Can YOU determine the general characteristics of the “image” 1.Its location (closer than, further than or the same distance as the object and the mirror)

Slides:



Advertisements
Similar presentations
Mirror and Lens Properties. Image Properties/Characteristics Image Type: Real or Virtual Image Orientation: Erect or Inverted Image Size: Smaller, Larger,
Advertisements

TODAY WE WILL... Practice how to draw the images in convex mirrors. Complete activity 4.10 “Trends in Images in Convex Mirrors”. SUCCESS CRITERIA - You.
TOC 1 Physics 212 and 222 Reflection and Mirrors What do we see? Law of Reflection Properties of Spherical Mirrors Ray Tracing Images and the Equations.
→ ℎ
Chapter 13: Section 3. Learning Targets Describe the difference between a real and a virtual image Draw ray diagrams for objects located at various distances.
10.4 Images in Convex Mirrors Copyright © 2010 McGraw-Hill Ryerson Ltd. Convex mirrors are mirrors with reflective surfaces that bulge or curve outwards.
Mirrors Law of Reflection The angle of incidence with respect to the normal is equal to the angle of reflection.
Reflection from Curved Mirrors. 2 Curved mirrors The centre of the mirror is called the pole. A line at right angles to this is called the principal axis.
AP Physics B Mrs. Wallace. Reflection Reflection occurs when light bounces off a surface. There are two types of reflection Specular reflection Off a.
Reflection of Light. When light rays hit an object, they change direction. The type of surface the light encounters determines the type of reflection.
Curved Mirrors.
Curved Mirrors Chapter 13 Section 3. Mirror Terminology  Ccenter of curvature  Rradius of curvature.
Concave Mirrors Can Form Real Inverted Images. Topic4.4 (Pages ) TODAY WE WILL... Have a quick review about plane mirrors, and the terms of a concave.
Ch. 18 Mirrors and Lenses Milbank High School. Sec Mirrors Objectives –Explain how concave, convex, and plane mirrors form images. –Locate images.
CH 14: MIRRORS & LENSES 14.1: Mirrors. I. Plane Mirrors  Flat, smooth mirror  Creates a virtual image: an image your brain perceives even though no.
Curved Mirrors. Two types of curved mirrors 1. Concave mirrors – inwardly curved inner surface that converges incoming light rays. 2. Convex Mirrors –
An object in front of a curved mirror gives off light in all different directions. Most miss the mirror so don’t make an image. Many, many, many light.
11.9 Images in Curved Mirrors
Optics Reflections/Mirrors 1 What do we see? Law of Reflection Properties of Spherical Mirrors Ray Tracing Images and the Equations.
Convex Mirrors LG: I can describe the uses on convex mirrors and draw ray diagrams involving convex mirrors.
Grade 10 Science – Optics Unit Cardinal Ambrozic C.S.S.
13.1 Lenses. Predicting Images in a Convex Lens.
Curved Mirrors and Ray Diagrams SNC2D. Concave Mirrors A concave mirror is a curved mirror with the reflecting surface on the inside of the curve. The.
10.3 Images in Concave Mirrors. Concave Mirror Unlike a plane mirror, a curved mirror produces an image that is a different size, shape, and/or orientation.
Curved Mirrors Part 2 - Convex Mirrors. Review: Reflections in a Plane Mirror.
Curved Mirrors Curved mirrors are like plane mirrors
J.M. Gabrielse Concave (just a part of a sphere).
Images in Concave Mirrors. Properties  The mirror has a reflecting surface that curves inward.  When you look at objects in the mirror, the image appears.
Chapter 14 Light and Reflection
There are some mirrors that distort the reflected image. Cosmetic mirrors magnify things, and other mirrors make things look smaller.
Grade 10 Applied Science – Curved Mirrors
Ray Diagrams for spherical mirrors. Finding the focal point Center of Curvature (C)- if the mirror actually was a sphere, this is the center of that sphere.
Light: Geometric Optics Chapter Ray Model of Light Light travels in a straight line so a ray model is used to show what is happening to the light.
Curved Mirrors: Locating Images in Concave & Convex Mirrors.
