The two lenses of a compound microscope are separated by a distance of 19.0 cm. If the objective lens produces a lateral magnification of 11.0x and the overall magnification is 125x, determine the angular magnification of the eyepiece, the focal length of the eyepiece in cm, and the focal length of the objective lens in cm. HINT (a) the angular magnification of the eyepiece 11.36 The lateral magnification of a microscope's objective lens is negative, so a lateral magnification of 11.0x corresponds to M₁ = -11.0. Similarly, a microscope's overall magnification is negative so that, for example, 125x corresponds to m = -125. (b) the focal length of the eyepiece in cm x cm (c) the focal length of the objective lens in cm x cm

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Chapter37: Reflection And Images Formed By Reflection
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The two lenses of a compound microscope are separated by a distance of 19.0 cm. If the objective lens produces a lateral magnification of 11.0x and the overall magnification is
125x, determine the angular magnification of the eyepiece, the focal length of the eyepiece in cm, and the focal length of the objective lens in cm.
HINT
(a) the angular magnification of the eyepiece
11.36
The lateral magnification of a microscope's objective lens is negative, so a lateral magnification of 11.0x corresponds to M₁ = -11.0. Similarly, a microscope's
overall magnification is negative so that, for example, 125x corresponds to m = -125.
(b) the focal length of the eyepiece in cm
x cm
(c) the focal length of the objective lens in cm
x cm
Transcribed Image Text:The two lenses of a compound microscope are separated by a distance of 19.0 cm. If the objective lens produces a lateral magnification of 11.0x and the overall magnification is 125x, determine the angular magnification of the eyepiece, the focal length of the eyepiece in cm, and the focal length of the objective lens in cm. HINT (a) the angular magnification of the eyepiece 11.36 The lateral magnification of a microscope's objective lens is negative, so a lateral magnification of 11.0x corresponds to M₁ = -11.0. Similarly, a microscope's overall magnification is negative so that, for example, 125x corresponds to m = -125. (b) the focal length of the eyepiece in cm x cm (c) the focal length of the objective lens in cm x cm
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