| Column-I | Column-II | ||
| (A) | Williamson's synthesis | (i) | \(\mathrm{C}_6 \mathrm{H}_5 \mathrm{OH}+\mathrm{CH}_3 \mathrm{COCl}\) in the presence of pyridine |
| (B) | o-Nitrophenol | (ii) | \(\mathrm{C}_2 \mathrm{H}_5 \mathrm{ONa}+\mathrm{C}_2 \mathrm{H}_5 \mathrm{Br}\) |
| (C) | p-Nitrophenol | (iii) | Intramolecular hydrogen bonding |
| (D) | Acetylation | (iv) | Intermolecular hydrogen bonding |
| 1. | ![]() |
2. | ![]() |
| 3. | 4. |


To unlock all the explanations of this course, you need to be enrolled.

To unlock all the explanations of this course, you need to be enrolled.
The following reaction can be classified as:
1. Dehydration
2. Williamson alcohol synthesis
3. Williamson ether synthesis
4. Dehydrogenation of alcohol
| 1. | 2. | ||
| 3. | 4. |
| X | Y | ||
| (i) | Decarboxylation | (a) | Addition reaction |
| (ii) | Ozonolysis | (b) | Soda-lime |
| (iii) | Williamson's synthesis | (c) | Structure of alkene |
| (iv) | Dichloroethylene | (d) | Ether |
| Option | (i) | (ii) | (iii) | (iv) |
| 1. | (a) | (b) | (c) | (d) |
| 2. | (d) | (b) | (a) | (c) |
| 3. | (c) | (a) | (d) | (b) |
| 4. | (b) | (c) | (d) | (a) |
| 1. | \(\left(\mathrm{CH}_3\right)_3 C\mathrm{Br} \) | 2. | \(\mathrm{CH}_3 \mathrm{CH}_2 \mathrm{CH}_2 \mathrm{Br} \) |
| 3. | \(\mathrm{CH}_3 \mathrm{Br} \) | 4. | ![]() |
Which of the following will not give ether on reaction with CH3CH2ONa?
1. CH3CH2CI
2. C6H5CH2Cl
3. (CH3)3CCl
4. CH3Cl

| 1. | ![]() |
2. | ![]() |
| 3. | ![]() |
4. | ![]() |