मराठी

An object approaches a convergent lens from the left of the lens with a uniform speed 5 m/s and stops at the focus. The image ______. - Physics

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प्रश्न

An object approaches a convergent lens from the left of the lens with a uniform speed 5 m/s and stops at the focus. The image ______.

पर्याय

  • moves away from the lens with an uniform speed 5 m/s.

  • moves away from the lens with an uniform accleration.

  • moves away from the lens with a non-uniform acceleration.

  • moves towards the lens with a non-uniform acceleration.

MCQ
रिकाम्या जागा भरा

उत्तर

An object approaches a convergent lens from the left of the lens with a uniform speed 5 m/s and stops at the focus. The image moves away from the lens with a non-uniform acceleration.

Explanation:

In our problem the object approaches a convergent lens from the left of the lens with a uniform speed of 5 m/s, hence the image will move away from the lens with a non-uniform acceleration, the image moves slower in the beginning and faster later on will move from F to 2F and when the object moves from 2F to F, the image will move from 2F to infinity. At 2F, the speed of the object and image will be equal.

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Refraction at Spherical Surfaces and Lenses - Refraction by a Lens
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 9: Ray Optics And Optical Instruments - MCQ I [पृष्ठ ५५]

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एनसीईआरटी एक्झांप्लर Physics [English] Class 12
पाठ 9 Ray Optics And Optical Instruments
MCQ I | Q 9.03 | पृष्ठ ५५

संबंधित प्रश्‍न

You have learnt that plane and convex mirrors produce virtual images of objects. Can they produce real images under some circumstances? Explain.


A screen is placed 90 cm from an object. The image of the object on the screen is formed by a convex lens at two different locations separated by 20 cm. Determine the focal length of the lens.


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An object 1.5 cm in size is placed on the side of the convex lens in the arrangement (a) above. The distance between the object and the convex lens is 40 cm. Determine the magnification produced by the two-lens system, and the size of the image


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  1. What is the magnification produced by the lens? How much is the area of each square in the virtual image?
  2. What is the angular magnification (magnifying power) of the lens?
  3. Is the magnification in (a) equal to the magnifying power in (b)? Explain.

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Will the focal length of a lens for red light be more, same or less than that for blue light?


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