Draw the main organic products of the reaction. Indicate the stereochemistry, including all hydrogen atoms, at each stereocenter. Omit byproducts such as salts or methanol. Select Draw Rings More Erase CH3ONA CH3OH Br

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Task: Main Organic Product Determination with Stereochemistry**

**Objective:**
Determine the main organic products of the given chemical reaction. Ensure to indicate stereochemistry, including all hydrogen atoms at each stereocenter. Exclude byproducts, such as salts or methanol, from your depiction.

**Reaction Details:**

- **Reactants:**
  - A cyclohexane ring featuring a bromine (Br) substituent and two hydrogen atoms (H) at adjacent stereocenters.
  - Methanol sodium (CH₃ONa) and Methanol (CH₃OH) are used as the reaction conditions.

**Instructions:**

1. **Identify the Product:**
   - Analyze the reactants and possible reaction mechanisms to deduce the organic product.
   - Consider elimination processes (like E2) that could occur given the base (CH₃O⁻) present.

2. **Stereochemistry:**
   - Accurately depict the configuration of each stereocenter in your final structure.
   - Include all hydrogen atoms involved.

**Diagrams:**
- The initial chemical structure involves a cyclohexane ring. The Br and one H are on wedge/dash bonds, denoting stereochemistry.
- The output drawing area can be used to sketch the expected product, highlighting any changes in stereochemistry or structure (e.g., formation of a double bond).

**Interface Instructions:**
Utilize the drawing tools (Select, Draw, Rings) to illustrate the product. Utilize the "Erase" option to correct mistakes during the drawing process.

**Goal:**
Master the depiction of stereochemistry in organic reaction products, ensuring a clear and accurate portrayal for educational purposes.
Transcribed Image Text:**Task: Main Organic Product Determination with Stereochemistry** **Objective:** Determine the main organic products of the given chemical reaction. Ensure to indicate stereochemistry, including all hydrogen atoms at each stereocenter. Exclude byproducts, such as salts or methanol, from your depiction. **Reaction Details:** - **Reactants:** - A cyclohexane ring featuring a bromine (Br) substituent and two hydrogen atoms (H) at adjacent stereocenters. - Methanol sodium (CH₃ONa) and Methanol (CH₃OH) are used as the reaction conditions. **Instructions:** 1. **Identify the Product:** - Analyze the reactants and possible reaction mechanisms to deduce the organic product. - Consider elimination processes (like E2) that could occur given the base (CH₃O⁻) present. 2. **Stereochemistry:** - Accurately depict the configuration of each stereocenter in your final structure. - Include all hydrogen atoms involved. **Diagrams:** - The initial chemical structure involves a cyclohexane ring. The Br and one H are on wedge/dash bonds, denoting stereochemistry. - The output drawing area can be used to sketch the expected product, highlighting any changes in stereochemistry or structure (e.g., formation of a double bond). **Interface Instructions:** Utilize the drawing tools (Select, Draw, Rings) to illustrate the product. Utilize the "Erase" option to correct mistakes during the drawing process. **Goal:** Master the depiction of stereochemistry in organic reaction products, ensuring a clear and accurate portrayal for educational purposes.
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