Predict the major organic product of the reaction. Draw the major organic product. Select Dra Rings More Erase Br H3C CH3 H3C -Br H.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Predict the Major Organic Product of the Reaction**

**Reaction Details:**

The reaction entails the alkene shown on the left reacting with hydrogen bromide (\( HBr \)).

**Reactant Structure:**

- The molecule on the left is an alkene with a six-membered carbon ring. 
- It features a double bond between two of the carbon atoms within the ring.
- The carbon atoms are also bonded to hydrogen (\( H \)) and methyl (\( CH_3 \)) groups.

**Reagents:**

- Hydrogen Bromide (\( HBr \))

**Product Prediction:**

The task is to draw the major organic product following the reaction with \( HBr \). The reaction likely involves the addition of \( HBr \) across the double bond of the alkene, following Markovnikov's rule, which leads to the electrophilic addition where the hydrogen atom attaches to the carbon with the most hydrogen atoms already attached, and the bromine atom attaches to the other carbon. The resulting major organic product should reflect this addition, with the double bond being replaced by single bonds with \( H \) and \( Br \) added across the former double bond.

**Interactive Component:**

- There are drawing tools available for illustrating the predicted major organic product. Tools include options to add or erase bonds and atoms such as carbon (\( C \)), hydrogen (\( H \)), and bromine (\( Br \)).

Students are expected to use these tools to demonstrate their understanding of the reaction mechanism by drawing the correct structure of the major organic product.
Transcribed Image Text:**Predict the Major Organic Product of the Reaction** **Reaction Details:** The reaction entails the alkene shown on the left reacting with hydrogen bromide (\( HBr \)). **Reactant Structure:** - The molecule on the left is an alkene with a six-membered carbon ring. - It features a double bond between two of the carbon atoms within the ring. - The carbon atoms are also bonded to hydrogen (\( H \)) and methyl (\( CH_3 \)) groups. **Reagents:** - Hydrogen Bromide (\( HBr \)) **Product Prediction:** The task is to draw the major organic product following the reaction with \( HBr \). The reaction likely involves the addition of \( HBr \) across the double bond of the alkene, following Markovnikov's rule, which leads to the electrophilic addition where the hydrogen atom attaches to the carbon with the most hydrogen atoms already attached, and the bromine atom attaches to the other carbon. The resulting major organic product should reflect this addition, with the double bond being replaced by single bonds with \( H \) and \( Br \) added across the former double bond. **Interactive Component:** - There are drawing tools available for illustrating the predicted major organic product. Tools include options to add or erase bonds and atoms such as carbon (\( C \)), hydrogen (\( H \)), and bromine (\( Br \)). Students are expected to use these tools to demonstrate their understanding of the reaction mechanism by drawing the correct structure of the major organic product.
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