$2,3$-dibromobutane can be converted to $2$-butyne in a two-step reaction using:

  • A
    $(i) \ HCl$ and $(ii) \ NaH$
  • B
    $(i) \ \text{alc. } KOH$ and $(ii) \ NaNH_2$
  • C
    $(i) \ Na$ and $(ii) \ NaOH$
  • D
    $(i) \ Br_2$ and $(ii) \ NaH$

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Similar Questions

Give chemical reactions for the following conversions:
$1$. $2-$bromobutane from $2-$butyne
$2$. $2-$propanol and $1-$propanol from propyne

Identify the alkyne in the following sequence of reactions:
Alkyne $\xrightarrow{\text{H}_2, \text{Lindlar's catalyst}} A$ $\xrightarrow{\text{Ozonolysis}} B \text{ (only)}$
Given that $B$ is obtained from $\text{CH}_2=\text{CH}_2$ via the Wacker process.

$Ph-CH_2-CH=CH-CH_3$ $\xrightarrow[(ii) \text{ Alc. KOH}]{(i) \text{ } Br_2}$ ?

What is obtained when chloroform is heated with $Ag$ powder?

Which is the most suitable reagent among the following to distinguish compound $(3)$ from the others?
$(1) \ CH_3-C \equiv C-CH_3$
$(2) \ CH_3-CH_2-CH_2-CH_3$
$(3) \ CH_3-CH_2-C \equiv CH$
$(4) \ CH_3-CH=CH_2$

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