Question

An object 6 cm high is placed 12 cm in front of a 4 cm focal...

An object 6 cm high is placed 12 cm in front of a 4 cm focal length convex lens.

(a) Draw a ray diagram to produce an image.

(b) Calculate the image location and magnification using the lens equation.

(c) How close is your image position and height to your calculated value (% difference)?

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
An object with a height of 8 cm is placed 10 cm in front of a...
An object with a height of 8 cm is placed 10 cm in front of a converging lens with a focal lenth of 30 cm. a) Is the resulting image real or virtual? b) Draw a ray tracing diagram including all three principle rays. c) Using the thin-lens equation and the definition of magnification, determine both the image distance and the height of the image. Express your anser in cm, and include any algebraic signs. S’= ____________________________ H’ = ____________________________
Principal Ray Diagrams and Equations 1.) An object is 6 cm in front of a convex...
Principal Ray Diagrams and Equations 1.) An object is 6 cm in front of a convex mirror with a focal length of 10 cm. a.) Use ray tracing alone to determine the location and magnification of the image. Is the image upright or inverted? Is it real or virtual? b.) Use equations alone to determine the location and magnification of the image. Is the image upright or inverted? Is it real or virtual? 2.) A 2.0-cm-tall object is 20 cm...
An object 3.0 cm high is placed in front of a biconvex lens with a focal...
An object 3.0 cm high is placed in front of a biconvex lens with a focal length of 20.0 cm. The image is formed 35.0 cm from the vertex. Determine the lateral magnification of the image.
A 2.00-cm-tall object is located 18.0 cm in front of a converging lens with a focal...
A 2.00-cm-tall object is located 18.0 cm in front of a converging lens with a focal length of 30.0 cm. (a) Use the lens equation and (b) a ray diagram to describe the type, location, and height of the image that is formed.
Consider a convex lens with a focal length of 5.00 cm. An object is located at...
Consider a convex lens with a focal length of 5.00 cm. An object is located at 12.50 cm. The object is 5.50 cm tall. Draw the ray diagram to scale. Determine the image distance, the height of the image, the magnification and the characteristices of the image.
A) An object is placed 26 cm in front of a converging lens of focal length...
A) An object is placed 26 cm in front of a converging lens of focal length 5 cm. Another converging lens of focal length 10 cm is placed 20 cm behind the first lens. 1) Find the position of the final image with respect to the second lens.  ____cm 2) Find the magnification of the final image. _____ B) A diverging lens of focal length −12cm projects the image of an object onto a wall. What is the object distance if...
(a) An object that is 3.27 cm high is placed 23.9 cm in front of a...
(a) An object that is 3.27 cm high is placed 23.9 cm in front of a thin lens that has a power equal to 10 D. Draw a ray diagram to find the position and the size of the image and check your results using the thin-lens equation. s' = ______cm y' = ______cm (b) Repeat Part (a) if the object is placed 18.4 cm in front of the lens s' = ______ cm y' = ______cm (c) Repeat Part...
An object is placed in front of a converging lens (convex lens) with a radius of...
An object is placed in front of a converging lens (convex lens) with a radius of curvature of 4.88 cm and focal length of 2.44 cm. An image is formed the object. (a) Calculate how far is the lens from the object if the image is real. (b) How far is image from the lens? (c) is the image upright or inverted, and is the image magnified or diminished? (d) Draw the ray diagram to confirm your result prediction.
A concave lens has a focal length of magnitude 10 cm. It is placed a distance...
A concave lens has a focal length of magnitude 10 cm. It is placed a distance of 25 cm from a concave mirror with a focal length of magnitude 15 cm. An object is set a distance of 22 cm in front of the lens. The observer is at the same location as the object, so the light from the object goes through the lens, reflects off the mirror, and comes back through the lens to the observer. Draw the...
An object is placed 4 cm away from a concave lens of focal length 3 cm....
An object is placed 4 cm away from a concave lens of focal length 3 cm. A convex lens of focal length 5 cm is placed 4 cm away from the concave lens in the same direction (so the distance between convex lens and the object is 8 cm). Use any method to figure out if the final image is real/virtual, upright/inverted and find its distance from the convex lens. Explain in thorough detail. draw a proper ray diagram for...