1. | \(2~\text{m}\) | 2. | \(6~\text{m}\) |
3. | \(8~\text{m}\) | 4. | \(4~\text{m}\) |
1. | \(\mu_{2}=\dfrac{1}{3},~\mu_{3}=\dfrac{1}{2}\) | 2. | \(\mu_{2}=3,~\mu_{3}=\dfrac{3}{2}\) |
3. | \(\mu_{2}=\dfrac{1}{3},~\mu_{3}=\dfrac{2}{3}\) | 4. | \(\mu_{2}=3,~\mu_{3}=2\) |
1. | \(t_{APB}=t_{AQB}\) |
2. | \(t_{APB}<t_{AQB}\) |
3. | \(t_{APB}>t_{AQB}\) |
4. | \(t_{APB}\) maybe greater than or less than \(t_{AQB}\) depending on whether \(Q\) is to the left or right of \(P\). |
Assertion (A): | Parallel rays of light of different colours fail to converge to a point after reflection from a spherical mirror. |
Reason (R): | The refractive index of any material depends on the frequency of light. |
1. | (A) is True but (R) is False. |
2. | (A) is False but (R) is True. |
3. | Both (A) and (R) are True and (R) is a correct explanation of (A). |
4. | Both (A) and (R) are True but (R) is not a correct explanation of (A). |
1. | \(u\) | 2. | \(u/2\) |
3. | \(2u\) | 4. | \(4u\) |
1. | \(100~\text{cm}\) in front of the concave lens |
2. | \(50~\text{cm}\) in front of the concave lens |
3. | \(50~\text{cm}\) behind the concave lens |
4. | infinity |
1. | \( \left ( \dfrac{7}{6} \right )^\circ\) | 2. | \( \left ( \dfrac{3}{2} \right )^\circ\) |
3. | \(- \left ( \dfrac{1}{2} \right )^\circ\) | 4. | \( \left ( \dfrac{1}{2} \right )^\circ\) |