MCQ
$CH_3 -CH_2 -CH=CH_2$ has hybridisation
- A$sp, sp, sp^2 , sp^2$
- B$sp^3 , sp^3 , sp^2 ,sp$
- ✓$sp^3 , sp^3 , sp^2 , sp^2$
- D$sp^3 , sp^2 , sp^2 , sp$
$S p^3$ hybridisation - single bond
$s p^2$ hybridisation - double bond
$s p$ hybridisation - triple bond
So, $CH _3- CH _2- CH = CH _2$ has hybridisation
$s p^3-s p^3-s p^2-s p^2$
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$(C-H= 414; H-O = 463; H-Cl=431;$$ C-Cl=326, C-O=335)$
$CH_3-OH(g) + HCl(g) \rightarrow CH_3-Cl(g) + H_2O(g)$
Major product $(A)$ of the above reaction
