Iron carbonyl, , is classified as:
| 1. | Tetranuclear | 2. | Mononuclear |
| 3. | Trinuclear | 4. | Dinuclear |
Match Column-I with Column-II and mark the most appropriate option:
| Column-I (Metal ion) |
Column-II (Spin magnetic moment) |
||
| A. | Co3+ | i. | √8 B.M. |
| B. | Cr3+ | ii. | √35 B.M. |
| C. | Fe3+ | iii. | √15 B.M. |
| D. | Ni2+ | iv. | √24 B.M. |
| A | B | C | D | |
| 1. | iv | iii | ii | i |
| 2. | i | ii | iii | iv |
| 3. | iv | i | ii | iii |
| 4. | iii | iv | i | ii |
The correct order with respect to –I effect of the substituents is:
(R = alkyl)
1. –NH2 > –OR < –F
2. –NR2 < –OR < –F
3. –NH2 > –OR > –F
4. –NR2 > –OR > –F
The most stable carbocation among the following is:
| 1. | ` |
2. | ![]() |
| 3. | ![]() |
4. | ![]() |
The molecule among the following that has the hybridization from left to right atoms is:
1.
2.
3.
4.
An EM wave is propagating in a medium with a velocity \(\overrightarrow{{v}}={v} \hat{i}\). The instantaneous oscillating electric field of this EM wave is along the \(+y\) axis. The direction of the oscillating magnetic field of the EM wave will be along:
| 1. | \(-z \text-\)direction | 2. | \(+z \text-\)direction |
| 3. | \(-y \text-\)direction | 4. | \(+y \text-\)direction |
The refractive index of the material of a prism is \(\sqrt{2}\) and the angle of the prism is \(30^\circ.\) One of the two refracting surfaces of the prism is made a mirror inwards with a silver coating. A beam of monochromatic light entering the prism from the other face will retrace its path (after reflection from the silvered surface) if the angle of incidence on the prism is:
| 1. | \(60^\circ\) | 2. | \(45^\circ\) |
| 3. | \(30^\circ\) | 4. | zero |
The magnetic potential energy stored in a certain inductor is \(25~\text{mJ},\) when the current in the inductor is \(60~\text{mA}.\) This inductor is of inductance:
| 1. | \(0.138~\text H\) | 2. | \(138.88~\text H\) |
| 3. | \(1.389~\text H\) | 4. | \(13.89~\text H\) |
| 1. | \(30~\text{cm}\) away from the mirror. |
| 2. | \(36~\text{cm}\) away from the mirror. |
| 3. | \(30~\text{cm}\) towards the mirror. |
| 4. | \(36~\text{cm}\) towards the mirror. |
In the combination of the following gates, the output \(Y\) can be written in terms of inputs \(A\) and \(B\) as:
1. \(\overline {A\cdot B}\)
2. \(A\cdot \overline{B}+ B\cdot \overline{A}\)
3. \(\overline {A\cdot B}+ A\cdot B\)
4. \(\overline {A+ B}\)