Page 1 of 1

4. Turn in the 13C NMR spectra of the starting material and product. Draw the structure of the starting material and pro

Posted: Thu Dec 02, 2021 5:19 am
by answerhappygod
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 1
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 1 (31.78 KiB) Viewed 56 times
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 2
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 2 (37.14 KiB) Viewed 56 times
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 3
4 Turn In The 13c Nmr Spectra Of The Starting Material And Product Draw The Structure Of The Starting Material And Pro 3 (28.93 KiB) Viewed 56 times
4. Turn in the 13C NMR spectra of the starting material and product. Draw the structure of the starting material and product on the appropriate spectrum and assign the non-equivalent carbons (a, b, c, etc.) Correlate the non-equivalent carbons to the appropriate peaks in the spectrum. Now that you know how to calculate the carbon shifts for the aromatic ring, you can pinpoint the exact matches. Write the solvent used above the solvent peak(s) on the spectrum

03 0.4 05 68 or to st r the ft и се 210. 190.0 130 1100 5 144.3575 OPT 138.90 1274 127/01 1300 1100 1060 90.0 solvent съсls 27 1094 14.8436

210.8 1994 DO 051 1800 170.0 wesi 1400 13 SECCIGE TUTTE 36. 17 1. 3. TT 100 1100 1006 COCI, solvent 52 1 TL