A. A converging lens (n = 1.50) has radii of curvature of 2.50 cm and 5.00 cm; %3D you will need to assign the correct signs. Determine the focal length of lens-1. B. A cup of Darjeeling (10 cm tall) is placed 5.00 cm in front of lens-1. Compute the position and magnification of the image. C. A diverging mirror, of radius 15 cm, is placed 20 cm to the right of the converging lens. Determine the (i) position, (ii) final magnification (and its image characteristics), and (iii) size of the final image.

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A. A converging lens (n = 1.50) has radii of curvature of 2.50 cm and 5.00 cm;
you will need to assign the correct signs. Determine the focal length of lens-1.
B. A cup of Darjeeling (10 cm tall) is placed 5.00 cm in front of lens-1. Compute
the position and magnification of the image.
C. A diverging mirror, of radius 15 cm, is placed 20 cm to the right of the
converging lens. Determine the (i) position, (ii) final magnification (and its
image characteristics), and (iii) size of the final image.
Transcribed Image Text:A. A converging lens (n = 1.50) has radii of curvature of 2.50 cm and 5.00 cm; you will need to assign the correct signs. Determine the focal length of lens-1. B. A cup of Darjeeling (10 cm tall) is placed 5.00 cm in front of lens-1. Compute the position and magnification of the image. C. A diverging mirror, of radius 15 cm, is placed 20 cm to the right of the converging lens. Determine the (i) position, (ii) final magnification (and its image characteristics), and (iii) size of the final image.
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