Q.Which one of the following has the highest dipole moment?
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Start your 14-day free trial to unlock the full solution →Dipole moment depends on both bond polarity and molecular geometry. is nonpolar (zero dipole), has a moderate dipole, and has the highest dipole moment due to its asymmetric shape and additive vector contributions. The answer is (i) .
Why Dipole Moments Differ in Chloromethanes
The dipole moment of a molecule is not just about how polar each bond is — it’s about the net vector sum of all bond dipoles. Even if individual C–Cl bonds are strongly polar, the molecule’s shape can cause them to cancel out partially or completely.
For chloromethanes, we replace hydrogen atoms (low electronegativity) with chlorine atoms (high electronegativity). Each C–Cl bond has a dipole pointing from carbon to chlorine. The key question: Do these dipoles add up or cancel?
Step-by-Step Reasoning
1. Start with — the symmetric case
Carbon tetrachloride is tetrahedral, with four identical C–Cl bonds arranged symmetrically. Each bond dipole points outward from carbon. Because of perfect tetrahedral symmetry, the four vectors cancel exactly — the net dipole moment is zero.
A common mistake is to think that more polar bonds always mean a higher dipole moment. has four polar C–Cl bonds but zero net dipole — geometry matters more than bond count.
2. Move to — one hydrogen breaks symmetry
Chloroform has three C–Cl bonds and one C–H bond. The C–H bond has a very small dipole (carbon is slightly more electronegative than hydrogen, but the difference is tiny). The three C–Cl dipoles no longer cancel perfectly because the molecule is not fully symmetric. The net dipole is the vector sum of three C–Cl dipoles plus a small C–H dipole.
The resultant points roughly along the direction of the C–H bond (opposite to the lone hydrogen). The magnitude is moderate — about 1.04 D experimentally.
3. Now — the asymmetric winner …
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