The equilibrium constant expression for a gas reaction is,
$K_{C} = \frac{[NH_{3}]^{4}[O_{2}]^{5}}{[NO]^{4}[H_{2}O]^{6}}$
Write the balanced chemical equation corresponding to this expression.

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(N/A) The equilibrium constant expression $K_{C}$ is defined as the ratio of the product of concentrations of products raised to their stoichiometric coefficients to the product of concentrations of reactants raised to their stoichiometric coefficients.
Given $K_{C} = \frac{[NH_{3}]^{4}[O_{2}]^{5}}{[NO]^{4}[H_{2}O]^{6}}$,the species in the numerator ($NH_{3}$ and $O_{2}$) are the products,and the species in the denominator ($NO$ and $H_{2}O$) are the reactants.
The stoichiometric coefficients correspond to the powers in the expression.
Thus,the balanced chemical equation is:
$4NO_{(g)} + 6H_{2}O_{(g)} \leftrightarrow 4NH_{3_{(g)}} + 5O_{2_{(g)}}$

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For the reaction $P_{4(s)} + 5O_{2(g)} \rightleftharpoons P_4O_{10(s)}$,the equilibrium constant expression $K_c$ is:

Assertion: Reaction quotient is defined in the same way as equilibrium constant at any stage of the reaction.
Reason: If $Q_c < K_c$,the reaction moves in the direction of reactants.

What is $K_{c}$ for the following equilibrium when the equilibrium concentration of each substance is: $[SO_{2}] = 0.60 \, M, [O_{2}] = 0.82 \, M$ and $[SO_{3}] = 1.90 \, M?$
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The equilibrium constants for the reactions $(i)$,$(ii)$,and $(iii)$ are $K_1$,$K_2$,and $K_3$ respectively. Which of the following is the correct relationship?
$(i)$ $N_2 + 2O_2 \rightleftharpoons 2NO_2$
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