mage Formation by Mirrors. The thin spherical glass shell hown on the right has a spherical shape with a radius of curvature of 12.0 cm, and both of its surfaces can act as mirrors. A seed 3.30 mm high is placed 15.0 cm from the center of the mirror along the optic axis, as shown in the igure. In the figure shown, the glass shell is a concave mirror. a) Calculate the location and height of the image of this seed in cm. b) What is the description of the image of the seed in the mirror? el What the answers in par and (bl if the mirror is 3.30 mm 15.0 cm

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Chapter1: Units, Trigonometry. And Vectors
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Image Formation by Mirrors.

Image Formation by Mirrors. The thin spherical glass shell
shown on the right has a spherical shape with a radius of
curvature of 12.0 cm, and both of its surfaces can act as
mirrors. A seed 3.30 mm high is placed 15.0 cm from the
center of the mirror along the optic axis, as shown in the
figure. In the figure shown, the glass shell is a concave mirror.
(a) Calculate the location and height of the image of this seed
in cm.
(b) What is the description of the image of the seed in the
mirror?
(c) What are the answers in parts (a) and (b) if the mirror is
reversed (i.e. convex mirror)?
3.30 mm
K-15.0 cm
Transcribed Image Text:Image Formation by Mirrors. The thin spherical glass shell shown on the right has a spherical shape with a radius of curvature of 12.0 cm, and both of its surfaces can act as mirrors. A seed 3.30 mm high is placed 15.0 cm from the center of the mirror along the optic axis, as shown in the figure. In the figure shown, the glass shell is a concave mirror. (a) Calculate the location and height of the image of this seed in cm. (b) What is the description of the image of the seed in the mirror? (c) What are the answers in parts (a) and (b) if the mirror is reversed (i.e. convex mirror)? 3.30 mm K-15.0 cm
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