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Q.Give the structure of major product

(a) [benzene ring] −CH2−CH=CH2-CH_2-CH=CH_2 + HBr →Peroxide\xrightarrow{Peroxide}
(b) O2N−[benzene ring]−CH2−CH3→UV LightBr2O_2N-\text{[benzene ring]}-CH_2-CH_3 \xrightarrow[UV\ Light]{Br_2}
Manipur CohsemCOHSEM Manipur Higher Secondary Board 2025Subjective· 2mImportance★★★★★
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Peroxide flips HBr addition to anti-Markovnikov via a radical mechanism, while UV light with Br₂ brominates the benzylic position of the ethyl side chain by a separate free-radical substitution.

  1. Anti-Markovnikov (peroxide effect) addition of HBr: In the presence of peroxides, HBr adds to an alkene via a free-radical chain mechanism rather than the usual ionic mechanism, reversing the regiochemistry: a bromine radical adds first to the terminal (less substituted) carbon (giving the more stable secondary/tertiary radical at the other, more substituted carbon), and this radical then abstracts an H from another HBr. The net result is that Br ends up on the terminal carbon — opposite to the Markovnikov product that would form without peroxide: −CH2−CH=CH2→peroxideHBr−CH2−CH2−CH2Br-CH_2-CH=CH_2 \xrightarrow[\text{peroxide}]{HBr} -CH_2-CH_2-CH_2Br
  2. Benzylic bromination under UV light: …

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