College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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Direction: Draw a ray diagram for each to locate the image using convex lenses. State the characteristics (LOST).
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- What type of image would be produced by the setup above? A. No Image B. Real and Virtual C. Virtualarrow_forwardA 5.50 cm tall object is 24.0 cm from a concave mirror with f = 20.0 cm. Find the image height. (Mind your minus signs.) (Unit = cm) Academy of Science. All Rights Reserved. Search H Enter 65 huluarrow_forwardObjective: Construct ray diagrams to determine the location, orientation, size, and type of images formed by curved mirror. Materials: Protractor, ruler and sheets of paper. Concave Mirror A. ( F Convex Mirror F. B. Concave A. Farther than the center of curvature B. At the center of curvature C. Between the center of curvature and the focal point D.At the focal point E. Between the focal point and the center of the lens (vertex) Convex F. Farther than C in front of the mirror G. Between F and V in front of the mirror F C C F Location Between F and C D. C F 2. Use a table similar to table 6 below to summarize the characteristics and location of the images formed. Table 6. Location, Orientation, Size, and Type of Image Formed in Curved Mirrors Location of Object Image Orientation (Upright or Inverted) G. F C E. C F Size( same, Type (real reduced or or virtual) enlargedarrow_forward
- Choose true or false for each statement regarding the sign conventions for lenses. false v The magnification m is negative for inverted images. false v Real images appear on the opposite side of the lens from the object and have a positive value for the image distance. false v The magnification m is positive for inverted images. Submit Answer Incorrect. Tries 1/2 Previous Tries a Post Discussion Send Feedbackarrow_forwardThe radius of curvature of a spherical convex miror is 20 cm. 1) Describe the image formed when a 10-cm tall object is positioned 50 cm from the mirror. Calculate the image distance dI. Follow the sign convention. (Express yor answer to two significant figures). 2) Calculate the image height and describe the orientation. (Express yor answer to two significant figures). 3) Describe the image formed when a 10-cm tall object is positioned 100 cm from the mirror. Calculate the image distance dI. Follow the sign convention. (Express yor answer to two significant figures). 4) Is the image real or virtual? 5) Calculate the image height and describe the orientation. (Express yor answer to two significant figures).arrow_forwardKerry Uss is studying the convex side of her soup spoon. She notices that her 3.8-cm tall nose appears to be 1.2 cm tall when positioned a distance of 2.4 cm from the spoon.a. Determine the image distance for this particular object distance.b. Determine the focal length of the convex side of the spoon.arrow_forward
- Problem 3: An object is placed at a distance greater than the focal length in front of a convex mirror, as shown. ↑ Only one of the locations indicated by the small black circles acts as a focal point. Select all diagrams which show a corectly drawn ray for the scenario in the problem statement. f Submit Hint Feedback I give up!arrow_forward6. A book is 9.26 cm tall and placed 22.7 cm to the left of a plane mirror. What is the height of the image formed by the mirror? * O 4.63 cm O 9.26 cm O 18.5 cm O 2.45 cm Back Next Never submit passwords through Google Forms. This form was created inside of Texas Connections Academy @ Houston. Report Abuse Google Formsarrow_forward3. For a plane mirror, how is the object distance, do, related to the image distance, di? O do = 2 x di do = di O di = do/2 O do = di/2 Larrow_forward
- Help on three part question on convex images please and thank you.arrow_forwardFor the mirror in the attached picture, locate the image by drawing a ray diagram (3 rays) and describe the image. Is it: a. Upright, virtual, reduced. b. Inverted, real, magnified. c. Inverted, virtual, magnified. d. Upright, real, reduced. Thank you.arrow_forwardPlease help. Thank youarrow_forward
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