3) A hyperopic patient has a near point distance of 1 meter. If the normal near point distance is 0.25 m, calculate the power of the correction lens in diopters (m). A) 0.25 B) 1 C) 2 D) 3

College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter26: Vision And Optical Instruments
Section: Chapter Questions
Problem 11PE: A severely myopic patient has a far point of 5.00 cm. By how many diopters should the power of his...
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3) A hyperopic patient has a near point distance of 1 meter. If the normal
near point distance is 0.25 m, calculate the power of the correction lens in
diopters (m).
A) 0.25
B) 1
C) 2
D) 3
Transcribed Image Text:3) A hyperopic patient has a near point distance of 1 meter. If the normal near point distance is 0.25 m, calculate the power of the correction lens in diopters (m). A) 0.25 B) 1 C) 2 D) 3
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