The above figure shows the path of a ray of light falling on the mirror(s) represented by a box. Which of the following arrangements of mirrors will produce light rays in the path shown above?
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A: Given data: Angle, α=76°
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Q: eyes are 1.64 m above the floor, and the top of his head is 0.12 m higher. Find the height above the…
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Q: Suppose a man stands in front of a mirror as shown in Figure. His eyes are 1.65 m above the floor,…
A: The angle of incidence and angle of reflection is equal in the mirror.This will make triangle with…
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- You have a convex, spherical mirror (as shown below) with a radius of curvature R=3.33m (the distance of the "Radial Line" shown in the image below). You shine light rays that are parallel to the principlal axis of the mirror as shown below that reflect in such a way that it appears all rays originated at the a point called the focal point of the mirror (F). Along the principal axis of the mirror, how far behind the mirror is the focal point (in meters)? It is important to point out that the focal point of convex mirrors, strictly speaking, is negative. This is because the object appears to originate from behind the mirror. Here, don't worry about the negative sign. Give a positive answer.A man stands in front of a mirror as shown in the figure. His eyes are 1.70 m above the floor, and the top of his head is 0.13 m higher. Find the height above the floor of the top and bottom of the smallest mirror in which he can see both the top of his head and his feet. top bottom 3 m How is the distance d from the top to the bottom of the mirror related to the man's height h? Use the symbol h to represent the man's height. d = hThe two mirrors illustrated in the figure below meet at a right angle. The beam of light in the vertical plane indicated by the dashed lines strikes mirror 1 as shown. (Let d = 1.00 m and 9 = 35.0°.) Mirror 2 d 0 Mirror 1 (a) Determine the distance the reflected light beam travels before striking mirror 2. m (b) In what direction does the light beam travel after being reflected from mirror 2? above the horizontal V
- A plane mirror receives a light ray entering at 30° relative to the surface of the mirror. This is the angle of incidence. true or falseA tall tree is growing across a river from you. You would like to know the distance between yourself and the tree,as well as its height, but are unable to make the measurements directly. However, by using a mirror to form an image of the tree and then measuring the image distance and the image height, you can calculate the distance to the tree as well as its height. Suppose that this mirror produces an image of the sun, and the image is located 0.8646 m from the mirror. The same mirror is then used to produce an image of the tree. The image of the tree is 0.9468 m from the mirror. (a) How far away is the tree? (b) The image height of the tree has a magnitude of 0.15 m. How tall is the tree?The reflecting surfaces of three mirrors form vertices with angles of 170o and 129o, as shown in the figure below. A ray of light strikes mirror 1 with an angle of 18.0o with the surface of mirror 1. Find the angle of reflection θ3r when the ray leaves mirror 3
- A physicist places two plane mirrors at an angle of ?1 = 55.5° to each other, as shown below. She then directs a horizontal laser beam toward Mirror 1. The beam reflects twice: first off Mirror 1, then Mirror 2. What angle ?2 will the outgoing beam make with the surface of Mirror 2? (Enter your answer in in degrees.)A convex mirror (diverging) has a focal length of magnitude f. An object is placed in front of this 2 mirror at a point f from the face of the mirror. The image will appear at a distance of 2/5 f from the mirror, virtual, upright and reduced. O2 f from the mirror, virtual, inverted, and diminished O 1/2 f from the mirror, virtual, upright, inverted and enlarged. O 5/2 f from the mirror, real, inverted, and enlarged. 3f from the mirror, real, upright, and enlargedTwo light rays originate from object A, at a distance of 50 cm in front of a flat mirror, diverging at an angle of 10°. Both of the rays strike a flat mirror and reflect. Two light rays originate from object B, at a distance of 50 cm in front of a convex mirror, diverging at an angle of 10°. Both of the rays strike the convex mirror and reflect. For which object do the reflected rays appear to converge behind the mirror closer to the surface of the mirror, thus forming a closer (larger) image? Explain with the help of a sketch or diagram.
- A man stands in front of a mirror as shown in the figure below. His eyes are 1.78 m above the floor, and the top of his head is 0.13 m higher. Find the height above the floor of the top and bottom of the smallest mirror in which he can see both the top of his head and his feet. top m bottom m How is the distance d from the top to the bottom of the mirror related to the man's height h? d =Two mirrors make an angle of 120° with each other as shown in the Figure below. A ray is incident on Mirror M1 at an angle of 65° to the normal. Find the angle the ray makes with the 2. normal to M2 after it is reflected from both mirrors. Bret Bune ef ine = 65° 120 M1An astronomer orients two plane mirrors at an angle of 0, = 57.5° to each other, as shown below. He then directs a horizontal laser beam toward Mirror 1. The beam reflects twice: first off Mirror 1, then Mirror 2. What angle 0, will the outgoing beam make with the surface of Mirror 2? (Enter your answer in in degrees.) Mirror 1 Mirror 2