Task 2: Suppose the cover glass is removed. The optics of the microscope focused on an amoeba are presented in Figure 2. The objective is separated from the eyepiece by 15 cm. objective focal length 5.0 mm 15 cm Figure 2 eyepiece focal length 3.0 cm (a) Calculate the image distance formed by the objective (what your book calls L on page 671). (b) Calculate the total magnification of the amoeba.
Task 2: Suppose the cover glass is removed. The optics of the microscope focused on an amoeba are presented in Figure 2. The objective is separated from the eyepiece by 15 cm. objective focal length 5.0 mm 15 cm Figure 2 eyepiece focal length 3.0 cm (a) Calculate the image distance formed by the objective (what your book calls L on page 671). (b) Calculate the total magnification of the amoeba.
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
Transcribed Image Text:Task 2: Suppose the cover glass is removed. The optics of the microscope focused on an
amoeba are presented in Figure 2. The objective is separated from the eyepiece by 15 cm.
objective focal
length 5.0 mm
15 cm
Figure 2
eyepiece focal
length 3.0 cm
(a) Calculate the image distance formed by the objective (what your book calls L on page 671).
(b) Calculate the total magnification of the amoeba.
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