Why do aldehydes, esters, and amides all have a strong absorption in the 1630-1780 cm1 region of their IR spectra? A) The bond between H and the sp³-hybridized C in these functional groups vibrates in this energy range. B) Each of these functional groups has at least two resonance structures, and the different vibrations of the resonance structures give off energy in this region. C) The bond between O and the sp²-hybridized C in these functional groups vibrates at a frequency in this energy range. D) Light at this wavenumber causes the average C to O bond length to increase which causes more of this light to be transmitted. E) An electron in the bond of these functional groups gets excited to the * orbital.

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Why do aldehydes, esters, and amides all have a strong absorption in the
1630-1780 cm1 region of their IR spectra?
A) The bond between H and the sp³-hybridized C in these functional groups
vibrates in this energy range.
B) Each of these functional groups has at least two resonance structures, and
the different vibrations of the resonance structures give off energy in this
region.
C) The bond between O and the sp²-hybridized C in these functional groups
vibrates at a frequency in this energy range.
D) Light at this wavenumber causes the average C to O bond length to increase
which causes more of this light to be transmitted.
E) An electron in the bond of these functional groups gets excited to the *
orbital.
Transcribed Image Text:Why do aldehydes, esters, and amides all have a strong absorption in the 1630-1780 cm1 region of their IR spectra? A) The bond between H and the sp³-hybridized C in these functional groups vibrates in this energy range. B) Each of these functional groups has at least two resonance structures, and the different vibrations of the resonance structures give off energy in this region. C) The bond between O and the sp²-hybridized C in these functional groups vibrates at a frequency in this energy range. D) Light at this wavenumber causes the average C to O bond length to increase which causes more of this light to be transmitted. E) An electron in the bond of these functional groups gets excited to the * orbital.
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