A glass sphere has radius R = 6.2 cm and index of refraction 1.9. A paperweight is constructed by slicing through the sphere along a plane that is 2.0 cm from the center of the sphere, leaving height h = 4.2 cm. The paperweight is placed on a table and viewed from directly above by an observer who is distance d = 9.6 cm from the tabletop (the figure below). When viewed through the paperweight, how far away does the tabletop appear to be to the observer? Observer- Number 11.24 Units cm

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*Chapter 34, Problem 040
Your answer is partially correct. Try again.
A glass sphere has radius R = 6.2 cm and index of refraction 1.9. A paperweight is constructed by
slicing through the sphere along a plane that is 2.0 cm from the center of the sphere, leaving height
h = 4.2 cm. The paperweight is placed on a table and viewed from directly above by an observer who
is distance d = 9.6 cm from the tabletop (the figure below). When viewed through the paperweight,
how far away does the tabletop appear to be to the observer?
Observer-
Number
11.24
Units
cm
Transcribed Image Text:*Chapter 34, Problem 040 Your answer is partially correct. Try again. A glass sphere has radius R = 6.2 cm and index of refraction 1.9. A paperweight is constructed by slicing through the sphere along a plane that is 2.0 cm from the center of the sphere, leaving height h = 4.2 cm. The paperweight is placed on a table and viewed from directly above by an observer who is distance d = 9.6 cm from the tabletop (the figure below). When viewed through the paperweight, how far away does the tabletop appear to be to the observer? Observer- Number 11.24 Units cm
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