I chlorine to the para position of phenol is s < onding electrons. H : Cl : O Macmillan Learning Feedback In resonance structures, the molecula skeleton stays the same. That is, there are no changes in the location of atom and single bonds. To draw different resonance structures, you can move lone pairs of electrons or electrons from a л bond. Keep in mind that you can move only the electrons between adjacent atoms, and make sure that you indicate the charges that might result from the electron rearrangement. After drawing all the possible resonance forms, you need to determine the most stable one. The most stable resonance form will be the major contributor. When determining the relative stability of the resonance structures, look at the following things: formal charges, octet rule, conjugation of double bonds, and stabilizing substituents.

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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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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of chlorine to the para position of phenol is s< Feedback
mbonding electrons.
H
:
: Cl :
..
O Macmillan Learning
X
In resonance structures, the molecular
skeleton stays the same. That is, there
are no changes in the location of atoms
and single bonds. To draw different
resonance structures, you can move
lone pairs of electrons or electrons
from a л bond. Keep in mind that you
can move only the electrons between
adjacent atoms, and make sure that you
indicate the charges that might result
from the electron rearrangement.
After drawing all the possible
resonance forms, you need to
determine the most stable one. The
most stable resonance form will be the
major contributor. When determining
the relative stability of the resonance
structures, look at the following things:
formal charges, octet rule, conjugation
of double bonds, and
stabilizing substituents.
Transcribed Image Text:of chlorine to the para position of phenol is s< Feedback mbonding electrons. H : : Cl : .. O Macmillan Learning X In resonance structures, the molecular skeleton stays the same. That is, there are no changes in the location of atoms and single bonds. To draw different resonance structures, you can move lone pairs of electrons or electrons from a л bond. Keep in mind that you can move only the electrons between adjacent atoms, and make sure that you indicate the charges that might result from the electron rearrangement. After drawing all the possible resonance forms, you need to determine the most stable one. The most stable resonance form will be the major contributor. When determining the relative stability of the resonance structures, look at the following things: formal charges, octet rule, conjugation of double bonds, and stabilizing substituents.
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