Below is a compound microscope. A) Find ine image location using geometrical optics (assume thin lenses, draw your lines on the figure below). B) What are the image features (inverted or not, magnified or not, real or not)? C) Calculate the final image location using the thin lens equation (d,'). D) What are the magnification (M) of this microscope and final image size (h2')? E) Where should you put a digital camera if you want to capture and save the image on your computer? L1 L2 2f, f1 f1 2f2 f2 f2 h,=-1.26 cm d,=4.05 cm x=9.35 cm f;= 2.36 cm (objective) f2= 5.42 cm (eye piece)

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter37: Reflection And Images Formed By Reflection
Section37.3: Images Formed By Plane Mirrors
Problem 37.2CE
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Below is a compound microscope.
A) Find ine image location using geometrical optics (assume thin lenses, draw your lines on the figure below).
B) What are the image features (inverted or not, magnified or not, real or not)?
C) Calculate the final image location using the thin lens equation (d,').
D) What are the magnification (M) of this microscope and final image size (h;')?
E) Where should you put a digital camera if you want to capture and save the image on your computer?
L1
L2
2f,
f1
f,
2f2
f2
f2
h,=-1.26 cm
d,=4.05 cm
x=9.35 cm
f,= 2.36 cm
(objective)
f2= 5.42 cm
(eye piece)
Transcribed Image Text:Below is a compound microscope. A) Find ine image location using geometrical optics (assume thin lenses, draw your lines on the figure below). B) What are the image features (inverted or not, magnified or not, real or not)? C) Calculate the final image location using the thin lens equation (d,'). D) What are the magnification (M) of this microscope and final image size (h;')? E) Where should you put a digital camera if you want to capture and save the image on your computer? L1 L2 2f, f1 f, 2f2 f2 f2 h,=-1.26 cm d,=4.05 cm x=9.35 cm f,= 2.36 cm (objective) f2= 5.42 cm (eye piece)
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