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- Answer the following question about compounds A–D (See in attachment) How are the compounds in each pair related? Choose fromconstitutional isomers, stereoisomers, or identical molecules: A and B; A and C; B and D.Which compounds (B–F) are identical to A? (b) Which compounds (B–F) represent an isomer of A?Label compounds B–D as stereoisomers, conformations, or constitutional isomers of A.
- Stereoisomers share the same connectivity and differ only in the way their atoms are arranged in space. Draw the structure of a compound that is a stereoisomer ofLabel each pair as constitutional isomers, stereoisomers, or not isomers of each.a.) Draw B as a hexagon with wedges and dashed wedges to show the stereochemistry of substituents.b.) Draw a stereoisomer of A as a hexagon using wedges and dashed wedges to show the orientation of substituents.
- Consider the tricyclic structure B. (a) Label each substituent on the rings as axial or equatorial. (b) Draw B using chair conformations for each sixmembered ring. (c) Label the atoms on the ring fusions (the carbons that join each set of two rings together) as cis or trans to each other.How is compound A related to compounds B–E? Choose from enantiomers, diastereomers, constitutional isomers, or identical molecules.Consider the attached tricyclic structure B. (a) Label each substituent on the rings as axial or equatorial. (b) Draw B using chair conformations for each sixmembered ring. (c) Label the atoms on the ring fusions (the carbons that join each set of two rings together) as cis or trans to each other.