4. Draw the bond-line dash-wedge structure and the Fischer projection of the following compounds. For each compound, draw the Newman Projection down the C2-C3 bond in the lowest energy conformation. a. (R)-2-bromopentane b. (3S,4R)-3,4-dibromoheptane c. (S)-1-fluoro-2-chloropropane

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### Problem Statement

4. Draw the bond-line dash-wedge structure and the Fischer projection of the following compounds. For each compound, draw the Newman Projection down the C2-C3 bond in the lowest energy conformation.

a. (R)-2-bromopentane

b. (3S,4R)-3,4-dibromoheptane

c. (S)-1-fluoro-2-chloropropane

This problem involves visualizing molecules using different types of molecular representations:

- **Bond-line Dash-Wedge Structure:** A common way to represent three-dimensional arrangements, using solid lines, dashed lines, and wedges to depict bonds in different orientations.

- **Fischer Projection:** A two-dimensional representation where bonds are projected using a cross-like visual.

- **Newman Projection:** Illustrates the conformation of a molecule from a particular viewing angle, ideal for assessing torsional strain between adjacent bonds.

Diagrams or illustrations are recommended to facilitate understanding, though they are not included in this text.
Transcribed Image Text:### Problem Statement 4. Draw the bond-line dash-wedge structure and the Fischer projection of the following compounds. For each compound, draw the Newman Projection down the C2-C3 bond in the lowest energy conformation. a. (R)-2-bromopentane b. (3S,4R)-3,4-dibromoheptane c. (S)-1-fluoro-2-chloropropane This problem involves visualizing molecules using different types of molecular representations: - **Bond-line Dash-Wedge Structure:** A common way to represent three-dimensional arrangements, using solid lines, dashed lines, and wedges to depict bonds in different orientations. - **Fischer Projection:** A two-dimensional representation where bonds are projected using a cross-like visual. - **Newman Projection:** Illustrates the conformation of a molecule from a particular viewing angle, ideal for assessing torsional strain between adjacent bonds. Diagrams or illustrations are recommended to facilitate understanding, though they are not included in this text.
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