Below are slices ~3000-4000 cm1 of several IR spectra (A-F): A,B,C B 50 WWW 3000 D 4000 D,E,F OD 4000 A 5000 3000 D 4000 LOD Wedne IN D 1000 E SD D 4000 3000 3000

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Below are slices (~3000-4000 cm<sup>-1</sup>) of several IR spectra (A-F):

**Spectra A, B, C:**
- **Graph A:** Displays a broad peak centered around 3300 cm<sup>-1</sup> with a smaller peak near 3000 cm<sup>-1</sup>. 
- **Graph B:** Shows a similar broad peak near 3300 cm<sup>-1</sup>, but the smaller peak is less pronounced compared to Graph A.
- **Graph C:** Features a sharper, narrower peak around 3400 cm<sup>-1</sup>, with a doublet closer to 3000 cm<sup>-1</sup>.

**Spectra D, E, F:**
- **Graph D:** Consists of sharp, distinct peaks near 3300 cm<sup>-1</sup> and 3400 cm<sup>-1</sup>.
- **Graph E:** Features prominent peaks at both 3300 cm<sup>-1</sup> and a smaller, separate peak near 3000 cm<sup>-1</sup>.
- **Graph F:** Shows a broad peak similar to Graph A near 3300 cm<sup>-1</sup> but with a more pronounced depth.

Each spectrum is recorded on a graph plotting wavenumber (cm<sup>-1</sup>) on the x-axis against transmittance (or a similar measure) on the y-axis. These spectra are useful for identifying functional groups present in organic compounds based on the distinctive absorption bands.
Transcribed Image Text:Below are slices (~3000-4000 cm<sup>-1</sup>) of several IR spectra (A-F): **Spectra A, B, C:** - **Graph A:** Displays a broad peak centered around 3300 cm<sup>-1</sup> with a smaller peak near 3000 cm<sup>-1</sup>. - **Graph B:** Shows a similar broad peak near 3300 cm<sup>-1</sup>, but the smaller peak is less pronounced compared to Graph A. - **Graph C:** Features a sharper, narrower peak around 3400 cm<sup>-1</sup>, with a doublet closer to 3000 cm<sup>-1</sup>. **Spectra D, E, F:** - **Graph D:** Consists of sharp, distinct peaks near 3300 cm<sup>-1</sup> and 3400 cm<sup>-1</sup>. - **Graph E:** Features prominent peaks at both 3300 cm<sup>-1</sup> and a smaller, separate peak near 3000 cm<sup>-1</sup>. - **Graph F:** Shows a broad peak similar to Graph A near 3300 cm<sup>-1</sup> but with a more pronounced depth. Each spectrum is recorded on a graph plotting wavenumber (cm<sup>-1</sup>) on the x-axis against transmittance (or a similar measure) on the y-axis. These spectra are useful for identifying functional groups present in organic compounds based on the distinctive absorption bands.
**Spectral Analysis Questions**

1. **Which spectra indicate the presence of OH?** 
   - [ Select ]

2. **In which of those the OH is likely a part of COOH?**
   - [ Select ]

3. **Which spectra indicate the presence of H-C≡?**
   - [ Select ]

4. **Which spectra indicate the presence of H-C= ?**
   - [ Select ]

5. **Which then likely indicate the presence of H-N?**
   - [ Select ]

This section provides interactive questions regarding the interpretation of spectral data to identify various chemical groups present in a compound. Each question offers a dropdown menu to select your answer.
Transcribed Image Text:**Spectral Analysis Questions** 1. **Which spectra indicate the presence of OH?** - [ Select ] 2. **In which of those the OH is likely a part of COOH?** - [ Select ] 3. **Which spectra indicate the presence of H-C≡?** - [ Select ] 4. **Which spectra indicate the presence of H-C= ?** - [ Select ] 5. **Which then likely indicate the presence of H-N?** - [ Select ] This section provides interactive questions regarding the interpretation of spectral data to identify various chemical groups present in a compound. Each question offers a dropdown menu to select your answer.
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