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A clown is standing in front of a fun mirror. The top half of the mirror is concave, and the bottom half of the mirror is convex. What happens to his image as the clown moves towards the mirror?
  • a)
    His top half gets bigger up to his actual size; his bottom half gets smaller down to his actual size.
  • b)
    His top half gets smaller down to his actual size; his bottom half gets bigger up to his actual size.
  • c)
    His top half gets smaller beyond his actual size; his bottom half gets bigger beyond his actual size.
  • d)
    His top half gets bigger beyond his actual size; his bottom half stays the same size.
Correct answer is option 'B'. Can you explain this answer?
Most Upvoted Answer
A clown is standing in front of a fun mirror. The top half of the mirr...
  • For a concave mirror, we have determined that there are 3 images that can be formed, but the order must be determined: outside radius of curvature to within the radius of curvature to within the focal point.
  • As the object moves towards the focal point, the real and inverted image starts smaller than the object beyond the radius of curvature. The image gets bigger and bigger, and once past the radius of curvature, it is now larger than the object.
  • At the focal point, the image is at infinity. As the object moves past the focal point, the virtual and upright image that is infinitely large gets smaller and smaller. The image does not get smaller than the object itself.
  • As for a diverging mirror, there is usually one image that can be formed. Let’s say the object distance is 3 cm and the focal length is 5 cm, remembering that it will be negative for diverging mirrors:
     
    The image is virtual (negative i), reduced (m<1), and upright (positive m).
  • For diverging mirrors, the image gets larger and larger as the object moves towards the lens. The image never gets larger than the object.
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A clown is standing in front of a fun mirror. The top half of the mirror is concave, and the bottom half of the mirror is convex. What happens to his image as the clown moves towards the mirror?a)His top half gets bigger up to his actual size; his bottom half gets smaller down to his actual size.b)His top half gets smaller down to his actual size; his bottom half gets bigger up to his actual size.c)His top half gets smaller beyond his actual size; his bottom half gets bigger beyond his actual size.d)His top half gets bigger beyond his actual size; his bottom half stays the same size.Correct answer is option 'B'. Can you explain this answer? for MCAT 2025 is part of MCAT preparation. The Question and answers have been prepared according to the MCAT exam syllabus. Information about A clown is standing in front of a fun mirror. The top half of the mirror is concave, and the bottom half of the mirror is convex. What happens to his image as the clown moves towards the mirror?a)His top half gets bigger up to his actual size; his bottom half gets smaller down to his actual size.b)His top half gets smaller down to his actual size; his bottom half gets bigger up to his actual size.c)His top half gets smaller beyond his actual size; his bottom half gets bigger beyond his actual size.d)His top half gets bigger beyond his actual size; his bottom half stays the same size.Correct answer is option 'B'. Can you explain this answer? covers all topics & solutions for MCAT 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A clown is standing in front of a fun mirror. The top half of the mirror is concave, and the bottom half of the mirror is convex. What happens to his image as the clown moves towards the mirror?a)His top half gets bigger up to his actual size; his bottom half gets smaller down to his actual size.b)His top half gets smaller down to his actual size; his bottom half gets bigger up to his actual size.c)His top half gets smaller beyond his actual size; his bottom half gets bigger beyond his actual size.d)His top half gets bigger beyond his actual size; his bottom half stays the same size.Correct answer is option 'B'. Can you explain this answer?.
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