If you were to find the focal point of a converging, or concave, mirror, it would be positive and half the radius of curvature. On the diagram below draw the three principal reflected rays from the object (the arrow in this case ;) which will indicate the position (d;), size (hi), orientation (upright or inverted), and nature (real or virtual) of the image formed. Label each value on the diagram and give the actual numerical values according to the symbols used in equations from the "Lenses & Mirrors Notes" document. (The three principal rays for reflection/mirrors are thoroughly described in your text.) d₂ = 10cm f = 6cm
If you were to find the focal point of a converging, or concave, mirror, it would be positive and half the radius of curvature. On the diagram below draw the three principal reflected rays from the object (the arrow in this case ;) which will indicate the position (d;), size (hi), orientation (upright or inverted), and nature (real or virtual) of the image formed. Label each value on the diagram and give the actual numerical values according to the symbols used in equations from the "Lenses & Mirrors Notes" document. (The three principal rays for reflection/mirrors are thoroughly described in your text.) d₂ = 10cm f = 6cm
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter17: Reflections And Mirrors
Section: Chapter Questions
Problem 40A
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