A 2-cm-tall object is 8 cm from a diverging lens of focal length 12 cm. a. Use ray tracing to locate the image of the object. Use a ruler to do this accurately. Make your best estimate of the image distance by making measurements on your diagram. b. Is the image real or virtual? Is the image upright or inverted? c. Now calculate the exact location and height of the image.
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- A converging lens is used to produce a virtual image that is erect and has a magnification of 3.90 with an object placed 14.3cm from the lens. a. What is the focal length of the lens? b. If the object distance is doubled, what type of image is produced? c. What is the new magnification?A 2.0-cm-tall object is located 6.5 cm in front of a converging lens with a focal length of 11.0 cm. A. Use ray tracing to determine the location of the image. (Express your answer to two significant figures and include the appropriate units. Enter positive value if the image is on the other side from the lens and negative value if the image is on the same side.) B. Use ray tracing to determine the height of the image. (Express your answer to two significant figures and include the appropriate units.) C.Is the image upright or inverted? Is the image real or virtual?3. A 15.0 cm tall object is place 60 cm from a concave mirror, which has a focal length of 35.0 cm. a. Draw a ray diagram to locate the image. (The principle axis is drawn for you below) Circle the Correct Answer b. Will it be Real or Virtual? Real Virtual c. Is the image upright or inverted? с. Upright Inverted d. Is it larger, smaller or the same size as the object? Smaller Same Larger e. Calculate exactly where the image be formed? IT f:35cm or 0.35m %3D do di h=15cm oro.15m %3D 60cm or O.60m do %3D | %3D 60em -11.8cm l0 cm h' %3D / di3D11.8cm 15cm h, = -2.95 %3D
- 2. A converging mirror has a focal length of f = 18 cm. a. Where must an object be placed in order to form an image that is exactly the same height as the object? (Think about what the magnification for this situation is, and work from there). b. Would this object be real or virtual? Is it upright or inverted? C. Draw a ray diagram for this situation.B. CONVERGING LENSES: After performing this activity, the students should be able to: Sketch the location of the image in the concave mirror, measure the distance and the height of the image, and describe the object and the image in every case. MATERIALS: Rufer PROCEDURES 2 Construct the image of the following, given the focal length, distance of the object (do) (f) and height of the object (ho) in centimeters. Describe the location of both the object and the image being constructed. Determine the exact distance and the height of the image. identify the case number of each. Complete the table below. NOTE: Arrows that represent the secondary axes should be in red color, arrow that represent the object and the image is in blue color as well as the line that shows the bending of light ray, the rest of the construction is in black color. That is why you will be needing 3 colored ballpen for this activity. Use another sheet of bond paper for your construction. Use accurate maeasure. three…A person looks at a gem using a converging lens with a focal length of 13.8 cm. The lens forms a virtual image 33.1 cm from the lens. Find the magnification. Describe the image. 1. real, upright, larger 2. real, inverted, larger 3. virtual, upright, larger 4. real, inverted, smaller 5. virtual, inverted, larger 6. real, upright, smaller 7. virtual, inverted, smaller 8. virtual, upright, smaller
- A person looks at a gem using a converging lens with a focal length of 13.8 cm. The lens forms a virtual image 33.1 cm from the lens. Find the magnification. Describe the image. 1. real, upright, larger 2. real, inverted, larger 3. virtual, upright, larger 4. real, inverted, smaller 5. virtual, inverted, larger 6. real, upright, smaller 7. virtual, inverted, smaller 8. virtual, upright, smallerA candle, 10 cm tall, stands 50 cm from a diverging lens wvhose focal length is 20 cm.a.Find the location of the image.b.Find the magnification of the image.c.Describe (real virtual/upright/inverted) d.Find the height of the image e.Draw ray diagrams to obtain the image characteristics