The image depicts an infrared spectroscopy graph, presenting the relationship between % Transmittance and Wavenumbers (cm⁻¹). **Graph Details:** - **X-Axis (Horizontal):** Labeled Wavenumbers (cm⁻¹), it ranges from 500 to 4000 cm⁻¹. This axis represents the frequency of infrared light absorbed by the sample material. - **Y-Axis (Vertical):** Labeled % Transmittance, it ranges from 0 to 105. This axis represents the percentage of infrared light that passes through the sample. **Graph Description:** - The graph line begins with high transmittance values around 100% and exhibits several peaks and valleys, indicating various absorption bands. - **Significant Peaks:** - A minor peak is observed around 3400 cm⁻¹. - A prominent valley appears near 1600 cm⁻¹, demonstrating substantial IR absorption. - Multiple peaks are visible between 1200 cm⁻¹ and 700 cm⁻¹, indicating complex molecular motions. - **Timestamp:** The graph is marked with "5 38 2023 (GMT-08:00)," indicating when the measurement was recorded. This can suggest the experimental date or data labeling. This spectroscopy data is valuable for identifying molecular structures, functional groups, and chemical compositions based on the characteristic absorption bands.
The image depicts an infrared spectroscopy graph, presenting the relationship between % Transmittance and Wavenumbers (cm⁻¹). **Graph Details:** - **X-Axis (Horizontal):** Labeled Wavenumbers (cm⁻¹), it ranges from 500 to 4000 cm⁻¹. This axis represents the frequency of infrared light absorbed by the sample material. - **Y-Axis (Vertical):** Labeled % Transmittance, it ranges from 0 to 105. This axis represents the percentage of infrared light that passes through the sample. **Graph Description:** - The graph line begins with high transmittance values around 100% and exhibits several peaks and valleys, indicating various absorption bands. - **Significant Peaks:** - A minor peak is observed around 3400 cm⁻¹. - A prominent valley appears near 1600 cm⁻¹, demonstrating substantial IR absorption. - Multiple peaks are visible between 1200 cm⁻¹ and 700 cm⁻¹, indicating complex molecular motions. - **Timestamp:** The graph is marked with "5 38 2023 (GMT-08:00)," indicating when the measurement was recorded. This can suggest the experimental date or data labeling. This spectroscopy data is valuable for identifying molecular structures, functional groups, and chemical compositions based on the characteristic absorption bands.
The image depicts an infrared spectroscopy graph, presenting the relationship between % Transmittance and Wavenumbers (cm⁻¹). **Graph Details:** - **X-Axis (Horizontal):** Labeled Wavenumbers (cm⁻¹), it ranges from 500 to 4000 cm⁻¹. This axis represents the frequency of infrared light absorbed by the sample material. - **Y-Axis (Vertical):** Labeled % Transmittance, it ranges from 0 to 105. This axis represents the percentage of infrared light that passes through the sample. **Graph Description:** - The graph line begins with high transmittance values around 100% and exhibits several peaks and valleys, indicating various absorption bands. - **Significant Peaks:** - A minor peak is observed around 3400 cm⁻¹. - A prominent valley appears near 1600 cm⁻¹, demonstrating substantial IR absorption. - Multiple peaks are visible between 1200 cm⁻¹ and 700 cm⁻¹, indicating complex molecular motions. - **Timestamp:** The graph is marked with "5 38 2023 (GMT-08:00)," indicating when the measurement was recorded. This can suggest the experimental date or data labeling. This spectroscopy data is valuable for identifying molecular structures, functional groups, and chemical compositions based on the characteristic absorption bands.
Please label all the important peaks on the paper (bonds and functional groups). have arrow pointing at them.
please explain how you identified the peaks.
Definition Definition Group of atoms that shape the chemical characteristics of a molecule. The behavior of a functional group is uniform in undergoing comparable chemical reactions, regardless of the other constituents of the molecule. Functional groups aid in the classification and anticipation of reactivity of organic molecules.
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