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Consider the reaction 2SO(2)(g)+O(2)(g)h...

Consider the reaction `2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g)` for which `K_(c)=278M^(-1)`.0.001 mole ofeach of the reagents `SO_(2)(g),O_(2)(g)and SO_(3)(g)` are mixed in a 1.0 L flask . Dterminr=e the reaction quotient of the system and the spontaneus direction of the system:

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Consider the reaction 2SO_(2(g)) + O_2(g) harr 2SO_(3(g)) for which K_c = 278 M^(-1) 0.001 mole of cash of the reagents SO_(2(g)) , O_2(g) and SO_3(g) are mixed in a 1.0 l flask. Determine the reaction quotient of the system and the spontaneous direction of the system.

For the reaction 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g),K_(p)=3xx10^(24) at 25^(@)C . Find the value of K_(c) .

At 700K , for the reaction 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g) the K_(p) "is" 3.2xx10^(4) . At the same temperature the K_(p) for the reaction SO_(3)(g)hArrSO_(2)(g)+0.50O_(2)(g) is:

At 700K , for the reaction 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g) the K_(p) "is" 3.2xx10^(4) . At the same temperature the K_(p) for the reaction SO_(3)(g)hArrSO_(2)(g)+0.50O_(2)(g) is:

For the reaction, 2SO_(2(g))+O_(2(g))hArr2SO_(3(g)) What is K_(c) when the equilibrium concentration of [SO_(2)]=0.60M,[O_(2)]=0.82Mand[SO_(3)]=1.90M ?

For the reaction, 2SO_(2(g))+O_(2(g))hArr2SO_(3(g)) What is K_(c) when the equilibrium concentration of [SO_(2)]=0.60M,[O_(2)]=0.82Mand[SO_(3)]=1.90M ?

For the reaction 2SO_(3)(g)hArr2SO_(2(g))+O_(2(g)) (K_(C))/(K_(p)) will be :-

For the reaction 2SO_(3)(g)hArr2SO_(2(g))+O_(2(g)) (K_(C))/(K_(p)) will be :-

Write the expressions of K_(c) and K_(p) for the reaction: 2SO_(2)(g)+O_(2)(g)hArr2SO_(3)(g) .