A 16.0-cm-long pencil is placed at a 45.0° angle, with its center 15.0 cm above the optic axis and 45.0 cm from a lens with a 20.0 cm focal length . Assume that the diameter of the lens is large enough for the paraxial approximation to be valid. (a) Where is the image of the pencil? (Give the location of the images of the points A, B, and C on the object, which are located at the eraser, point, and center of the pencil, respectively.) (b) What is the length of the image (that is, the distance between the images of points A and B)? (c) Show the orientation of the image in a sketch
A 16.0-cm-long pencil is placed at a 45.0° angle, with its center 15.0 cm above the optic axis and 45.0 cm from a lens with a 20.0 cm focal length . Assume that the diameter of the lens is large enough for the paraxial approximation to be valid. (a) Where is the image of the pencil? (Give the location of the images of the points A, B, and C on the object, which are located at the eraser, point, and center of the pencil, respectively.) (b) What is the length of the image (that is, the distance between the images of points A and B)? (c) Show the orientation of the image in a sketch
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A 16.0-cm-long pencil is placed at a
45.0° angle, with its center 15.0 cm
above the optic axis and 45.0 cm
from a lens with a 20.0 cm focal
length . Assume that the diameter of the
lens is large enough for the paraxial
approximation to be valid. (a) Where
is the image of the pencil? (Give the
location of the images of the points A, B, and C on the object, which are
located at the eraser, point, and center of the pencil, respectively.) (b) What
is the length of the image (that is, the distance between the images of
points A and B)? (c) Show the orientation of the image in a sketch
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