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[" the reaction given below has "K(c)=4"...

[" the reaction given below has "K_(c)=4" ."],[qquad [NH_(3)(g),rightleftharpoons(1)/(2)N_(2)(g)+(3)/(2)H_(2)(8)],[K_(p)" for the reaction? "]],[qquad [N_(2)(g),+3H_(2)(g)rightleftharpoons2NH_(3)(8)]]

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At 527^(@)C , the reaction given below has K_(c)=4 NH_(3)(g)hArr(1)/(2)N_(2)(g)+(3)/(2)H_(2)(g) what is the K_(p) for the reaction ? N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g)

At 527^(@)C , the reaction given below has K_(c)=4 NH_(3)(g)hArr(1)/(2)N_(2)(g)+(3)/(2)H_(2)(g) what is the K_(p) for the reaction ? N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g)

At 527^(@)C , the reaction given below has K_(c)=4 NH_(3)(g)hArr(1)/(2)N_(2)(g)+(3)/(2)H_(2)(g) what is the K_(p) for the reaction ? N_(2)(g)+3H_(2)(g)hArr2NH_(3)(g)

(K_(c))/(K_(p)) for the reaction, N_(2)(g)+3H_(2)(g)hArr2NH_(3(g)) is

For the reaction : 2 NH_(3)(g) rarr N_(2)(g) + 3 H_(2)(g)

Equilibrium constant K_(C) for the following reaction at 800 K is, 4 NH_(3)(g)hArr (1)/(2)N_(2)(g)+(3)/(2)H_(2)(g) . The value of K_(p) for the following reaction will be N_(2)(g)+3H_(2)(g)hArr 2NH_(3)(g)

Equilibrium constant K_(C) for the following reaction at 800 K is, 4 NH_(3)(g)hArr (1)/(2)N_(2)(g)+(3)/(2)H_(2)(g) . The value of K_(p) for the following reaction will be N_(2)(g)+3H_(2)(g)hArr 2NH_(3)(g)

The value of K_c for the reaction N_(2(g))+ 3H_(2(g)) Leftrightarrow 2NH_(3(g)) depends on