How do you find the distance of a plane mirror?

How do you find the distance of a plane mirror?

For plane mirrors, the object distance (is equal to the image distance. That is the image is the same distance behind the mirror as the object is in front of the mirror. If you stand a distance of 2 meters from a plane mirror, you must look at a location 2 meters behind the mirror in order to view your image.

How do you find the distance of the image formed from the mirror?

For example, if we stand at a distance of 2 meters from a plane mirror, we must focus at a location 2 meters behind the mirror in order to view our image. In this case, the distance between the object and its image formed by a plane mirror appears to be 24 cm. So, the object distance will be 24 / 2 = 12 cm.

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What is the distance between the object and the image if the object is 4 cm in front of the mirror?

And the distance between the object and its image would be 6 m.

When object is placed at a distance of 0.5 Metre in front of a plane mirror the distance between the object and the image formed by the mirror will be?

The distance between object and image is – 0.25 m.

What is object distance in plane mirror?

For plane mirrors, the object distance (often represented by the symbol do) is equal to the image distance (often represented by the symbol di). That is the image is the same distance behind the mirror as the object is in front of the mirror.

What is the distance of the object to the mirror?

Characteristics of Plane Mirror Images The distance from the image to the mirror is always identical to the distance from the object to the mirror. So if a person stands 2.0 meters in front of the mirror, then the image will be located an identical 2.0 meters behind the mirror.

What is the distance of an object?

The distance of an object can be defined as the complete path travelled by an object. E.g.: if a car travels east for 5 km and takes a turn to travel north for another 8 km, the total distance travelled by car shall be 13 km.

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How do I calculate the distance of an object in a photo?

To work out the size of the object on the sensor, work out it’s height in pixels, divide by the image height in pixels and multiply by the physical height of the sensor.

How do you calculate the distance between the object and the image?

Expert Answer:

  1. if u is object-to-mirror distance and v is image-to-mirror distance, then magnification m = -v/u = -2 ……………..(1)
  2. Hence, we have , v = 2u …………………..(2)

Is placed at a distance of 0.25 Metre in front of a plane mirror the distance between the object and image will be?

in front of a plane mirror. The distance between the object and image will be 0.5 m.

When an object is placed at 0.5 m from a concave mirror?

When an object is placed at 0. 5m from a concave mirror, its real image is formed at 0.

What is the distance between the mirror and the object?

Answer Wiki. The distance between the mirror and the object is 12 cm. This is because a plane mirror forms the image of the object as far as from the mirror as the object is from the mirror. I.e. distance of the object from the mirror=distance of the image from the mirror .

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What is the difference between object distance and image distance?

Object Distance and Image Distance. For plane mirrors, the object distance (often represented by the symbol d o) is equal to the image distance (often represented by the symbol d i ). That is the image is the same distance behind the mirror as the object is in front of the mirror. If you stand a distance of 2 meters from a plane mirror,…

What are the characteristics of image formed by a plane mirror?

Characteristics of the image formed by plane mirror (i) The image formed by a plane mirror is virtual, erect, and laterally inverted. (ii) The size of the image is equal to the size of the object. (iii) The image distance far behind the mirror is equal to the object distance in front of it…..

What is the distance of the object from the reflective surface?

The distance is always to the reflective surface, so if the glass is 1/2 cm thick, that would put the object 10.5 cm from the reflective surface, and you would be 30.5 cm from the reflective surface. In this case, the distance would be 41 cm.