| Statement I: | \(CH_2=CH-Cl\) is having a stronger C-CI bond than \(CH_3-CH_2-Cl.\) |
| Statement II: | will rotate the plane polarised light after solvation. |
| Assertion (A): | has more dipole moment than ![]() |
| Reason (R): | has more boiling moment than ![]() |
| 1. | Both (A) and (R) are correct, (R) is a correct explanation of (A). |
| 2. | Both (A) and (R) are correct, (R) is not a correct explanation of (A). |
| 3. | (A) is correct, (R) is incorrect. |
| 4. | (A) is incorrect, (R) is correct. |
| 1. | ![]() |
2. | ![]() |
| 3. | ![]() |
4. | ![]() |
| 1. | 1,2-Dichloroethane | 2. | 1,1-Dichloroethane |
| 3. | 1,2-Dichloroethene | 4. | 1,1-Dichloroethene |
What is the final product (major) 'A' in the given reaction?
| 1. | 2. | ||
| 3. | 4. |
| 1. | ![]() |
| 2. | ![]() |
| 3. | ![]() |
| 4. | ![]() |
| Statement I: | \(\mathrm{C_2H_5OH}\) and \(\text{AgCN}\) both can generate nucleophile. |
| Statement II: | \(\text{KCN }\)and \(\text{AgCN}\) both will generate nitrile nucleophile with all reaction conditions. |
| 1. | Statement I is incorrect and Statement II is correct. |
| 2. | Both Statement I and Statement II are correct. |
| 3. | Both Statement I and Statement II are incorrect. |
| 4. | Statement I is correct and Statement II is incorrect. |
| (A) | \(\mathrm{AgCN/KCN}\) |
| (B) | \(\mathrm{RCOOAg/RCOOK}\) |
| (C) | \(\mathrm{AgNO_2/KNO_2}\) |
| (D) | \(\mathrm{AgI/KI}\) |
The major product formed in the following reaction is :-
1. CH3CH2CH2C(Br)(CH3)2
2. Br(CH2)3CH(CH3)2
3. CH3CH2CH(Br)CH(CH3)2
4. CH3CH(Br)CH2CH(CH3)2