Draw the major substitution and elimination products for the reaction shown below. You must show the correct stereochemistry where applicable.

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Draw the major substitution and elimination products for the reaction shown below. You must show the correct stereochemistry where applicable.

In the image, a chemical reaction is depicted where a compound with a tosylate (OTos) group is subjected to a reaction with water (H₂O). 

The starting material is a cyclohexane ring with a tosylate leaving group. The structure shows stereochemistry with one wedge and one dash indicating the spatial orientation of substituents. Upon reaction with water, the tosylate group is expected to be replaced, likely resulting in a different compound possibly forming an alcohol.

There are four empty boxes arranged in a 2x2 grid to the right of the starting material and reaction arrow. These boxes seem to be placeholders, likely for potential reaction products or different reaction pathways not specified in this illustration.

This type of illustration is often used in organic chemistry to showcase reaction mechanisms, predict products, or discuss stereochemistry and substitution reactions.
Transcribed Image Text:In the image, a chemical reaction is depicted where a compound with a tosylate (OTos) group is subjected to a reaction with water (H₂O). The starting material is a cyclohexane ring with a tosylate leaving group. The structure shows stereochemistry with one wedge and one dash indicating the spatial orientation of substituents. Upon reaction with water, the tosylate group is expected to be replaced, likely resulting in a different compound possibly forming an alcohol. There are four empty boxes arranged in a 2x2 grid to the right of the starting material and reaction arrow. These boxes seem to be placeholders, likely for potential reaction products or different reaction pathways not specified in this illustration. This type of illustration is often used in organic chemistry to showcase reaction mechanisms, predict products, or discuss stereochemistry and substitution reactions.
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