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[" The equilibrium constant for the reaction "N_(2)(g)+O_(2)(g)rightleftharpoons2NO(g)],[" at temperature (T) is "4times10^(-4)." The value of "K_(c)" for the reaction "],[NO(g)rightleftharpoons(1)/(2)N_(2)(g)+(1)/(2)O_(2)(g)" at the same temperature is "]

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The equilibrium constant for the reaction N_(2)(g)+O_(2)(g)hArr 2NO(g) at temperature T is 4xx10^(-4) . The vlue of K_(c ) for the reaction NO(g)hArr (1)/(2)N_(2)(g)+(1)/(2)O_(2)(g) at the same temperature is :

The equilibrium constant for the reaction N_(2)(g)+O_(2)(g) hArr 2NO(g) at temperature T is 4xx10^(-4) . The value of K_(c) for the reaction NO(g) hArr 1/2 N_(2)(g)+1/2 O_(2)(g) at the same temperature is

The equilibrium constant for the reaction N_(2)(g)+O_(2)(g) hArr 2NO(g) at temperature T is 4xx10^(-4) . The value of K_(c) for the reaction NO(g) hArr 1/2 N_(2)(g)+1/2 O_(2)(g) at the same temperature is

The equilibrium constant for the reaction N_(2)(g)+O_(2)(g) hArr 2NO(g) at temperature T is 4xx10^(-4) . The value of K_(c) for the reaction NO(g) hArr 1/2 N_(2)(g)+1/2 O_(2)(g) at the same temperature is

The equilibrium constant for the reaction N_(2)(g)+O_(2)(g) hArr 2NO(g) at temperature T is 4xx10^(-4) . The value of K_(c) for the reaction NO(g) hArr 1/2 N_(2)(g)+1/2 O_(2)(g) at the same temperature is

The equilibrium constant for the reaction N_(2)(g)+O_(2)(g) hArr 2NO(g) at temperature T is 4xx10^(-4) . The value of K_(c) for the reaction NO(g) hArr 1/2 N_(2)(g)+1/2 O_(2)(g) at the same temperature is