b. Two 'H NMR signals: C,HCL C,HO, B CHO, C,H,OCI D A C

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### Nuclear Magnetic Resonance (NMR) Analysis

**Section: Identifying Compounds Based on NMR Signals**

**b. Two \( \,^1H \) NMR signals:**

- **Compound A:** \( \text{C}_3\text{H}_6\text{Cl}_2 \)
- **Compound B:** \( \text{C}_3\text{H}_6\text{O}_2 \)
- **Compound C:** \( \text{C}_3\text{H}_6\text{O}_2 \)
- **Compound D:** \( \text{C}_2\text{H}_5\text{OCl} \)

### Explanation:

This section focuses on identifying organic compounds that produce two proton (\( ^1H \)) NMR signals. Each compound listed has a distinct molecular formula, indicating variations in atom composition and potential structure. The purpose of this analysis is to determine which of these compounds displays exactly two signals in its hydrogen NMR spectrum, suggesting two unique hydrogen environments. Each compound's structure will influence the number and type of signals observed in an NMR analysis.

Understanding these signals is crucial for structural elucidation in organic chemistry. Refer to molecular structures and the theory of chemical shifts for more precise interpretation.
Transcribed Image Text:### Nuclear Magnetic Resonance (NMR) Analysis **Section: Identifying Compounds Based on NMR Signals** **b. Two \( \,^1H \) NMR signals:** - **Compound A:** \( \text{C}_3\text{H}_6\text{Cl}_2 \) - **Compound B:** \( \text{C}_3\text{H}_6\text{O}_2 \) - **Compound C:** \( \text{C}_3\text{H}_6\text{O}_2 \) - **Compound D:** \( \text{C}_2\text{H}_5\text{OCl} \) ### Explanation: This section focuses on identifying organic compounds that produce two proton (\( ^1H \)) NMR signals. Each compound listed has a distinct molecular formula, indicating variations in atom composition and potential structure. The purpose of this analysis is to determine which of these compounds displays exactly two signals in its hydrogen NMR spectrum, suggesting two unique hydrogen environments. Each compound's structure will influence the number and type of signals observed in an NMR analysis. Understanding these signals is crucial for structural elucidation in organic chemistry. Refer to molecular structures and the theory of chemical shifts for more precise interpretation.
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