Light wave Recall: Light must reflect off of an object before it can be used to see the object. A flat mirror is called a plane mirror. A plane mirror.
Concave and Convex Mirrors
11.6 Using Curved Mirrors Text pages
Curved Mirrors (Two Kinds) C: Centre of Curvature (2F) V: Vertex PA: Principal Axis F: Focal Point f : focal length (Distance FV)
J.M. Gabrielse Concave (just a part of a sphere).
Light and Reflection Curved Mirrors. Concave Spherical Mirrors Concave spherical mirror – an inwardly curved, spherical mirrored surface that is a portion.
Curved Mirrors Chapter 14, Section 3 Pg
Ray Diagrams Basics Mirror Equations
Mirror Equation Ray diagrams are useful for determining the general location and size of the image formed by a mirror. However, the mirror equation and.
Chapter 7 Light and Geometric Optics
Predicting Images in Convex and Concave Lenses. When the object is located at twice the focal length (2F)
Ray Diagrams for Lenses. Convex (Converging) Lenses There are two Focal points One in Front and one Behind Focal point is ½ way between Center of Curvature.
Plane Mirror: a mirror with a flat surface
Image Formation. Flat Mirrors  p is called the object distance  q is called the image distance  θ 1 = θ 2 Virtual Image: formed when light rays do.
Principal axis FCC Image Characteristics Real Inverted f < d i < 2f h i < h o Any incident ray parallel to the principal axis will reflect through the.
Unit 8 – Curved Mirrors. Unit 8 – Concave Spherical Mirror Concave spherical mirror: a mirror whose reflecting surface is a segment of the inside of a.
Curved Mirrors. Images in Mirrors S ize, A ttitude, L ocation, T ype Size –Is the image bigger, smaller or the same size as the object? Attitude –Is the.
Today’s agenda: Plane Mirrors. You must be able to draw ray diagrams for plane mirrors, and be able to calculate image and object heights, distances, and.
Mirrors.
Spherical Mirrors A spherical mirror has the shape of a section of a sphere The mirror focuses incoming parallel rays to a point (focal point) A concave.
RAY DIAGRAMS FOR MIRRORS
Curved Mirrors
Mirror Equations Lesson 4.
4.4 Concave and Convex Mirrors
REFLECTIONS of PLANE AND SPHERICAL MIRRORS
Light and Reflection Curved Mirrors.
CURVED MIRRORS.
4.4 Images in Curved Mirrors
Reflection.
Characteristics of an Image
Lenses A lens is a transparent material (with at least one curved side) that causes light refracts in a predictable and useful way. Each ray is refracted.
Characteristics of an Image
Images in Curved Mirrors
Mirror Equations.
Characteristics of an Image
Presentation transcript:

Can YOU determine the general characteristics of the “image” 1.Its location (closer than, further than or the same distance as the object and the mirror) 2.Its orientation (upright or inverted) 3.Its size (with respect to the object) 4.Its type (real or virtual) *Let’s look back and analyse our concave “images”

10.3(cont’d) – Mirror and Magnification Equations Magnification~ the change in size of an optically produced image

10.3 summary from text The reflecting surface of a concave mirror curves inward. Rays that travel toward a concave mirror, parallel to and near the principal axis, will reflect and pass through the principal axis at the focal point, F. For an object between the focal point and the concave mirror, the virtual, upright image is larger than the object, and the image distance is larger than the object distance. For an object between the focal point and the centre of curvature, the real, inverted image is larger than the object, and the image distance is larger than the object distance. For an object beyond C, the real, inverted image is smaller than the object, and the image distance is smaller than the object distance. You can calculate the image distance and size using, ~ the mirror equation- and the ~ magnification equation- Spherical aberration is the distortion of an image in a curved mirror that results when reflected rays from the outer parts of the mirror do not go through the focal point. Homework: p.427 #1-4

10.4 Images in Convex Mirrors

Practice, practice, practice!