) + 3CO(g) to N_(2) O(g) + 3 CO_(2) (g)

Ethalpies of formation of CO(g), CO_2(g) ,N_2O(g) and N_2O_4 (g) are -110,-393,81 and 9.7kJ mol^-1 respectively. Find the value of Delta_rH from the reaction N_2O_4(g)+3CO(g)rarrN_2O(g)+3 CO_2(g)