\[ \begin{array}{l} \mathrm{Ag}^{+}+\mathrm{NH}_{3} \rightleftharpoons\left[\mathrm{Ag}\left(\ma....

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\[
\begin{array}{l}
\mathrm{Ag}^{+}+\mathrm{NH}_{3} \rightleftharpoons\left[\mathrm{Ag}\left(\mathrm{NH}_{3}\right)\right]^{+} ; \mathrm{K}_{1}=3.5 \times 10^{-3} \\
{\left[\mathrm{Ag}\left(\mathrm{NH}_{3}\right)\right]^{+}+\mathrm{NH}_{3} \rightleftharpoons\left[\mathrm{Ag}\left(\mathrm{NH}_{3}\right)_{2}\right]^{+} ; \mathrm{K}_{2}=1.7 \times 10^{-3}}
\end{array}
\]
\( \mathrm{P} \)
then the formation constant of \( \left[\mathrm{Ag}\left(\mathrm{NH}_{3}\right)_{2}\right]^{+} \)is
(1) \( 6.08 \times 10^{-6} \)
(2) \( 6.08 \times 10^{6} \)
(3) \( 6.08 \times 10^{-9} \)
(4) None of these


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