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[" 5.The values of "K(P(1))" and "K(P(2)...

[" 5.The values of "K_(P_(1))" and "K_(P_(2))" for the reactions "],[X rightleftharpoons Y+Z-(1)" and "],[A rightleftharpoons2B-(2)" and "],[" are in ratio of "9.1." If degree of dissociation of "X],[" and "A" be equal,then total pressure at equilibrium "],[(1)" and "(2)" are in the ratio : "],[[" (1) "1:9," (2) "36:1," (3) "1:1," (4) "3:1]]

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The values of K_(p_(1)) and K_(p_(2)) for the reactions X hArr Y+Z ….(i) and A hArr 2B …(ii) are in ratio of 9 : 1. If degree of dissociation of X and A be equal, then total presure at equilibrium (i) and (ii) are in the ratio.

The values of K_(p_(1)) and K_(p_(2)) for the reactions X hArr Y+Z ….(i) and A hArr 2B …(ii) are in ratio of 9 : 1. If degree of dissociation of X and A be equal, then total presure at equilibrium (i) and (ii) are in the ratio.

The values of K_(p) and Kp_(2) fot the reactions XhArrY+Z , (a) and A hArr 2B , (b) are in the ration of 9:1 . If the degree of dissociation of X and A is equal, then the total pressure at equilibriums (a) and (b) is in the ration

The equilibrium constant K_(p_(1)) and K_(p_(2)) for the reactions XhArr2Y and ZhArrP+Q , respectively are in the ratio of 1:9 . If the degree of dissociation of X and Z be equal, then the ratio of total pressure at these equilibrium is:

The equilibrium constant K_(p_(1)) and K_(p_(2)) for the reactions XhArr2Y and ZhArrP+Q , respectively are in the ratio of 1:9 . If the degree of dissociation of X and Z be equal, then the ratio of total pressure at these equilibrium is: