The magnification produced by a spherical mirror is 3
The magnification produced by a spherical mirror is -3". If magnification produced by a spherical mirror is -3 then the mirror is.
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The magnification produced by a spherical mirror is 3
Magnification produced by a spherical mirror is From this data we can conclude the following: The '-' Minus sign always signifies that the image is inverted. In mirrors, the '-' sign always indicates that the image formed is real. This is because the image is formed on the same side of the object The magnitude of magnification is greater than 1, it signifies that the image is enlarged. Since magnitude is 3, the image is 3 times bigger than the object. We can also conclude that the mirror must be a concave mirror. This is because a concave mirror alone can produce a real image of an object. Menu Categories. The magnification produced by a spherical mirror is Explain your answer also. Tutorialspoint Simply Easy Learning. Updated on: Oct What does this mean? No matter how far you stand from a spherical mirror, your image appears erect.
Question 2. The object is placed between infinity and the center of curvature C.
Draw a ray diagram showing the formation of image of a point object by a plane mirror. A spherical mirror produces an image of magnification -1 on a screen placed at a distance of 50 cm from the mirror. Draw ray diagram to show the formation of image of an object OA. Where would the image be formed by a convex mirror if the object is placed : a between infinity and pole of the mirror? Draw labelled ray-diagreams to show the formation of image in both the cases. In the given figure below, AB is the object and CD is its image.
The image in a plane mirror has the same size as the object, is upright, and is the same distance behind the mirror as the object is in front of the mirror. A curved mirror , on the other hand, can form images that may be larger or smaller than the object and may form either in front of the mirror or behind it. In general, any curved surface will form an image, although some images may be so distorted as to be unrecognizable think of fun house mirrors. Because curved mirrors can create such a rich variety of images, they are used in many optical devices that find many uses. We will concentrate on spherical mirrors for the most part, because they are easier to manufacture than mirrors such as parabolic mirrors and so are more common. We can define two general types of spherical mirrors. If the reflecting surface is the outer side of the sphere, the mirror is called a convex mirror. If the inside surface is the reflecting surface, it is called a concave mirror.
The magnification produced by a spherical mirror is 3
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Since magnitude is 3, the image is 3 times bigger than the object. We can also conclude that the mirror must be a concave mirror. Draw a ray diagram for this situation also to justify your answer. An object at infinity. No matter how far you stand from a spherical mirror, your image appears erect. Draw ray diagram to show the formation of image in this case. Views: 5, students. Draw labelled ray-diagreams to show the formation of image in both the cases. Class 12 Passed. Views: 5, Tutorialspoint Simply Easy Learning. Question 3. View Text Solution. Call Us.
The image in a plane mirror has the same size as the object, is upright, and is the same distance behind the mirror as the object is in front of the mirror. A curved mirror, on the other hand, can form images that may be larger or smaller than the object and may form either in front of the mirror or behind it.
If the distance between the object and its image is 60 cm , what is the focal length of the lens? There are six possibilities for placing an object on a concave mirror: a. We know that the given magnification is negative because the linear magnification of the convex mirror is always positive. Find the focal length of the mirror. Preferred time slot for the call 9 am 10 am 11 am 12 pm 1 pm 2 pm 3 pm 4 pm 5 pm 6 pm 7 pm 8pm 9 pm 10pm. Explain the characteristics of Image formed by a Plane Mirror". Connect instantly with this tutor Connect now. Talk to a tutor now students are taking LIVE classes. Text Solution. Solution: We know that the given magnification is negative because the linear magnification of the convex mirror is always positive.
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