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All the common m-directig group make the...

All the common m-directig group make the benzene ring towards electrophilic substitution reactions

A

dectivate

B

Activate

C

Both 1 & 2

D

neutral

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The correct Answer is:
A

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If aromatic ring is substituted by more than one group then electrophilic aromatic substitution reaction take place according to more activating group. The group which donates electrons to aromatic ring knwn as activating group and which withdraw electrons from the ring is called electron withdrawing group. generally all lectron releasing groups activates benzene ring towards electrophilic substitution and electron withdrawing groups deactivates ring towards electrophilic substitutions. Q. Major product formation takes place at which position when the following is subjected for E^(o+) substitution

Towards electrophilic substitution, the most reactive will be

Knowledge Check

  • Towards electrophilic substitution, the most reactive is

    A
    anilinium chloride
    B
    aniline
    C
    N-acetylaniline
    D
    nitrobenzene
  • Which of the following group(s) activate the benzene ring towards electrophilic substitution reaction.

    A
    `-Cl`
    B
    C
    `-O-overset(O)overset("||")(C)-CH_(3)`
    D
    `-C equiv overset(..)N`
  • If aromatic ring is substituted by more than one group then electrophilic aromatic substitution reaction take place according to more activating group. The group which donates electrons to aromatic ring knwn as activating group and which withdraw electrons from the ring is called electron withdrawing group. generally all lectron releasing groups activates benzene ring towards electrophilic substitution and electron withdrawing groups deactivates ring towards electrophilic substitutions. Q. Find out major product of following reaction

    A
    B
    C
    D
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    Towards electrophilic substitution, the most reactive will be

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    Which of the following group activates the benzene ring most towards electrophilic substitution

    Which of the following froups groups deactivates the benzene ring towards electrophilic substitution ?