$STATEMENT-1$: The formula connecting $u, v$ and $f$ for a spherical mirror is valid only for mirrors whose sizes are very small compared to their radii of curvature. because
$STATEMENT-2$: Laws of reflection are strictly valid for plane surfaces, but not for large spherical surfaces.

  • A
    $Statement-1$ is True, $Statement-2$ is True; $Statement-2$ is a correct explanation for $Statement-1$.
  • B
    $Statement-1$ is True, $Statement-2$ is True; $Statement-2$ is $NOT$ a correct explanation for $Statement-1$.
  • C
    $Statement-1$ is True, $Statement-2$ is False.
  • D
    $Statement-1$ is False, $Statement-2$ is True.

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Similar Questions

What can be the largest distance of an image of a real object from a convex mirror of radius of curvature $10\,cm$?

$A$ rod of length $10\, cm$ lies along the principal axis of a concave mirror of focal length $10\, cm$ in such a way that its end closer to the pole is $20\, cm$ away from the mirror. The length of the image is ......$cm$.

For a concave mirror,the minimum distance between a real object and its real image is ...........

What will be the height of the image when an object of height $2 \ mm$ is placed on the principal axis of a convex mirror (of radius of curvature $40 \ cm$) at a distance of $20 \ cm$ from the mirror?

$A$ concave mirror gives an image three times as large as the object placed at a distance of $20 \ cm$ from it. For the image to be real,the focal length should be ...... $cm$.

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