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Calculate $K_{M}$ and $V_{\max }$ from the following data: $$\begin{array}{cc} \hline \text { [S] }(\mu \text { M }) & v_{0}\left(\mathrm{mM} \cdot \mathrm{s}^{-1}\right) \\ \hline 0.1 & 0.34 \\ \hline 0.2 & 0.53 \\ \hline 0.4 & 0.74 \\ \hline 0.8 & 0.91 \\ \hline 1.6 & 1.04 \\ \hline \end{array}$$
(a) $0.1 M \mathrm{NiCl}_{2}$ or $0.1 \mathrm{M} \mathrm{NaCl}$ (b) $0.1 M \operatorname{Sn}\left(\mathrm{NO}_{3}\right)_{2}$ or $0.1 \mathrm{M} \mathrm{Co}\left(\mathrm{NO}_{3}\right)_{2}$
Calculate the $K_{\mathrm{f}}$ of $\mathrm{Ag}\left(\mathrm{NH}_{3}\right)_{2}^{+}$ from $\mathrm{Ag}^{+}(a q)+\mathrm{e}^{-} \rightleftharpoons \mathrm{Ag}(s) \quad E^{\circ}=0.80 \mathrm{V}$ $\operatorname{Ag}\left(\mathrm{NH}_{3}\right)_{2}^{+}(a q)+\mathrm{e}^{-} \rightleftharpoons \mathrm{Ag}(s)+2 \mathrm{NH}_{3}(a q) \qquad E^{\circ}=0.37 \mathrm{V}$
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