Planar N,H, cis-Triazine Vibrational Spectra IR transmittanee 1.0 0.8 0.6 Signal strength (arb. units) Mode freq Intensity Intensity (cm-1) IR Raman 1209.703 0 2.7574 1341.991 2.5326 32.5145 1543.331 39.40SS 5.5153 1655 069 8.4754 7.5747 3081.114 89.7018 284.9344 3177.89 51.6823 2043244 0.4 0.2 0.0 Purancantane 1500 3000 2000 2500 Wavenumbers (cm) 2
Group Theory - Lab 2 1. Does the number of normal modes in the vibrational spectra of your assigned polyatomic molecules (with N atoms) match you expectation? State the number of vibrational modes in both spectra and explain your expectation. 2. From the spectrum you have been provided, identify whether a. all the optically-active vibrations have been observed b. the molecules are linear or bent. 3. Identify whether your assigned polyatomic molecules have centres of inversion or not. Explain your reasoning. 4. Using group theoretical methods, assign the symmetries of the observed vibrational modes. State whether they are IR or Raman active. Note: For linear molecules you will have to use a slightly different method as the reduction formula cannot be used for h=0. 5. Distinguish between the stretching and bending modes in the spectra provided.
Planar N,H, cis-Triazine Vibrational Spectra IR transmittanee 1.0 0.8 0.6 Signal strength (arb. units) Mode freq Intensi
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Planar N,H, cis-Triazine Vibrational Spectra IR transmittanee 1.0 0.8 0.6 Signal strength (arb. units) Mode freq Intensi
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