Question
1.) Parallel light rays pass through a concave lens as illustrated in figure 1. Using the diagram, indicate the focal point of this lens.

2.) A convex lens has a focal length of 100 mm. The lens produces an image from an object placed 50 cm from the lens. Determine the distance from the lens to the image in the magnification of the image.

Figure 1: Concave lens
0 0
Add a comment Improve this question Transcribed image text
Answer #1

100 mm) de di -8.3cm 6,0市 4 8-33 ay 6 50 Mo.p

Add a comment
Know the answer?
Add Answer to:
1.) Parallel light rays pass through a concave lens as illustrated in figure 1. Using the...
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
  • A concave lens refracts parallel rays in such a way that they are bent away from...

    A concave lens refracts parallel rays in such a way that they are bent away from the axis of the lens. For this reason, a concave lens is referred to as a diverging lens. Part A Consider the following diagrams, where F represents the focal point of a concave lens. In these diagrams, the image formed by the lens is obtained using the ray tracing technique. Which diagrams are accurate?(Figure 1) (Figure 2) (Figure 3) (Figure 4) Type A if...

  • 1. The distance from the center of a lens to the location where parallel rays converge...

    1. The distance from the center of a lens to the location where parallel rays converge or appear to converge is called the length. convergence O meeting O focal O None of the above 2. When incoming rays are the focal point and the image point are the same. O parallel O from a nearby object O passing through the near side focal point O None of the above 3. A(n) image will not appear on a screen placed at...

  • Incoming parallel rays of light such as from the Sun pass through a lens and form...

    Incoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 m in front of a painting, which is the object. What will be the image distance of the painting ОА -2.05 m None of these answers Ос -0.56 m OD 0.850 m OL

  • ncoming parallel rays of light such as from the Sun pass through a lens and form...

    ncoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 m in front of a painting, which is the object. What will be the image distance of the painting? A.      1.28 m B.      -0.596 m C.      -2.05 m D.      0.850 m E.      None of these answers

  • Incoming parallel rays of light such as from the Sun pass through a lens and form...

    Incoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 m in front of a painting, which is the object. What will be the image distance of the painting? ОА -2.05 m B. 0.850 m C. None of these answers OD 1.28 m E. -0.596 m

  • webassign.net Active Figure 26.25 Thin Lenses The animation below shows a thin lens, an object (blue...

    webassign.net Active Figure 26.25 Thin Lenses The animation below shows a thin lens, an object (blue arrow) and an image (tan arrow). Three rays are shown that locate the positic orientation, and size of the image. Readouts are provided for object distance, object height, image distance and image height. Instructions: Click and drag the blue object. Click the button in the lower left of the applet window to toggle between a conc convex lens. Explore Images formed by thin lenses...

  • QUESTION 20 Incoming parallel rays of light such as from the Sun pass through a lens...

    QUESTION 20 Incoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 min front of a painting, which is the object. What will be the image distance of the painting? A. -0.596 m B. None of these answers C. 0.850 m OD 1.28 m OE -2.05 m

  • Please answer all 10)(2p) A beam oflight that is parallel to the principal axis strikes a...

    Please answer all 10)(2p) A beam oflight that is parallel to the principal axis strikes a concave mirror. What happensto the reflected beam of light? Makeasketchof the rays! 11) (3p) An object is placed 9.5 cm in front of a convex (converging) lens with a focal length of 11) magnitude 24 cm. (a) Where the image is formed. How far is it from the lens? (b) What is the magnification produced by the lens? 1. (1.5p) Make a sketch of...

  • QUESTION 18 Incoming parallel rays of light such as from the Sun pass through a lens...

    QUESTION 18 Incoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 m in front of a painting, which is the object. What will be the image distance of the painting? ОА. -2.05 m OB 0.850 m Ос. -0.596 m OD 1.28 m OE None of these answers

  • QUESTION 13 Incoming parallel rays of light such as from the Sun pass through a lens...

    QUESTION 13 Incoming parallel rays of light such as from the Sun pass through a lens and form a real, inverted image with an image distance of 85.0 cm. You then hold the same lens 2.00 m in front of a painting, which is the object. What will be the image distance of the painting? OA 0.850 m ОВ. -0.596 m OC None of these answers OD 2.05 m OE. 1.28 m

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