5. Grignard Mechanism. Draw the major product for the Grignard reaction below in the box. Then, draw the proper FULL electron-pushing mechanism for the reaction, including ALL intermediates (with formal charges) and electron pushing arrows. Label the Electrophile and Nucleophile in each step! `MgBr 2. H30*

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Draw the major product for the oxidation reaction. Then, draw the proper FULL electron-pushing mechanism for the reaction, including ALL intermediates (with formal charges) and electron-pushing arrows. Label the electrophile and nucleophile in each step.



**Grignard Mechanism Exercise**

**Task:**
1. Draw the major product for the Grignard reaction shown below in the provided box.
2. Illustrate the full electron-pushing mechanism for the reaction, ensuring to include all intermediates with formal charges and electron-pushing arrows.
3. Label the electrophile and nucleophile in each step of the mechanism.

**Reaction Details:**

- Starting Material: A ketone represented by the structure (skeletal formula), which appears to be a pentanone.
- Reagent: Phenylmagnesium bromide (C₆H₅MgBr), a Grignard reagent.
- Conditions: Followed by acidic work-up with H₃O⁺.

The task requires drawing the reaction progress with a focus on mechanistic steps, showcasing how the nucleophilic Grignard reagent attacks the electrophilic carbonyl carbon of the ketone, eventually resulting in an alcohol product after protonation. The formal charges, electron movement, and the roles of the electrophile and nucleophile need to be clearly illustrated in each step of the mechanism.
Transcribed Image Text:**Grignard Mechanism Exercise** **Task:** 1. Draw the major product for the Grignard reaction shown below in the provided box. 2. Illustrate the full electron-pushing mechanism for the reaction, ensuring to include all intermediates with formal charges and electron-pushing arrows. 3. Label the electrophile and nucleophile in each step of the mechanism. **Reaction Details:** - Starting Material: A ketone represented by the structure (skeletal formula), which appears to be a pentanone. - Reagent: Phenylmagnesium bromide (C₆H₅MgBr), a Grignard reagent. - Conditions: Followed by acidic work-up with H₃O⁺. The task requires drawing the reaction progress with a focus on mechanistic steps, showcasing how the nucleophilic Grignard reagent attacks the electrophilic carbonyl carbon of the ketone, eventually resulting in an alcohol product after protonation. The formal charges, electron movement, and the roles of the electrophile and nucleophile need to be clearly illustrated in each step of the mechanism.
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