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Figures 1 and 2 give characteristic chemical shifts for some of the hydrogens and carbons associated with benzaldehyde, benzyl alcohol, phenyl acetate, and methoxybenzene. Using

Figures 1 and 2 give characteristic chemical shifts for some of the hydrogens and carbons associated with benzaldehyde, benzyl alcohol, phenyl acetate, and methoxybenzene. Using this data and the corresponding NMR spectra, complete the following table. (Note: for Hd-Hg and C5-C10, give a range of chemical shifts.) image text in transcribed
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Figare I. Characteristic 3 C NMR chemical shifts for a the carbeeyt carboe of bertaldehyde, b) the carbinot sarbon of benzyl aloohol, c) the carbonyl carbon and methyl carbon of phoryf actate and, d) the methyl carbon of methoxyberinene (anirole). Figare 2, Characteristic 'H NMR chemical shifts for a) the hemr lis hydrogen of benualdeliyde, b) the carbinol bydrogens of benzyl alcohol, c) the methyl hytrogers of phenyl acetafe and, d) the methyl bydrogens of methoxyhearene (aniwile). Due on Janusry 31,2023 1. Figures 1 and 2 give characteristic chemical shifts for some of the hydrogens and carbons associated with benzaldehyde, benzyl alcohol, phenyl acctate, and methoxybenzene. Using this data, the labcled structure found in the documcnt on BlackBoard entitled "Vanillin Acetate - NMR and IR Spectra", and the corresponding NMR spectra, complete the following table. (Note: for HdH5 and C3Cme give a range of chemical shifts.) Proton NMR Data Carbon - 13 NMR Data 1 H-NMR Spectrum (full scale) 13C-NMR Spectrum (" X " = Solvent; CDCl3 )

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