Q2. Reflection formed by a spherical mirror. An object 0.75 cm high is placed 14 cm from the vertex of a convex spherical mirror having radius of curvature of magnitude |R| = 18.0 cm. The object is positioned a perpendicular distance of 2 cm from the optical axis. (1) Draw a ray diagram showing where the image is formed. Use the following rays (often called principal rays) locate the image: (a) A ray travelling from the object to the mirror parallel to the optical axis. For a convex mirror, the virtual part of this ray passes through the focus (distance f = R/2 along the optical axis) on the same side of the mirror as the centre of %3D curvature. (b) A ray travelling from the object directly towards the centre of curvature.

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Q2. Reflection formed by a spherical mirror. An object 0.75 cm high is placed 14 cm from the
vertex of a convex spherical mirror having radius of curvature of magnitude |R| = 18.0 cm. The
object is positioned a perpendicular distance of 2 cm from the optical axis.
(1) Draw a ray diagram showing where the image is formed. Use the following rays (often called
principal rays) locate the image:
(a) A ray travelling from the object to the mirror parallel to the optical axis.
For a convex mirror, the virtual part of this ray passes through the focus (distance
f = R/2 along the optical axis) on the same side of the mirror as the centre of
curvature.
(b) A ray travelling from the object directly towards the centre of curvature.
This ray strikes the mirror along the normal direction and is therefore reflected without
a change in angle.
(2) Calculate the position, size, orientation and nature (real or virtual) of the image.
Note. Carefully check the sign conventions for the radius of curvature!
Transcribed Image Text:Q2. Reflection formed by a spherical mirror. An object 0.75 cm high is placed 14 cm from the vertex of a convex spherical mirror having radius of curvature of magnitude |R| = 18.0 cm. The object is positioned a perpendicular distance of 2 cm from the optical axis. (1) Draw a ray diagram showing where the image is formed. Use the following rays (often called principal rays) locate the image: (a) A ray travelling from the object to the mirror parallel to the optical axis. For a convex mirror, the virtual part of this ray passes through the focus (distance f = R/2 along the optical axis) on the same side of the mirror as the centre of curvature. (b) A ray travelling from the object directly towards the centre of curvature. This ray strikes the mirror along the normal direction and is therefore reflected without a change in angle. (2) Calculate the position, size, orientation and nature (real or virtual) of the image. Note. Carefully check the sign conventions for the radius of curvature!
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