Match the $CH_{3}X$ compounds in Column-$(I)$ with their $C-X$ bond length in Column-$(II)$ and dipole moment in Column-$(III)$.
$(I)$ Compound$(II)$ $C-X$ Bond Length $(pm)$$(III)$ Dipole Moment $(D)$
$(A)$ $H_3C-F$$(i)$ $214$$(1)$ $1.636$
$(B)$ $H_3C-Cl$$(ii)$ $193$$(2)$ $1.830$
$(C)$ $H_3C-Br$$(iii)$ $178$$(3)$ $1.847$
$(D)$ $H_3C-I$$(iv)$ $139$$(4)$ $1.860$

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(A) The bond length increases as the size of the halogen atom increases: $C-I > C-Br > C-Cl > C-F$. Thus, $(A-iv, B-iii, C-ii, D-i)$.
For dipole moment, the order is $CH_3Cl > CH_3F > CH_3Br > CH_3I$ due to the balance between electronegativity and bond length. The values are: $CH_3Cl (1.860 \ D)$, $CH_3F (1.847 \ D)$, $CH_3Br (1.830 \ D)$, $CH_3I (1.636 \ D)$.
Matching the values: $(A-4, B-1, C-2, D-3)$.
Correct matching: $(A-iv, 4; B-iii, 1; C-ii, 2; D-i, 3)$.

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