




To identify the product B formed in the given reaction sequence, we need to analyze each step:
The starting compound is benzonitrile, \({C}_6{H}_5{CN}\). When benzonitrile undergoes hydrolysis in the presence of hydrochloric acid (HCl), it converts to the corresponding amide, benzamide (\({C}_6{H}_5{CONH}_2\)). This transformation is depicted in the reaction below:
\[ {C}_6{H}_5{CN} + 2H_2O + HCl \rightarrow {C}_6{H}_5{CONH}_2 + NH_4Cl \]
The benzamide product (A) is then reacted with silver cyanide (AgCN). In this step, a nucleophilic substitution takes place where the amide group is converted to the isocyanate group, forming phenyl isocyanate (\({C}_6{H}_5{NCO}\)). The reaction can be summarized as follows:
\[ {C}_6{H}_5{CONH}_2 + AgCN \rightarrow {C}_6{H}_5{NCO} + Ag \]
The final product B is phenyl isocyanate (\({C}_6{H}_5{NCO}\)).

The temperature at which the rate constants of the given below two gaseous reactions become equal is ____________ K (Nearest integer).
\[ X \longrightarrow Y, \qquad k_1 = 10^{6} e^{-\frac{30000}{T}} \] \[ P \longrightarrow Q, \qquad k_2 = 10^{4} e^{-\frac{24000}{T}} \] Given: \( \ln 10 = 2.303 \)
Match the LIST-I with LIST-II. 
Choose the correct answer from the options given below:


Which one of the following graphs accurately represents the plot of partial pressure of CS₂ vs its mole fraction in a mixture of acetone and CS₂ at constant temperature?



The temperature at which the rate constants of the given below two gaseous reactions become equal is ____________ K (Nearest integer).
\[ X \longrightarrow Y, \qquad k_1 = 10^{6} e^{-\frac{30000}{T}} \] \[ P \longrightarrow Q, \qquad k_2 = 10^{4} e^{-\frac{24000}{T}} \] Given: \( \ln 10 = 2.303 \)