
To solve the given problem and identify the acid D formed in the reaction, we will analyze each step of the reaction:
Thus, the acid D formed in the above reaction is Succinic acid.
The correct answer is Succinic acid.
Step-by-step Reaction Analysis:
1.Reaction of C$_2$H$_5$Br with alcoholic KOH:
C$_2$H$_5$Br (ethyl bromide) undergoes dehydrohalogenation with alcoholic KOH to form ethene (CH$_2$ = CH$_2$).
This step is represented as:
\[\text{C}_2\text{H}_5\text{Br} \xrightarrow{\text{alc. KOH}} \text{CH}_2 = \text{CH}_2 \; (\text{A})\]
2. Addition of Br$_2$ in CCl$_4$:
Ethene reacts with bromine (Br$_2$) in the presence of carbon tetrachloride (CCl$_4$) to form 1,2-dibromoethane (BrCH$_2$CH$_2$Br).
This step is represented as:
\[\text{CH}_2 = \text{CH}_2 \xrightarrow{\text{Br}_2/\text{CCl}_4} \text{BrCH}_2\text{CH}_2\text{Br} \; (\text{B})\]
3. Reaction of 1,2-dibromoethane with excess KCN:
The compound BrCH$_2$CH$_2$Br reacts with excess potassium cyanide (KCN) to form 1,2-dicyanoethane (NCCH$_2$CH$_2$CN).
This step is represented as:
\[\text{BrCH}_2\text{CH}_2\text{Br} \xrightarrow{\text{Excess KCN}} \text{NCCH}_2\text{CH}_2\text{CN} \; (\text{C})\]
4. Hydrolysis of 1,2-dicyanoethane:
Hydrolysis of 1,2-dicyanoethane (NCCH$_2$CH$_2$CN) in the presence of excess H$_3$O$^+$ (acidic medium) yields succinic acid (HOOCCH$_2$CH$_2$COOH).
This step is represented as:
\[\text{NCCH}_2\text{CH}_2\text{CN} \xrightarrow{\text{H}_3\text{O}^+\text{ (Excess)}} \text{HOOCCH}_2\text{CH}_2\text{COOH} \; (\text{D})\]
Conclusion: The acid D formed is succinic acid.
What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)

Cobalt chloride when dissolved in water forms pink colored complex $X$ which has octahedral geometry. This solution on treating with cone $HCl$ forms deep blue complex, $\underline{Y}$ which has a $\underline{Z}$ geometry $X, Y$ and $Z$, respectively, are



What will be the equilibrium constant of the given reaction carried out in a \(5 \,L\) vessel and having equilibrium amounts of \(A_2\) and \(A\) as \(0.5\) mole and \(2 \times 10^{-6}\) mole respectively?
The reaction : \(A_2 \rightleftharpoons 2A\)
A black body is at a temperature of 2880 K. The energy of radiation emitted by this body with wavelength between 499 nm and 500 nm is U1, between 999 nm and 1000 nm is U2 and between 1499 nm and 1500 nm is U3. The Wien's constant, b = 2.88×106 nm-K. Then,