Classify the following species into carbocation,free radical,and carbanion:
$CH_3^{\bullet}, CH_3^{+}, \bar{C}H_3, (CH_3)_3C^{\bullet}, (CH_3)_3C^{+}, (CH_3)_2CH^{+}, (CH_3)_3\bar{C}:, (CH_3)_3\ddot{C}H, C_6H_5CH_2^{\bullet}, CH_3\ddot{C}H_2, C_6H_5CH_2^{+}, CH_2=CHCH_2^{\bullet}, CH_2=CHCH_2^{+}$

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Carbocation: $CH_3^{+}, (CH_3)_3C^{+}, (CH_3)_2CH^{+}, C_6H_5CH_2^{+}, CH_2=CHCH_2^{+}$
Free radical: $CH_3^{\bullet}, (CH_3)_3C^{\bullet}, C_6H_5CH_2^{\bullet}, CH_2=CHCH_2^{\bullet}$
Carbanion: $\bar{C}H_3, (CH_3)_3\bar{C}:, CH_3\ddot{C}H_2$

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Find out the number of $1-2-$shifts during the conversion of the given carbocation to the final alkene product.

Which of the following is most likely to undergo a favorable hydride shift?

What is the order of stability of the following carbocations?
$(X). CH_3 - \overset{\oplus}{C}H - CH_3$
$(Y). CH_3 - \overset{\oplus}{C}H - OCH_3$
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Arrange the following in decreasing order of stability.
$(i)$ $CH_3^{\bullet}$,$(CH_3)_3C^{\bullet}$,$(CH_3)_2CH^{\bullet}$ and $CH_3CH_2^{\bullet}$
$(ii)$ $CH_3CH_2^{+}$,$(CH_3)_3C^{+}$,$(CH_3)_2CH^{+}$ and $CH_3^{+}$

The increasing order of stability of the following free radicals is:

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