For the reaction sequence given below, the correct statement(s) is (are): 
(In the options, X is any atom other than carbon and hydrogen, and it is different in P, Q, and R.)
\( pK_a \) value of the conjugate acids of the leaving groups in \( \text{P}, \text{Q} \) and \( \text{R} \) follows the order \( \text{R}>\text{Q}>\text{P} \)
Step 1: Identify the halides formed
- Compound \( \text{P} \): Cyclohexyl bromide (R–Br) - Compound \( \text{Q} \): Cyclohexyl iodide (R–I), via Finkelstein reaction - Compound \( \text{R} \): Cyclohexyl fluoride (R–F), via Swarts reaction Step 2: C–X bond enthalpy trend
Bond enthalpy order for C–X bonds generally follows: \[ \text{C–F}>\text{C–Cl}>\text{C–Br}>\text{C–I} \] So in this case: \[ \text{C–F (R)}>\text{C–Br (P)}>\text{C–I (Q)} \Rightarrow \boxed{\text{(B) is correct}} \] Why other options are incorrect: (A) C–X bond length increases with atomic size: \[ \text{C–F}<\text{C–Br}<\text{C–I} \Rightarrow \text{Bond length order: R<P<Q}, not Q>R>P \Rightarrow \text{(A) is incorrect} \] (C) Reactivity towards \( \text{S}_\text{N}2 \) depends on leaving group ability. Better leaving group → more reactive: \[ \text{I}^->\text{Br}^->\text{F}^- \Rightarrow \text{Q>P>R}, not P>R>Q \Rightarrow \text{(C) is incorrect} \] (D) \( pK_a \) of conjugate acids: \[ \text{HI}<\text{HBr}<\text{HF} \Rightarrow pK_a: R (F^-)<P (Br^-)<Q (I^-) \Rightarrow \text{(D) is incorrect} \] Final Answer Final Answer: \( \boxed{\text{(B)}} \)
Monocyclic compounds $ P, Q, R $ and $ S $ are the major products formed in the reaction sequences given below.
The product having the highest number of unsaturated carbon atom(s) is:
For the reaction sequence given below, the correct statement(s) is(are): 
Consider a reaction $ A + R \rightarrow Product $. The rate of this reaction is measured to be $ k[A][R] $. At the start of the reaction, the concentration of $ R $, $[R]_0$, is 10-times the concentration of $ A $, $[A]_0$. The reaction can be considered to be a pseudo first order reaction with assumption that $ k[R] = k' $ is constant. Due to this assumption, the relative error (in %) in the rate when this reaction is 40% complete, is ____. [$k$ and $k'$ represent corresponding rate constants]
Monocyclic compounds $ P, Q, R $ and $ S $ are the major products formed in the reaction sequences given below.
The product having the highest number of unsaturated carbon atom(s) is:
For the reaction sequence given below, the correct statement(s) is(are):
The reaction sequence given below is carried out with 16 moles of X. The yield of the major product in each step is given below the product in parentheses. The amount (in grams) of S produced is ____. 
Use: Atomic mass (in amu): H = 1, C = 12, O = 16, Br = 80
The major products obtained from the reactions in List-II are the reactants for the named reactions mentioned in List-I. Match each entry in List-I with the appropriate entry in List-II and choose the correct option. 
Let $ P(x_1, y_1) $ and $ Q(x_2, y_2) $ be two distinct points on the ellipse $$ \frac{x^2}{9} + \frac{y^2}{4} = 1 $$ such that $ y_1 > 0 $, and $ y_2 > 0 $. Let $ C $ denote the circle $ x^2 + y^2 = 9 $, and $ M $ be the point $ (3, 0) $. Suppose the line $ x = x_1 $ intersects $ C $ at $ R $, and the line $ x = x_2 $ intersects $ C $ at $ S $, such that the $ y $-coordinates of $ R $ and $ S $ are positive. Let $ \angle ROM = \frac{\pi}{6} $ and $ \angle SOM = \frac{\pi}{3} $, where $ O $ denotes the origin $ (0, 0) $. Let $ |XY| $ denote the length of the line segment $ XY $. Then which of the following statements is (are) TRUE?