Use the worked example above to help you solve this problem. A converging lens of focal length 9.3 cm forms images of an object situated at various distances. (a) If the object is placed 27.9 cm from the lens, locate the image, state whether it's real or virtual, and find its magnification. (If either of the quantities evaluate to infinity, type INFINITY.) cm M = (b) Repeat the problem when the object is at 9.3 cm. cm M = (c) Repeat again when the object is 4.65 cm from the lens. cm M =

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Use the worked example above to help you solve this problem. A converging lens of focal length 9.3 cm
forms images of an object situated at various distances.
(a) If the object is placed 27.9 cm from the lens, locate the image, state whether it's real or
virtual, and find its magnification. (If either of the quantities evaluate to infinity, type INFINITY.)
cm
M =
(b) Repeat the problem when the object is at 9.3 cm.
cm
M =
(c) Repeat again when the object is 4.65 cm from the lens.
cm
M =
HINTS:
GETTING STARTED
I'M STUCK!
EXERCISE
Suppose the image of an object is upright and magnified 1.84 times when the object is placed 15.8 cm.
from a lens. Find the location of the image and the focal length of the lens.
cm
f =
cm
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Transcribed Image Text:Use the worked example above to help you solve this problem. A converging lens of focal length 9.3 cm forms images of an object situated at various distances. (a) If the object is placed 27.9 cm from the lens, locate the image, state whether it's real or virtual, and find its magnification. (If either of the quantities evaluate to infinity, type INFINITY.) cm M = (b) Repeat the problem when the object is at 9.3 cm. cm M = (c) Repeat again when the object is 4.65 cm from the lens. cm M = HINTS: GETTING STARTED I'M STUCK! EXERCISE Suppose the image of an object is upright and magnified 1.84 times when the object is placed 15.8 cm. from a lens. Find the location of the image and the focal length of the lens. cm f = cm Need Help? Read It
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