College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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An object is placed 40 cm to the left of a concave mirror, radius of curvature 30 cm. The image is
(a) Virtual, Upright 10.81 to the right
(b) Real, Inverted 30 cm to the left
(c) Virtual, Inverted 120 cm to the left
(d) Real Inverted 15 cm to the left
(e) Real, Inverted 24 cm to the left
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- Chapter 34, Problem 011 Spherical mirrors. Object O stands on the central axis of a spherical mirror. For this situation object distance is ps = +12 cm, the type of mirror is convex, and then the distance between the focal point and the mirror is 15 cm (without proper sign). Find (a) the radius of curvature r (including sign), (b) the image distance i, and (c) the lateral magnification m. Also, determine whether the image is (d) real or virtual, (e) inverted from object O or noninverted, and (f) on the same side of the mirror as O or on the opposite side. (a) Number Units (b) Number Units (c) Number Units (p) (e) (f)arrow_forwardAn object is located 13.9 cm in front of a convex mirror, the image being 5.94 cm behind the mirror. A second object, twice as tall as the first one, is placed in front of the mirror, but at a different location. The image of this second object has the same height as the other image. How far in front of the mirror is the second object located?arrow_forwardA concave spherical mirror has a radius of curvature of magnitude 20.6 cm. (a) Find the location of the image for the following object distances. (If there is no image formed enter "NONE".) object distance (cm) image distance (cm) location 41.0 in front of the mirror 20.6 in front of the mirror 10.3 There is no image formed. (b) For each case, state whether the image is real or virtual. object distance (cm) real/virtual 41.0 20.6 10.3 (c) For each case, state whether the image is upright or inverted. object distance (cm) real/virtual 41.0 20.6 10.3 real real There is no image formed. 20.6 10.3 inverted inverted There is no image formed. ✓ (d) Find the magnification in each case. (If there is no image formed enter "NONE".) object distance (cm) magnification 41.0arrow_forward
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