CHEM 134 Lecture Notes - Lecture 21: Staggered Conformation, Newman Projection, Eclipsed Conformation

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Isomers have identical composition but different structures. Differences in three-dimensional structure resulting from rotation about a bond are called differences in conformation, and each different arrangement is called a conformational isomer. Same empirical formula but different atom-to-atom connections. Same atom-to-atom connections but different arrangement in space. Geometric isomers can occur when there is a c=c double bond. Optical isomers are molecules with non-superimposable mirror images. Chiral molecules in solution can rotate the plane of plane polarized light. Newman projections are useful for predicting the stability of conformational isomers. The eclipsed conformation is higher in energy than the staggered conformation because of electrostatic repulsions between hydrogen atoms. The staggered conformation is the most stable because electrostatic repulsion between the hydrogen atoms on adjacent carbons is minimized. In the conversion of one constitutional isomer to another, at least one bond must be broken and reformed at a different position in the molecule.

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