Question

An object is placed to the left of a lens, and a real image is formed...

An object is placed to the left of a lens, and a real image is formed to the right of the lens. The image is inverted relative to the object and is one-half the size of the object. The distance between the object and the image is 75 cm. (a) How far from the lens is the object? (b) What is the focal length of the lens?

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Answer:- givendata Utv= 75 cm ex+0= 75cm V= V=25cm @) Magnification Mahir Object distance au= avho av ...S&X25 u=50cm from Le

Add a comment
Know the answer?
Add Answer to:
An object is placed to the left of a lens, and a real image is formed...
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. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • 3. Solve the problem: A real inverted image 1 of an object is formed by a...

    3. Solve the problem: A real inverted image 1 of an object is formed by a certain lens; the object - image separation is d = 40.0 cm, measured along the central axis of the lens. The image is just half the size of the object. (a) What kind of lens must be used to produce this image? (b) How far from the object must the lens be placed? (c) What is the focal length of the lens?

  • An object is placed to the left of a thin converging lens with a focal length...

    An object is placed to the left of a thin converging lens with a focal length of 8 cm. A real and inverted image is formed 13.3 cm to the right of the lens. What is the distance of the object from the lens? 20.1 cm 13.3 cm 5.00 cm 0.20 cm

  • An object is 22.0 cm to the left of a lens that has a focal length...

    An object is 22.0 cm to the left of a lens that has a focal length of +8.50 cm. A second lens, which has a focal length of -29.0 cm, is 5.80 cm to the right of the first lens. (a) Find the distance between the object and the final image formed by the second lens. (b) What is the overall magnification? Please help with parts A and B. Thanks! An object is 22.0 cm to the left of a...

  • An object is placed to the right of a converging lens and an image is formed...

    An object is placed to the right of a converging lens and an image is formed to the left of the lens. lens object image 1) Following the standard sign convention for the lens equation 5 + 5 = }, the image distance is: positive negative Submit 2) The image is: real virtual Submit 3) For this lens, the sign of the focal length is: positive negative Submit Help 4) An object is placed to the left of a converging...

  • In the figure, a real inverted image I of an object O is formed by a...

    In the figure, a real inverted image I of an object O is formed by a certain lens (not shown); the object-image separation is d = 43.4 cm, measured along the central axis of the lens. The image is just 1/3 the size of the object. (a) What kind of lens must be used to produce this image? (b) How far from the object must the lens be placed? (c) What is the focal length of the lens? Lens here...

  • 11.87 A 1.00-cm-high object is placed 4.85 cm to the left of a converging lens of...

    11.87 A 1.00-cm-high object is placed 4.85 cm to the left of a converging lens of focal length 8.20 cm. A diverging lens of focal length - 16.00 cm is 6.00 cm to the right of the converging lens. Find the position and height of the final image. position Take the image formed by the first lens to be the object for the second lens and apply the lens equation to each lens to locate the final image. cm 8.442...

  • The distance between an object and its image formed by a diverging lens is 46.9 cm....

    The distance between an object and its image formed by a diverging lens is 46.9 cm. The focal length of the lens is -244.2 cm. (a) Find the image distance. (b) Find the object distance. An object is 20 cm in front of a diverging lens that has a focal length of -13 cm. How far in front of the lens should the object be placed so that the size of its image is reduced by a factor of 1.0?

  • 1.) The distance between an object and its image formed by a diverging lens is 46.1...

    1.) The distance between an object and its image formed by a diverging lens is 46.1 cm. The focal length of the lens is -237.3 cm. (a) Find the image distance. cm (b) Find the object distance. cm 2.) An object is 19 cm in front of a diverging lens that has a focal length of -11 cm. How far in front of the lens should the object be placed so that the size of its image is reduced by...

  • A small object is placed 25.0 cm from a converging lens of focal length 40.0 cm....

    A small object is placed 25.0 cm from a converging lens of focal length 40.0 cm. The object is to the left of the lens. Where is the image? A- 17cm to the right of the lens B- 25cm to the left of the lens C- 17 cm to the left of the lens D-25 cm to the right of the lens E-67cm to the right of the lens F-67 cm to the left of the lens A small object...

  • 6. An object is placed at a distance of 60 cm left of a converging lens...

    6. An object is placed at a distance of 60 cm left of a converging lens with a focal length of 20 cm. Calculate the image distance. Is the image virtual or real? . If the object is 10 cm tall, what is the size of the image? Now another lens of focal length 16 is placed 12 cm right of the first lens. Determine the image position and magnification

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT