Question

Concave lens with f = 15cm. Object height = 4 cm. Object Distances: 35cm, 20cm, 10cm,...

Concave lens with f = 15cm. Object height = 4 cm.

Object Distances: 35cm, 20cm, 10cm,

Image distance ?

Image(real or virtual)?

Image(upright or inverted)?

Image size?


Thank You.

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
Images Produced by Different Concave Mirrors Conceptual Question The same object is placed at different distances...
Images Produced by Different Concave Mirrors Conceptual Question The same object is placed at different distances d in front of six different concave spherical mirrors. Each mirror has the focal length f listed below. Part A Which, if any, of these scenarios produce a real image? Which, if any, of these scenarios produce a virtual image? Sort the following options (A-F) as either real image or virtual image: ANSWER: A) d=15cm, f=5cm B) d=5cm, f=20cm C) d=10cm, f=20cm D) d=20cm,...
A 4.0 cm tall object is placed 20cm from a concave mirror with its radius of...
A 4.0 cm tall object is placed 20cm from a concave mirror with its radius of curvature being 80cm. a. What is the location of the image? b. What is the height of the image? c. Is the image upright or inverted? d. Ids the image real or virtual? e. Draw ray tracing diagram if possible. Thank you!
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...
An object is held 82.7 cm away from a lens. The lens has a focal length...
An object is held 82.7 cm away from a lens. The lens has a focal length of -31 cm. A.) Determine the image distance B.) Determine the magnification. C.) If the object is 4 cm long, determine the image height D.) Which of the following are true about the image? The image is virtual the image is upright the image is inverted the image is real E) Which is true about the lens? The lens is concave the lens is...
A concave spherical mirror has a radius of curvature of 28 cm. Locate the images for...
A concave spherical mirror has a radius of curvature of 28 cm. Locate the images for object distances as given below. In each case, state whether the image is real or virtual and upright or inverted, and find the magnification. (If an answer does not exist, say so. If an answer is infinity, say so.) a) p = 14cm image distance? (cm) image orientation/real or virtual? magnification b) p = 28cm image distance? (cm) image orientation/real or virtual? magnification c)...
A concave spherical mirror has a radius of curvature of 28 cm. Locate the images for...
A concave spherical mirror has a radius of curvature of 28 cm. Locate the images for object distances as given below. In each case, state whether the image is real or virtual and upright or inverted, and find the magnification. (If an answer does not exist, say so. If an answer is infinity, say so.) a) p = 14cm image distance? (cm) image orientation/real or virtual? magnification b) p = 28cm image distance? (cm) image orientation/real or virtual? magnification c)...
A diverging lens has radius of focal length f = –10.0 cm. An object is placed...
A diverging lens has radius of focal length f = –10.0 cm. An object is placed a certain distance dO from the mirror along its principal axis. For each value of dO in the table, fill in (i) the distance dI from the lens to the image; (ii) the lateral magnification m of the image; (iii) whether the image is real or virtual; (iv) whether the image is on the same side of the lens as the object or the...
An object is 17.4 cm to the left of a lens with a focal length of...
An object is 17.4 cm to the left of a lens with a focal length of 12.4 cm. A second lens of focal length 14.7 cm is 54.91 cm to the right of the first lens. The height of the object of is 3.6 cm. What is the location of the final image with respect to the second lens? What is the height of the image? Also determine is the image real or virtual and, with respect to the original...
DataTable 1 Focal length, f 1.76 2f 3.52 Height of object, ho 4.0 Data Table 2...
DataTable 1 Focal length, f 1.76 2f 3.52 Height of object, ho 4.0 Data Table 2 General Description Object Dist. (cm) Image Dist. (cm) Object Size (cm) Image Size (cm) Other Observations (real, virtual or no image?) (Upright or inverted image?) Object about 5 f 10 74.04 4 -29.62 Real, inverted Object about 2.5f 10 7.87 4 -3.15 Real, inverted Object 2f 10 5.44 4 -2.18 Real, inverted More than f and less than 2f 10 4.29 4 -1.71 Real,...
An object is placed 5cm in front of a diverging lens of focal length 25 cm....
An object is placed 5cm in front of a diverging lens of focal length 25 cm. A second converging lens of focal length 15cm is positioned 20 cm to the right of the first lens. What is the final image distance? What is the magnification of the final image? Is it upright of inverted? Real or virtual?
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT