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Mechanism of reaction of benzene.
a. Electrophilic addition
b. Electrophilic substitution
c. Nucleophilic addition
d. Nucleophilic substitution
b. Electrophilic substitution
Halogenation of benzene uses this as reagent.
a. Halogen
b. HNO3
c. SO3
d. AlCl3
e. H2SO4
a. Halogen
Nitration of benzene uses this as reagent.
a. Halogen
b. HNO3
c. SO3
d. AlCl3
e. H2SO4
b. HNO3
Sulfonation of benzene uses this as reagent.
a. Halogen
b. HNO3
c. SO3
d. AlCl3
e. H2SO4
c. SO3
Catalyst for nitration and sulfonation of benzene.
a. Halogen
b. HNO3
c. SO3
d. AlCl3
e. H2SO4
e. H2SO4
Catalyst for Friedel-Crafts alkylation and acylation of benzene.
a. Halogen
b. HNO3
c. SO3
d. AlCl3
e. H2SO4
d. AlCl3
Product of halogenation of benzene.
a. Halobenzene
b. Nitrobenzene
c. Benzene sulfonic acid
d. Alkylbenzene
e. Acyl benzene
a. Halobenzene
Product of nitration of benzene
a. Halobenzene
b. Nitrobenzene
c. Benzene sulfonic acid
d. Alkylbenzene
e. Acyl benzene
b. Nitrobenzene
Product of sulfonation of benzene.
a. Halobenzene
b. Nitrobenzene
c. Benzene sulfonic acid
d. Alkylbenzene
e. Acyl benzene
c. Benzene sulfonic acid
Product of alkylation of benzene.
a. Halobenzene
b. Nitrobenzene
c. Benzene sulfonic acid
d. Alkylbenzene
e. Acyl benzene
d. Alkylbenzene
Product acylation of of benzene.
a. Halobenzene
b. Nitrobenzene
c. Benzene sulfonic acid
d. Alkylbenzene
e. Acyl benzene
e. Acyl benzene
Reaction of benzene specifically applied in Xanthoproteic test.
a. Halogenation
b. Nitration
c. Sulfonation
d. Friedel-Crafts Alkylation
e. Friedel-Crafts Acylation
b. Nitration
Which of the following is not a benzene?
a. Salicylic acid
b. Thymol
c. Eugenol
d. Cresol
e. Hydroquinone
f. None
f. None
Also benzoic acid and polyphenols such as flavonoids, and tannins.