Diverging mirrors and lenses always produce virtual images that are upright and smaller than the object being viewed.
Diverging mirrors and lenses always produce virtual images that are upright and reduced in size. These images are located on the same side as the object being observed.
Diverging lenses produce virtual, upright, and diminished images for all object positions. The virtual image is located on the same side of the lens as the object and is always reduced in size. This is due to the diverging nature of the lens, which causes light rays to spread out.
by shape
1. plain mirror2. concave mirror 4. concave lens3.convex mirror 5.convex lens
Mirrors, such as plane mirrors, reflect light rays back in the same direction. Lenses, on the other hand, refract light rays by bending them as they pass through, converging or diverging them depending on the shape of the lens. Both mirrors and lenses can alter the path of light rays to create images.
Smaller
For apex learning people the answer is diverging
Diverging mirrors and lenses always produce virtual images that are upright and reduced in size. These images are located on the same side as the object being observed.
Concave and Diverging
Diverging lenses produce virtual, upright, and diminished images for all object positions. The virtual image is located on the same side of the lens as the object and is always reduced in size. This is due to the diverging nature of the lens, which causes light rays to spread out.
by shape
1. plain mirror2. concave mirror 4. concave lens3.convex mirror 5.convex lens
Mirrors, such as plane mirrors, reflect light rays back in the same direction. Lenses, on the other hand, refract light rays by bending them as they pass through, converging or diverging them depending on the shape of the lens. Both mirrors and lenses can alter the path of light rays to create images.
Mirrors can reflect light rays, changing their direction without altering their wavelengths. Lenses can refract light rays, bending them as they pass through the lens and converging or diverging them to form images. Mirrors can create virtual or real images depending on the curvature, while lenses can produce real, virtual, upright, or inverted images based on the lens type and object distance.
Concave D. Diverging
Some examples of diverging lenses include biconcave lenses, planoconcave lenses, and concavo-convex lenses. These lenses are thinner at the center than at the edges, causing light rays passing through them to diverge. Diverging lenses are commonly used in combination with converging lenses to correct vision problems.
If a single lens forms a virtual image of an object, thenthe lens could be either a diverging or a converging lens.Which statement about a single thin lens is correctA diverging lens always produces a virtual upright image.