Ray Diagrams Mirrors Worksheet
Ray Diagrams Mirrors Worksheet - Identify the location of the image, orientation (upright or inverted) of the image, the relative size of the image (larger or smaller than object), and the type of image (real or virtual). 3.!any ray travelling through the centre of curvature (c) is reflected back through the centre of curvature. Trace at least two light rays from each object. What is the height of the image? A concave mirror has a focal length of 18 cm. For the following mirrors and corresponding object positions, construct ray diagrams. You must show your diagrams.
Draw a simple object (i.e. Then practice the lost art of image description. Use the rules from the optical ray diagram rules information sheet, follow along with your teacher to draw the ray diagrams for the various cases of optical references. A concave mirror has a focal length of 18 cm.
Ray diagrams for concave mirrors for the following mirrors and corresponding object positions, construct ray diagrams. Plane mirror ray diagram worksheet work through these ray diagram problems using the steps that we discussed in class—make sure to draw in all rays, as well as normal lines. Then describe the location of the image, orientation (upright or inverted) of the image, the relative size of the image (larger or. Make sure that both c and f are present (at least one will be provided) 2. Convex mirrors extra practice worksheet a) draw a ray diagram for each to locate the image. Draw a line to represent a plane mirror.
Use the equations learned in class to find the following information: Images in plane mirrors name:_____ for each of the following cases, draw a ray diagram to show how the light rays reach the observer, and to show the position of the virtual image in the mirror. An object is placed 4 cm in front of a. Then describe the location of the image, orientation (upright or inverted) of the image, the relative size of the image (larger or. For the following mirrors and corresponding object positions, construct ray diagrams.
Draw the image as an arrow and give a description of the image. 2.!any ray travelling through the focus (f) is reflected parallel to the principal axis. Draw the reflected ray backwards along the same line as the incident ray. This worksheet serves as a tool for students to analyze mirror image formation through ray diagrams.
Use The Equations Learned In Class To Find The Following Information:
Trace at least two light rays from each object. Make sure that both c and f are present (at least one will be provided) 2. These diagrams help in understanding the path taken by light rays from an object to our eyes after reflecting off a mirror. Trace at least two light rays from each object.
Worksheets Are Converging Diverging Lenses Ray Diagrams, Ray Diagrams For Mirrors, Work For Exploration Ray Dia.
Then describe the location of the image, orientation (upright or inverted) of the image, the relative size of the image (larger or smaller than object), and the type of image (real or virtual). B) state the characteristics (salt). Convex mirrors extra practice worksheet a) draw a ray diagram for each to locate the image. Ray diagrams for plane mirrors are a straightforward way to visualize how images are formed by reflection.
For Clarity, Draw Each Ray In A Different Colour.
Showing 8 worksheets for ray diagrams. For clarity, draw each ray in a different colour. 3 golden rules 1.!any ray travelling parallel to the principal axis is reflected through the focus (f). 2.!any ray travelling through the focus (f) is reflected parallel to the principal axis.
Mirror Ray Diagrams Worksheet For Each Case Below Draw A Ray Diagram.
Draw a ray diagram for this situation. Use the rules from the optical ray diagram rules information sheet, follow along with your teacher to draw the ray diagrams for the various cases of optical references. Draw the image as an arrow and give a description of the image. Determine the part of the mirror which is used to see the ray ab from point c.
What is the height of the image? This booklet uses red for rays through the vertex, green for rays parallel to the principal axis, blue for rays through the Plane mirror ray diagram worksheet work through these ray diagram problems using the steps that we discussed in class—make sure to draw in all rays, as well as normal lines. Then describe the location of the image, orientation (upright or inverted) of the image, the relative size of the image (larger or. Make sure that both c and f are present (at least one will be provided) 2.