For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the benzene ring, as well as the overall electron-density of the ring compared to unsubstituted benzene. Molecule CH3 Inductive Effects Odonating O withdrawing no inductive effects Odonating withdrawing Ono inductive effects Resonance Effects O donating O withdrawing Ono resonance effects. Odonating O withdrawing O no resonance effects Overall Electron-Density O electron-rich O electron-deficient Osimilar to benzene electron-rich: O electron-deficient Osimilar to benzene X

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the benzene ring, as well as the
overall electron-density of the ring compared to unsubstituted benzene.
Molecule
CH3
Inductive Effects
Odonating
O withdrawing
no inductive effects
Odonating
withdrawing
Ono inductive effects
Resonance Effects
O donating
O withdrawing
Ono resonance effects.
Odonating
O withdrawing
O no resonance effects
Overall Electron-Density
O electron-rich
O electron-deficient
Osimilar to benzene
electron-rich:
O electron-deficient
Osimilar to benzene
X
Transcribed Image Text:For each of the substituted benzene molecules below, determine the inductive and resonance effects the substituent will have on the benzene ring, as well as the overall electron-density of the ring compared to unsubstituted benzene. Molecule CH3 Inductive Effects Odonating O withdrawing no inductive effects Odonating withdrawing Ono inductive effects Resonance Effects O donating O withdrawing Ono resonance effects. Odonating O withdrawing O no resonance effects Overall Electron-Density O electron-rich O electron-deficient Osimilar to benzene electron-rich: O electron-deficient Osimilar to benzene X
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