Draw a detailed mechanism. For each step of the mechanism, jusiuny what you drew/explain the why behind the step. (Examples faster ABC so this occurs first; more stable carbocation; faster attack; better nucleophile)

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Title: Instructions for Mechanistic Analysis in Organic Chemistry

1. **Draw a detailed mechanism.**

2. **For each step of the mechanism, justify what you drew/explain the why behind the step.**
   - Examples: Faster ABC so this occurs first; more stable carbocation; faster attack; better nucleophile.

**Hint:** The products are not provided, so it is necessary for you to think about the rationale behind each step to obtain the correct product. If you move through each step of the mechanism, thinking about what the best option would be, you'll inherently obtain the correct solution.
Transcribed Image Text:Title: Instructions for Mechanistic Analysis in Organic Chemistry 1. **Draw a detailed mechanism.** 2. **For each step of the mechanism, justify what you drew/explain the why behind the step.** - Examples: Faster ABC so this occurs first; more stable carbocation; faster attack; better nucleophile. **Hint:** The products are not provided, so it is necessary for you to think about the rationale behind each step to obtain the correct product. If you move through each step of the mechanism, thinking about what the best option would be, you'll inherently obtain the correct solution.
The image depicts a chemical reaction scheme starting from a compound referred to as the "starting material." 

- The starting material has a molecular structure with an alcohol group (HO-), an ether linkage (O-), and an OMs group.

- The reaction proceeds in two different directions:

  1. **Leftward Reaction:**
     - **Reagents:** EtOH (Ethanol) and EtONa (Sodium Ethoxide)
     - **Product:** Ether product
     - **Chemical Formula of the Ether Product:** C₉H₁₂O₂

  2. **Rightward Reaction:**
     - **Reagent:** EtOH (Ethanol)
     - **Product:** Ketal product
     - **Chemical Formula of the Ketal Product:** C₉H₁₂O₂

Both reactions lead to products that have the same chemical formula, C₉H₁₂O₂, but are likely different isomers. This diagram illustrates a choice between two reaction pathways leading to distinct structural isomers.
Transcribed Image Text:The image depicts a chemical reaction scheme starting from a compound referred to as the "starting material." - The starting material has a molecular structure with an alcohol group (HO-), an ether linkage (O-), and an OMs group. - The reaction proceeds in two different directions: 1. **Leftward Reaction:** - **Reagents:** EtOH (Ethanol) and EtONa (Sodium Ethoxide) - **Product:** Ether product - **Chemical Formula of the Ether Product:** C₉H₁₂O₂ 2. **Rightward Reaction:** - **Reagent:** EtOH (Ethanol) - **Product:** Ketal product - **Chemical Formula of the Ketal Product:** C₉H₁₂O₂ Both reactions lead to products that have the same chemical formula, C₉H₁₂O₂, but are likely different isomers. This diagram illustrates a choice between two reaction pathways leading to distinct structural isomers.
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