4. Putting a glass block in the path of a beam of light will shift the beam's position without altering its direction. In the diagram below, the glass has an index of refraction of 1.52 and is 7.50 cm wide. Light enters the glass block from air at an angle of 26.9°. Calculate by how much the beam of light is displaced, shown as "d" in the diagram.

Inquiry into Physics
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ISBN:9781337515863
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Chapter9: Optics
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Problem 2MIO: Sections 9.6 and 9.7 deal with the phenomena of dispersion and its applications to atmospheric...
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4. Putting a glass block in the path of a beam of light will shift the beam's position without altering its
direction. In the diagram below, the glass has an index of refraction of 1.52 and is 7.50 cm wide. Light enters
the glass block from air at an angle of 26.9°. Calculate by how much the beam of light is displaced, shown
as "d" in the diagram.
5. A simple optical system consists of two lenses. The left lens has a focal length of +3.00 cm and the
right lens has a focal length of -4.50 cm. The lenses are 6.00 cm apart, A 3.00 cm tall object is placed
4.50 cm to the left of the left lens. Calculate:
a) the position of the final image, with respect to the right lens
c) the orientation (inverted or upright) of the final image
b) the size of the final image
d) if the final image is real or virtual
Question 2
Question 4
35 degrees
Fnd the angle
23 degrees
Red
Velet
7.50 cm
Transcribed Image Text:4. Putting a glass block in the path of a beam of light will shift the beam's position without altering its direction. In the diagram below, the glass has an index of refraction of 1.52 and is 7.50 cm wide. Light enters the glass block from air at an angle of 26.9°. Calculate by how much the beam of light is displaced, shown as "d" in the diagram. 5. A simple optical system consists of two lenses. The left lens has a focal length of +3.00 cm and the right lens has a focal length of -4.50 cm. The lenses are 6.00 cm apart, A 3.00 cm tall object is placed 4.50 cm to the left of the left lens. Calculate: a) the position of the final image, with respect to the right lens c) the orientation (inverted or upright) of the final image b) the size of the final image d) if the final image is real or virtual Question 2 Question 4 35 degrees Fnd the angle 23 degrees Red Velet 7.50 cm
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