Part D. Rank the hasicity of the following sets 1. CHMgl CHNHNa CHNH ON ON

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**Part D. Rank the basicity of the following sets:**

1. Compounds:  
   - CH₃MgBr
   - CH₃N⁻Na⁺
   - CH₃NH₂

2. Compounds:  
   - Methoxide ion (CH₃O⁻)
   - Acetate ion with an additional proton (protonated acetate)
   - Ethanol (CH₃CH₂OH)

3. Compounds:  
   - Methanol O⁻Na⁺
   - Aminoethoxide anion (CH₃NH⁻Na⁺)
   - Ethanol

4. Compounds:  
   - Sodium ethoxide (C₂H₅ONa)
   - Sodium acetate (CH₃COONa)
   - Methanol
   - Acetic acid (CH₃COOH)

**Explanation:**

Each set presents a series of compounds for which the reader is required to rank their basicity. Basicity refers to the ability of a compound to accept protons. Generally, the presence of highly electronegative atoms, resonance effects, and the stability of the conjugate acid will influence the basic nature of these compounds.

In these sets, functional groups such as alkoxides (e.g., methoxide, ethoxide), amides, and carbanions are presented, with a focus on comparing their basicity.
Transcribed Image Text:**Part D. Rank the basicity of the following sets:** 1. Compounds: - CH₃MgBr - CH₃N⁻Na⁺ - CH₃NH₂ 2. Compounds: - Methoxide ion (CH₃O⁻) - Acetate ion with an additional proton (protonated acetate) - Ethanol (CH₃CH₂OH) 3. Compounds: - Methanol O⁻Na⁺ - Aminoethoxide anion (CH₃NH⁻Na⁺) - Ethanol 4. Compounds: - Sodium ethoxide (C₂H₅ONa) - Sodium acetate (CH₃COONa) - Methanol - Acetic acid (CH₃COOH) **Explanation:** Each set presents a series of compounds for which the reader is required to rank their basicity. Basicity refers to the ability of a compound to accept protons. Generally, the presence of highly electronegative atoms, resonance effects, and the stability of the conjugate acid will influence the basic nature of these compounds. In these sets, functional groups such as alkoxides (e.g., methoxide, ethoxide), amides, and carbanions are presented, with a focus on comparing their basicity.
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