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The following equilibria are given by : ...

The following equilibria are given by `:`
`N_(2)+3H_(2) hArr 2NH_(3), K_(1)`
`N_(2)+O_(2) hArr 2NO,K_(2)`
`H_(2)+(1)/(2)O_(2) hArr H_(2)O, K_(3)`
The equilibrium constant of the reaction `2NH_(3)+(5)/(2)O_(2)hArr 2NO +3H_(2)O` in terms of `K_(1) , K_(2)` and `K_(3)` is

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The following equilibrium are given : N_(2)+3H_(2)hArr 2NH_(3):K_(1) N_(2)+O_(2)hArr 2NO : K_(2) H_(2)+(1)/(2)O_(2)hArr H_(2)O : K_(3) The equilibrium constant of the reaction : 2NH_(3)+(5)/(2)O_(2)hArr 2NO+3H_(2)O in terms of K_(1), K_(2) and K_(3) is :

The following equilibrium constants are given : N_(2)+3H_(2)hArr 2NH_(3), K_(1) N_(2)+O_(2)hArr 2NO, K_(2) H_(2)+(1)/(2)O_(2)hArr H_(2)O, K_(3) The equilibrium constant for the oxidation of NH_(3) by oxygen to give NO is :

The following equilibria and their equilibrium constants are given N_(2)+3H_(2) iff 2NH_(3)(K_(1)) N_(2)+O_(2) iff 2NO(K_(2)) H_(2)+1/2O_(2) iff H_(2)O(K_(3)) Therefore, the equilibrium constant of the reaction 2NH_(3)+5/2O_(2) iff 2NO+3H_(2)O in terms of K_(1), K_(2) and K_(3) is :

The following equilibrium constants are given : N_(2) + 3 H_(3) hArr 2 NH_(3) , K_(1) N_(2) + O_(2) hArr 2 NO , K_(2) H_(2) + 1/2 O_(2) hArr H_(2) O , K_(3) The equilibrium constant for the oxidation of NH_(3) by oxygen to give NO is :

Given N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g),K_(1) N_(2)(g)+O_(2)(g)hArr2NO(g),K_(2) H_(2)(g)+(1)/(2)O_(2)hArrH_(2)O(g),K_(3) The equilibrium constant for 2NH_(3)(g)+(5)/(2)O_(2)(g)hArr2NO(g)+3H_(2)O(g) will be

Given N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g),K_(1) N_(2)(g)+O_(2)(g)hArr2NO(g),K_(2) H_(2)(g)+(1)/(2)O_(2)hArrH_(2)O(g),K_(3) The equilibrium constant for 2NH_(3)(g)+(5)/(2)O_(2)(g)hArr2NO(g)+3H_(2)O(g) will be

Given N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g),K_(1) N_(2)(g)+O_(2)(g)hArr2NO(g),K_(2) H_(2)(g)+(1)/(2)O_(2)hArrH_(2)O(g),K_(3) The equilibrium constant for 2NH_(3)(g)+(5)/(2)O_(2)(g)hArr2NO(g)+3H_(2)O(g) will be