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Question


A spherical surface separates two media of refractive indices 1 and 1.5 as shown in figure. Distance of the image of an object 'O', is : 
(C is the center of curvature of the spherical surface and R is the radius of curvature)

The correct answer is

0.4 m left to the spherical surface 

To find the distance of the image of the object 'O', we use the formula for refraction at a spherical surface:

\dfrac{n_2}{v} - \dfrac{n_1}{u} = \dfrac{n_2 - n_1}{R}

Where:

  • n_1 = 1 (refractive index of Medium 1)
  • n_2 = 1.5 (refractive index of Medium 2)
  • u = -0.2 \, \text{m} (object distance, negative as it is measured against the direction of incident light)
  • R = +0.4 \, \text{m} (radius of curvature, positive for the convex surface facing Medium 2)

Substituting the values into the refraction formula:

\dfrac{1.5}{v} - \dfrac{1}{-0.2} = \dfrac{1.5 - 1}{0.4}

Simplify:

\dfrac{1.5}{v} + 5 = \dfrac{0.5}{0.4}

\dfrac{1.5}{v} + 5 = 1.25

\dfrac{1.5}{v} = 1.25 - 5

\dfrac{1.5}{v} = -3.75

v = \dfrac{1.5}{-3.75} = -0.4 \, \text{m}

The negative sign indicates that the image is formed on the same side as the object, which is to the left of the spherical surface.

Therefore, the distance of the image is 0.4 m left to the spherical surface.

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Similar Questions

  1. Consider following statements for refraction of light through prism, when angle of deviation is minimum. 

    A. The refracted ray inside prism becomes parallel to the base. 

    B. Larger angle prisms provide smaller angle of minimum deviation. 

    C. Angle of incidence and angle of emergence becomes equal. 

    D. There are always two sets of angle of incidence for which deviation will be same except at minimum deviation setting. 

    E. Angle of refraction becomes double of prism angle. Choose the correct answer from the options given below:

  2. The radii of curvature for a thin convex lens are $10 \ cm$ and $15 \ cm$ respectively. The focal length of the lens is $12 \ cm$. The refractive index of the lens material is

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  4. In the figure shown below, a resistance of $150.4 \Omega$ is connected in series to an ammeter A of resistance $240 \Omega$. A shunt resistance of $10 \Omega$ is connected in parallel with the ammeter. The reading of the ammeter is __________ mA.

  5. A slanted object AB is placed on one side of convex lens as shown in the diagram. The image is formed on the opposite side. Angle made by the image with principal axis is :

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Important Questions from Optics

  1. Consider following statements for refraction of light through prism, when angle of deviation is minimum. 

    A. The refracted ray inside prism becomes parallel to the base. 

    B. Larger angle prisms provide smaller angle of minimum deviation. 

    C. Angle of incidence and angle of emergence becomes equal. 

    D. There are always two sets of angle of incidence for which deviation will be same except at minimum deviation setting. 

    E. Angle of refraction becomes double of prism angle. Choose the correct answer from the options given below:

  2. The radii of curvature for a thin convex lens are $10 \ cm$ and $15 \ cm$ respectively. The focal length of the lens is $12 \ cm$. The refractive index of the lens material is

  3. The work function of a metal is $3 \ eV$. The color of the visible light that is required to cause emission of photoelectrons is

  4. In the figure shown below, a resistance of $150.4 \Omega$ is connected in series to an ammeter A of resistance $240 \Omega$. A shunt resistance of $10 \Omega$ is connected in parallel with the ammeter. The reading of the ammeter is __________ mA.

  5. A slanted object AB is placed on one side of convex lens as shown in the diagram. The image is formed on the opposite side. Angle made by the image with principal axis is :

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