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[" The cy uninorium,the concentrations o...

[" The cy uninorium,the concentrations of "N_(2)=3.010^(-3)M/B/B^(3)M" and "NO=2.810^(3)M" in a sealed "],[" vessel at "800K" .What will be "K_(c)" for the reaction "R_(4)(g)+O_(2)(g)rightleftharpoons2NO(g)],[" The value of "K_(p)" for the reaction,"CO_(2)(g)+C(3)=2CO(g)" is "3.0" at "1000K" .If initially "P_(cos)=0.48],[" bar and "p_(00)=0" bar and pure graphite if present,calculate the equilibrium partial pressures of "CO" and "],[CO_(2)]

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The value of K_(p) for the reaction, CO_(2)(g)+C(s)hArr2CO(g) is 3.0 at 1000K . If initially P_(CO_(2))=0.48 bar and P_(CO)=0 bar and pure graphite is present, calculate the equilibrium partial pressures of CO and CO_(2) .

The value of K_(p) for the reaction CO_(2)(g)+C(s)hArr2CO(g) is 3.0 bar at 1000 K . If initially P_(CO_(2)) = 0.48 bar, P_(CO) = 0 bar and pure graphite is present then determine equilibrium partial pressue of CO and CO_(2) .

The value of K_(p) for the reaction CO_(2)(g)+C(s)hArr2CO(g) is 3.0 bar at 1000 K . If initially P_(CO_(2)) = 0.48 bar, P_(CO) = 0 bar and pure graphite is present then determine equilibrium partial pressue of CO and CO_(2) .

At equilibrium, the concentrations of N_(2)=3.0xx10^(-3)M, O_(2)=4.2xx10^(-3) M, and NO=2.8xx10^(-3) M in a sealed vessel at 800K . What will be K_(c) for the reaction N_(2)(g)+O_(2)(g)N_(2)(g)+O_(2)(g)hArr2NO(g)2NO(g)

At equilibrium, the concentrations of N_(2)=3.0xx10^(-3)M, O_(2)=4.2xx10^(-3) M, and NO=2.8xx10^(-3) M in a sealed vessel at 800K . What will be K_(c) for the reaction N_(2)(g)+O_(2)(g)N_(2)(g)+O_(2)(g)hArr2NO(g)2NO(g)

K_p/K_c for the reaction: CO(g)+1/2O_2(g) hArr CO_2(g) is :

K_(p)//K_(c) for the reaction CO(g)+1/2 O_(2)(g) hArr CO_(2)(g) is