A 4.00-cm tall object is placed a distance of 48 cm from a concave mirror having a focal length of 16cm. Determine the image distance and the image size.
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A 4.00-cm tall object is placed a distance of 48
cm from a concave mirror having a focal length of
16cm. Determine the image distance and the image
size.
Using the mirror formula,
Step by step
Solved in 2 steps with 1 images
- A man standing 1.58 m in front of a shaving mirror produces an inverted image 19.6 cm in front of it. How close to the mirror should he stand if he wants to form an upright image of his chin that is twice the chin's actual size? cmA dentist uses a spherical mirror to examine a tooth. The tooth is 1.14 cm in front of the mirror, and the image is formed 12.0 cm behind the mirror. Determine the mirror's radius of curvature. Determine the magnification of the image.A man standing 1.50 m in front of a shaving mirror produces an inverted image 20.2 cm in front of it. How close to the mirror should he stand if he wants to form an upright image of his chin that is twice the chin's actual size? cm
- A mirror produces an image that is located 32.0 cm behind the mirror when the object is located 8.00 cm in front of the mirror. What is the focal length of the mirror?A concave mirror has a radius of curvature of 35.0 cm. What is its focal length? A ladybug 7.70 mm tall is located 22.6 cm from this mirror along the principal axis. Find the location of the image of the insect. Find the height of the image of the insect.An object 1.6 cm high is held 3.15 cm from a person’s cornea, and its reflected image is measured to be 0.175 cm high. Part (a) What is the magnification? Part (b) What is the image distance in cm? Part (c) Find the radius of curvature in cm of the convex mirror formed by the cornea.
- An object 1.7 cm high is held 2.75 cm from a person’s cornea, and its reflected image is measured to be 0.171 cm high. Part (a) What is the magnification? Part (b) What is the image distance in cm? Part (c) Find the radius of curvature in cm of the convex mirror formed by the cornea.A person whose height is 1.5m is located 3m from an anti-theft mirror installed in a store. a store. The focal length of the mirror is -0.25m. Find:a) The position of his image.b) The magnificationc) The height of the imageA 1.70-m-tall person stands 9.30 m in front of a large, concave spherical mirror having a radius of curvature of 4.20 m. Determine the mirror's focal length (in m) Determine the image distance (in m) Determine the magnification.
- A virtual image is formed 21.0 cm from a concave mirror having a radius of curvature of 35.0 cm. (a) Find the position of the object. cm in front of the mirror(b) What is the magnification of the mirror?A virtual image is formed 26.9 cm from a concave mirror having a radius of curvature of 48.1 cm. Determine the object distance.An object located 1.21 cm in front of a spherical mirror forms an image located 10.6 cm behind the mirror. (a) What is the mirror's radius of curvature (in cm)? cm (b) What is the magnification of the image? Need Help? Read It