The "tube length" of a microscope is defined to be the difference between the (objective) image distance and objective focal length: L=di - fobjective. Many microscopes are standardized to a tube length of L = 160 mm . Consider such a microscope whose objective lens has a focal length fobjective = 7.21 mm.

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
Publisher:William Moebs, Jeff Sanny
Chapter2: Geometric Optics And Image Formation
Section: Chapter Questions
Problem 105P: A 7.5 binocular produces an angular magnification of —7.50, acting like a telescope. (Mirrors are...
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A) how far from the object should this lens be placed? B) what focal length eyepiece would give an overall magnification of -55? C) what focal length eyepiece would give an overall magnification of -100?
The "tube length" of a microscope is defined to be
the difference between the (objective) image
distance and objective focal length:
-
L = di – fobjective. Many microscopes are
standardized to a tube length of L = 160 mm .
Consider such a microscope whose objective lens
has a focal length fobjective = 7.21 mm.
Transcribed Image Text:The "tube length" of a microscope is defined to be the difference between the (objective) image distance and objective focal length: - L = di – fobjective. Many microscopes are standardized to a tube length of L = 160 mm . Consider such a microscope whose objective lens has a focal length fobjective = 7.21 mm.
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