- A$HCHO$
- ✓$C{H_3}CHO$
- C$C{H_3}OH$
- D$C{H_3}COOH$
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$(I)\,\,[Fe(CN)_6]^{4-}$ $(II)\,\,[Fe(CN)_6]^{3-}$
$(III) [Cr(NH_3)_6]^{3+}$ $(IV)\,\,[Ni(H_2O)_4]^{2+}$
Match $List-I:in\, Figure$
Lits$-II$
$(I)$ Gatterman Koch reaction
$(II)$ Etard reaction
$(III)$ Stephen reaction
$(IV)$ Rosenmund reaction
Choose the correct answer from the options given below.
$(A)$ $\Lambda \stackrel{0}{ m }$ for electrolyte $A$ is obtained by extrapolation
$(B)$ For electrolyte B, vx $\Lambda m$ vs $\sqrt{ c }$ graph is a straight line with intercept equal to $\Lambda \stackrel{0}{ m }$
$(C)$ At infinite dilution, the value of degree of dissociation approach zero for electrolyte $B$.
$(D)$ $\Lambda \stackrel{0}{ m }$ for any electrolyte $A$ or $B$ can be calculated using $\lambda^{\circ}$ for individual ions.