
College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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Transcribed Image Text:An object with a height of 46 cm is placed 2.4 m in front of a concave mirror
with a focal length of 0.50 m.
7.
(a) Determine the approximate location and size of the image using a ray
diagram.
(b) Is the image upright or inverted?
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- An object 2.00 cm high is placed 12.5 cm in front of a convex mirror with radius of curvature of 4.10 cm. Where is the image formed? If the image is formed in front of the mirror, enter a positive answer and if the image is formed behind the mirror, enter a negative answer.arrow_forwardA 1.70-m-tall person stands 8.60 m in front of a large, concave spherical mirror having a radius of curvature of 5.20 m. (a) Determine the mirror's focal length (in m). (b) Determine the image distance (in m). (c) Determine the magnification. (d) Is the image real or virtual? (e) Is the image upright or inverted?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
- You got a spherical concave mirror with focal length (f) of 15.0 cm. (a) Locate the image (q) and find the magnification for an object distance (p) of 30.0 cm in front of the mirror. Determine whether the image is real or virtual, inverted or upright, and larger or smaller. (b) Do the same for object distances of 15.0 cm Group of answer choices 1. (a) q = 30 cm, Image is virtual, upright, of same size, M = 1. (b) q = infinity, real, undefined, M = 2 2. (a) q = 30 cm, Image is real, inverted, of same size, M = 1. (b) q = infinity, virtual, undefined, M = undefined 3. (a) q = 15 cm, Image is real, upright, double of the object size, M = 2. (b) q = infinity, real, undefined, M = undefined 4. (a) q = 45 cm, Image is real, upright, of same size, M = 1. (b) q = infinity, virtual, upright, M = undefinedarrow_forwardA real object is 65 cm from a concave mirror. Find the radius of curvature of the mirror, knowing that (a) the image is real and reduced by 49%, (b) the image is real and magnified by 28%; (b) the image is virtual and enlarged by 78%.arrow_forwardAn object is placed in front of a convex mirror with radius of curvature = 18 cm. The object's height is 4.1 cm and it is initially 26 cm in front of the mirror. Find the (a) location and (b) height of the image. Next the object moves closer to the mirror, so the object distance is 3.4 cm. Again, find the (c) location and (d) height of the image. (e) What is the ratio of the image height when the object distance is 3.4 cm to that when the object distance is 26 cm?arrow_forward
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