Predict the major organic product(s) for each of the following reactions. Be sure to show stereochemistry when appropriate. 1) OsO4/THF 2) H₂S

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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**Part 2: Predict the Organic Products.**

Predict the major organic product(s) for each of the following reactions. Be sure to show stereochemistry when appropriate.

The image shows a cyclohexene reactant undergoing a chemical reaction. The reaction conditions are as follows:

1) OsO₄ / THF (Osmium tetroxide in tetrahydrofuran)
2) H₂S (Hydrogen sulfide)

The reactant is a cyclohexene compound, which is a six-membered carbon ring containing one double bond. The reaction involves the addition of hydroxyl groups across the double bond using osmium tetroxide, a common reagent for dihydroxylation reactions. Followed by the use of hydrogen sulfide, this process typically leads to the formation of a cis-diol, where two hydroxyl groups are added syn to each other on the former double bond. 

Students are expected to predict the stereochemistry of the product formed from this reaction.
Transcribed Image Text:**Part 2: Predict the Organic Products.** Predict the major organic product(s) for each of the following reactions. Be sure to show stereochemistry when appropriate. The image shows a cyclohexene reactant undergoing a chemical reaction. The reaction conditions are as follows: 1) OsO₄ / THF (Osmium tetroxide in tetrahydrofuran) 2) H₂S (Hydrogen sulfide) The reactant is a cyclohexene compound, which is a six-membered carbon ring containing one double bond. The reaction involves the addition of hydroxyl groups across the double bond using osmium tetroxide, a common reagent for dihydroxylation reactions. Followed by the use of hydrogen sulfide, this process typically leads to the formation of a cis-diol, where two hydroxyl groups are added syn to each other on the former double bond. Students are expected to predict the stereochemistry of the product formed from this reaction.
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