The correct order of acidity among the following is:
1. CH2=CH2 >CH≡CH > CH3C≡CH > CH3-CH3
2. CH≡CH > CH3-C≡CH > CH2=CH2 >CH3-CH3
3. CH≡CH > CH2=CH2 > CH3-C≡CH > CH3-CH3
4. CH3-CH3 > CH2=CH2 > CH3-C≡CH > CH≡CH
The correct order of increasing bond length of C-H, C-O, C-C and C=C is:
1.
2.
3.
4.
The correct order regarding the electronegativity of hybrid orbitals of carbon is:
1.
2.
3.
4.
The \(C - H\) bond distance is longer in :
| 1. | \(C_2H_2\) | 2. | \(C_2H_4\) |
| 3. | \(C_2H_6\) | 4. | \(C_2H_2Br_2\) |
The correct hybridization states of carbon atoms in the above compound are -
| 1. | C1= sp , C2= sp3 | 2. | C1= sp2 , C2= sp |
| 3. | C1= sp3 , C2= sp | 4. | C1= sp , C2= sp2 |
| List-I (Molecule) |
List-II
(Number and types of bond/s between two carbon atoms)
|
||
| A. | Ethane | I. | \(\small{\mathrm{One ~\sigma-bond~ and~ Two~ \pi-bonds}}\) |
| B. | Ethene | II. | \(\text { Two } \pi \text {-bonds }\) |
| C. | Carbon molecule, \(\mathrm{C} _2\) |
III. | \(\text { One } \sigma \text {-bond }\) |
| D. | Ethyne | IV. | \(\small{\mathrm{One ~\sigma-bond ~and ~One~ \pi-bond}}\) |
| 1. | A-IV, B-III, C-II, D-I | 2. | A-III, B-IV, C-II, D-I |
| 3. | A-III, B-IV, C-I, D-II | 4. | A-I, B-IV, C-II, D-III |
The aromatic compound among the following is:-
| 1. | ![]() |
2. | ![]() |
| 3. | ![]() |
4. | ![]() |
The aromatic structure(s) out of given structures are :

| 1. | A, C, D, F & G only | 2. | A & D only |
| 3. | A, C, E, F only | 4. | All are aromatic |
The Huckel's rule-based aromaticity is shown by:
| (A) | (B) | ||
| (C) | (D) | ||
| (E) | (F) |
| 1. | A, B, D only | 2. | B, D only |
| 3. | B, D, E and F only | 4. | A, B, D, E & F only |
The IUPAC name of the above-mentioned compound is -
1. (N-Bromo)-3-methyl-2-oxobutanamide
2. (N-Bromo)-2-oxo-4-methylbutanamide
3. (N-Bromo)-1,2-dioxo-3-methylbutanamine carboxamide
4. (N-Bromo)-1-oxo-2-methylpropane