Half your height
The minimum size of a plane mirror required to see the full image of an object is equal to the size of the object itself. This is because the mirror needs to be large enough to reflect the entire object and capture the full image.
A concave mirror is required to obtain a virtual image of the same size as the object. The object should be placed at the focal point of the mirror to form the virtual image of the same size.
A plane mirror has the power of creating images that are virtual, upright, and the same size as the object being reflected. It does not alter the size or shape of the object, but simply reflects light rays.
The minimum length of a plane mirror needed to see a full-length image of yourself is half of your total height. This is because the mirror only needs to reflect the upper half of your body, and the image in the mirror will appear to be the same size as the actual object.
A plane mirror forms 1 virtual image and no real image. The virtual image is behind the mirror, at the same distance as the object in front of the mirror, erect, in mirror image left-right.
it depends on height of object and distance of object from the mirror
The minimum size of a plane mirror required to see the full image of an object is equal to the size of the object itself. This is because the mirror needs to be large enough to reflect the entire object and capture the full image.
Focaal length for plane mirror is 0
A concave mirror is required to obtain a virtual image of the same size as the object. The object should be placed at the focal point of the mirror to form the virtual image of the same size.
A plane mirror has the power of creating images that are virtual, upright, and the same size as the object being reflected. It does not alter the size or shape of the object, but simply reflects light rays.
The minimum length of a plane mirror needed to see a full-length image of yourself is half of your total height. This is because the mirror only needs to reflect the upper half of your body, and the image in the mirror will appear to be the same size as the actual object.
A plane mirror forms 1 virtual image and no real image. The virtual image is behind the mirror, at the same distance as the object in front of the mirror, erect, in mirror image left-right.
A plane mirror does not produce magnification on an object. It produces a virtual image that is the same size as the object and has the same distance behind the mirror as the object is in front of the mirror.
Yes, the mirror formula, 1/f = 1/do + 1/di, holds for plane mirrors as well. In the case of a plane mirror, the focal length (f) is considered infinite. This means that the distance of object (do) is equal to the distance of the image (di), but in opposite directions.
The image produced by a plane mirror will be virtual, upright, and the same size as the object. It will appear to be the same distance behind the mirror as the object is in front of it.
The distance between the image and the plane mirror is the same as the distance between the object and the mirror. Therefore, if the object is 15m away from the mirror, the image will also be 15m behind the mirror.
Yes, the image in a plane mirror appears upright and the same size as the object.