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- The following 1H NMR peaks were recorded on a spectrometer operating at 200 MHz. Convert each into δ units. (a) CHCl3; 1454 Hz (b) CH3Cl; 610 Hz (c) CH3OH; 693 Hz (d) CH2Cl2; 1060 Hzwhat is the structure for this H NMR, C12H16O2 HDI = 557. 200 10 __100_ 140 120 6 100 S 1 13C NMR C12H12 135.39 133.91 129.97 127.39 127.20 126.21 21.69
- Resolves into 13C NMR Spectrum (50.0 MHz, CDCI, solution) two signals at higher field DEPT CgH11Br Resolves into two signals at higher field expansions proton decoupled solvent 35.0 34.0 ppm 200 160 120 80 40 O 8 (ppm) 1H NMR Spectrum (200 MHz, CDCI, solution) expansion 3.0 2.5 ppm TMS 10 9 8 7 6 5 4 3 2 1 8 (ppm) Determine the structure of the compound based on the above informationInterpret the NMR spectrum 11 10 9 00 7 6 5 ppm 4 C,H,O,N M. Wt = 139 3 N 1 0In a 300 MHz NMR spectrometer, A) what is the Larmor frequency in MHz of a 15N nucleus? g H = N 26.752; g = 2.7126; B) Using the same NMR instrument, suppose that a 13C nucleus from a sample generates a signal which has a frequency of 11,250 Hz higher than that from the carbons in TMS. What is the chemical shift of that carbon atom from the sample? A) 30 MHz; B) 0.15 ppm OA) 25 MHz; B) 0.35 ppm A) 35 MHz; B) 0.30 ppm OA) 25 MHz; B) 0.55 ppm
- Please describe the key characteristics of the H-NMR and 13C-NMR spectra.Chemistry 1. Expected Signals ('H NMR and ¹3C NMR) TEUERSutet In the boxes provided, indicate the number of signals that would be expected in the 'H NMR and 13C NMR 13C NMR ¹H NMR 13C NMR ¹H NMR 13C NMR ¹H NMR HOT H-N 13C NMR 1H NMR 13C NMR ¹H NMR 13C NMR ¹H NMRA 300-MHz spectrometer records a proton that absorbs at a frequency 2130 Hz downfiled from TMS.