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Images formed on a concave mirror are formed due to the reflection of light rays. When an object is placed beyond the focal point of a concave mirror, a real and inverted image is formed. When the object is placed between the focal point and the mirror, a virtual and upright image is formed.

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Q: How are images formed on a concave mirror?
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How do images form in concave?

In a concave mirror, images can form either real or virtual, depending on the object's distance from the mirror. Real images are formed when the object is placed beyond the focal point, while virtual images are formed when the object is placed between the focal point and the mirror. The image formed is upright for concave mirrors.


What types of images are produced by a concave mirror?

Concave mirrors can produce both real and virtual images. Real images are formed when light rays actually converge at a point in front of the mirror, while virtual images are formed when light rays appear to diverge from a point behind the mirror. Real images are inverted, while virtual images are upright.


What kind of images are formed in a concave mirror?

Concave mirrors can form both real and virtual images. Real images are formed when the reflected light rays actually converge at a point in front of the mirror, whereas virtual images are formed when the light rays appear to diverge from a point behind the mirror. The type of image formed depends on the position of the object relative to the focal point of the mirror.


Can you Describe the images formed in a concave mirror?

In a concave mirror, images can be real or virtual depending on the object's position relative to the mirror. Real images are formed when the object is located beyond the mirror's focal point, while virtual images are formed when the object is located between the mirror and its focal point. Real images are inverted and can be projected onto a screen, while virtual images are upright and cannot be projected.


How is the image formed by a concave lens similar to the image formed by a convex mirror?

Both a concave lens and a convex mirror can produce virtual and diminished images. The images formed are located behind the lens/mirror and are upright.

Related questions

What formed of images in a concave mirror?

vetical upright a


How do images form in concave?

In a concave mirror, images can form either real or virtual, depending on the object's distance from the mirror. Real images are formed when the object is placed beyond the focal point, while virtual images are formed when the object is placed between the focal point and the mirror. The image formed is upright for concave mirrors.


Can images be formed with a concave mirror?

Yes!!! A variety of image.


What types of images are produced by a concave mirror?

Concave mirrors can produce both real and virtual images. Real images are formed when light rays actually converge at a point in front of the mirror, while virtual images are formed when light rays appear to diverge from a point behind the mirror. Real images are inverted, while virtual images are upright.


What type pf images can a concave mirror form?

A concave mirror can form real images or virtual images depending on the object position relative to the focal point of the mirror. Real images are formed when the object is located beyond the focal point, while virtual images are formed when the object is located between the mirror and the focal point.


What kind of images are formed in a concave mirror?

Concave mirrors can form both real and virtual images. Real images are formed when the reflected light rays actually converge at a point in front of the mirror, whereas virtual images are formed when the light rays appear to diverge from a point behind the mirror. The type of image formed depends on the position of the object relative to the focal point of the mirror.


Can you Describe the images formed in a concave mirror?

In a concave mirror, images can be real or virtual depending on the object's position relative to the mirror. Real images are formed when the object is located beyond the mirror's focal point, while virtual images are formed when the object is located between the mirror and its focal point. Real images are inverted and can be projected onto a screen, while virtual images are upright and cannot be projected.


How is the image formed by a concave lens similar to the image formed by a convex mirror?

Both a concave lens and a convex mirror can produce virtual and diminished images. The images formed are located behind the lens/mirror and are upright.


Why do images formed by a concave mirror sometimes appear upside down?

Images formed by a concave mirror can appear upside down when the object is placed beyond the focal point of the mirror. In this case, the rays of light that converge after reflecting off the mirror create an inverted image since they cross at a point before the image is formed.


What is the image formed with a concave mirror?

A concave mirror can form either a real or virtual image, depending on the object distance and mirror focal length. Real images are formed when the object is located beyond the focal point, while virtual images are formed when the object is between the mirror and the focal point. Real images are inverted and can be projected onto a screen, while virtual images are upright and cannot be projected.


How do images formed by a concave lens and convex mirror different?

Images formed by a concave lens are always virtual, upright, and reduced in size. On the other hand, images formed by a convex mirror are virtual, erect, and diminished in size. Additionally, concave lenses can form both real and virtual images depending on the object distance, while convex mirrors only produce virtual images.


What will the image produced by a concave mirror be?

A concave mirror can produce a real or virtual image, depending on the location of the object. Real images are formed in front of the mirror and can be projected onto a screen, while virtual images are formed behind the mirror and cannot be projected. The characteristics of the image, such as magnification and orientation, are determined by the mirror's focal length and the object's distance from it.