Q.Write the conformations of ethane.
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Start your 14-day free trial to unlock the full solution →Free rotation about the C-C single bond of ethane produces infinite conformations, the two extremes being the eclipsed (least stable) and staggered (most stable) forms.
Ethane, CH3-CH3, has a C-C single (sigma) bond about which the two -CH3 groups can rotate almost freely. Different spatial arrangements obtained by this rotation are called conformations (or conformers) — they are not different compounds, just different rotational orientations, and are represented using Sawhorse or Newman projections.
1. Staggered conformation: The hydrogen atoms on the front carbon are positioned exactly between (staggered relative to) the hydrogens on the back carbon, i.e. a dihedral (torsional) angle of 60°. This arrangement keeps the C-H bonds as far apart as possible, minimising electron-electron repulsion (torsional strain). It is the most stable conformation, of lowest potential energy.
2. Eclipsed conformation: The hydrogen atoms on the front carbon lie directly in front of (eclipse) the hydrogens on the back carbon, i.e. a dihedral angle of 0°. Torsional strain is maximum here, making it the least stable, highest-energy conformation.
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