An object 3.34 cm tall is placed 9.230 cm in front of a mirror and creates an upright image that is 5.62 cm in height. What is the radius of curvature (in cm) of the mirror?
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A: a) The radius of the curvature, 1q+1p=2RR=2p·qp+qR=2×1×(6)1-(6)R=2.4cm
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A: solution is given as
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- A small convex mirror and a large concave mirror are separated by 1 m, and an object is placed 1.4 m to the left of the concave mirror. The concave mirror forms an image of this object 25 cm in front of it. This image is then reflected in the convex mirror, which forms an image at a distance 8 cm behind it. What is the focal length of the convex mirror?A real object is placed at the zero end of a meterstick. A large concave mirror at the 100.0 cm end of the meterstick forms an image of the object at the 71.9 cm position. A small convex mirror placed at the 20.0 cm position forms a final image at the 11.5 cm point. What is the radius of curvature of the convex mirror? (Hint: The first image created by the concave mirror acts as an object for the convex mirror.)A mirror produces an image that is located 38.0 cm behind the mirror, when the object is located 5.10 cm in front of the mirror. (a) What is the focal length of the mirror? (b) Is the mirror concave or convex?
- An object is located 13.3 cm in front of a convex mirror, the image being 9.58 cm behind the mirror. A second object, twice as tall as the first one, is placed in front of the mirror, but at a different location. The image of this second object has the same height as the other image. How far in front of the mirror is the second object located?An object 2.00 cm high is placed 12.5 cm in front of a convex mirror with radius of curvature of 4.10 cm. Where is the image formed? If the image is formed in front of the mirror, enter a positive answer and if the image is formed behind the mirror, enter a negative answer.A mirror produces an image that is located 32.0 cm behind the mirror, when the object is located 6.80 cm in front of the mirror. (a) What is the focal length of the mirror? (b) Is the mirror concave or convex?
- The Sun subtends an angle of 0.533° at a distance of 1 astronomical unit, which is 1.496 ✕ 1011 m, the average Sun–Earth distance. A) What is the position (in m) of an image of the Sun at Earth's surface formed by a concave spherical mirror with a radius of curvature of magnitude 7.09 m? (Give your answers with respect to the mirror. B) What is the diameter (in cm) of an image of the Sun at Earth's surface formed by a concave spherical mirror with a radius of curvature of magnitude 7.09 m?In front of a spherical convex mirror of radius 40.9 cm, you position an object of height 3.33 cm somewhere along the principal axis. The resultant image has a height of 2.00 cm. How far from the mirror is the object located?When viewed in a spherical mirror, the image of a setting sun is a virtual image. The image lies 17 cm behind the mirror. (a) What is the focal length of the mirror? (b) What is the radius of curvature of the mirror?
- When viewed in a spherical mirror, the image of a setting sun is a virtual image. The image lies 12 cm behind the mirror. (a) What is the focal length of the mirror? (b) What is the radius of curvature of the mirror?An object 3.34 cm tall is placed 9.230 cm in front of a mirror and creates an upright image that is 5.62 cm in height. What is the radius of curvature (in cm) of the mirror?In front of a spherical convex mirror of radius 21.0 cm, you position an object of height 3.21 cm somewhere along the principal axis. The resultant image has a height of 1.93 cm. How far from the mirror is the object located? 11.2 cm 9.1 cm 4.2 cm 7.0 cm