The convex mirrors produces the diverging rays.
I hope this would be enough.
A convex mirror is called a diverging mirror because it causes light rays that hit it to diverge or spread out. This results in the image formed by the mirror appearing smaller and located behind the mirror compared to the actual object.
A diverging mirror, also known as a concave mirror, is a mirror that curves inward. It diverges light rays that strike it, causing them to spread out. It forms virtual images that are upright and smaller than the object.
A diverging mirror is a curved mirror that causes parallel incident light rays to diverge or spread out upon reflection. The most common type of diverging mirror is a concave mirror with a reflective surface that curves outward. Diverging mirrors are often used in optical systems to create virtual images that appear smaller and upright.
A diverging mirror is also known as a concave mirror, which is curved inward and causes light rays to diverge. It has negative focal length, virtual image formation, and reduces the size of an object. The image formed by a diverging mirror is always upright and located behind the mirror.
Convex mirrors are called diverging mirrors because they cause incident light rays to spread out or diverge upon reflection. This creates a virtual image that appears smaller and upright compared to the object. The outward bending nature of the mirror's surface is what leads to the divergence of light rays.
A convex mirror is called a diverging mirror because it causes light rays that hit it to diverge or spread out. This results in the image formed by the mirror appearing smaller and located behind the mirror compared to the actual object.
A diverging mirror, also known as a concave mirror, is a mirror that curves inward. It diverges light rays that strike it, causing them to spread out. It forms virtual images that are upright and smaller than the object.
A diverging mirror is a curved mirror that causes parallel incident light rays to diverge or spread out upon reflection. The most common type of diverging mirror is a concave mirror with a reflective surface that curves outward. Diverging mirrors are often used in optical systems to create virtual images that appear smaller and upright.
Converges (APEX)
A diverging mirror is also known as a concave mirror, which is curved inward and causes light rays to diverge. It has negative focal length, virtual image formation, and reduces the size of an object. The image formed by a diverging mirror is always upright and located behind the mirror.
Convex mirrors are called diverging mirrors because they cause incident light rays to spread out or diverge upon reflection. This creates a virtual image that appears smaller and upright compared to the object. The outward bending nature of the mirror's surface is what leads to the divergence of light rays.
A diverging lens, also known as a concave lens, only produces a virtual image because the light rays that pass through it diverge away from each other instead of converging. This causes the image to appear on the same side of the lens as the object.
converge. Instead of meeting at a point to form a real image, the diverging lens causes the light rays to spread out, resulting in a virtual image that appears to be located on the same side as the object.
Using a diverging mirror instead of a converging mirror in optical systems would not be a good idea because a diverging mirror spreads out light rays causing them to diverge, resulting in a virtual and diminished image rather than a real and magnified image. This would not be suitable for applications where a focused and enlarged image is desired.
Yes, a convex mirror is also known as a diverging mirror because it diverges light rays that fall on it, causing them to spread out. This type of mirror forms virtual, upright, and smaller images of objects placed in front of it.
Spherical mirrors, such as concave and convex mirrors, can produce both converging and diverging rays depending on the mirror's shape and orientation. Concave mirrors converge light rays to a focal point, while convex mirrors diverge light rays.
Concave mirror would have the surface curved out get coated with mercury hence curved in surface would reflect the rays fallen on. But convex mirror would have the surface curved in get coated with mercury hence curved out surface would reflect the rays fallen on. Concave mirror would have both converging and diverging ability. When light coming from an object placed at a distance higher than its focal length right from the pole of the mirror, converging takes place. But the object lies in between pole and the focus diverging action. But in convex mirror irrespective of the placement of the object only diverging phenomenon. Concave mirror used as shaving mirror and dentists too use them Convex mirror is used as rear view mirror in case of vehicles near by the driver.