False
A diverging lens is also known as a concave lens. This type of lens causes light rays to diverge or spread out as they pass through it. It is thinner at the center than at the edges.
A concave lens is otherwise known as a diverging lens.
A concave lens is called a diverging lens because it causes light rays to spread out (diverge) as they pass through it. This results in the rays appearing to diverge away from a common point, causing the image formed by the lens to appear smaller and positioned farther away, hence diverging.
A concave lens is also known as a diverging lens because it causes incident light rays to diverge away from a common point known as the focal point.
Yes, this is a concave lens. It is also called a diverging lens because it causes light rays to spread out.
False
A diverging lens is also known as a concave lens. This type of lens causes light rays to diverge or spread out as they pass through it. It is thinner at the center than at the edges.
False
False
A concave lens is otherwise known as a diverging lens.
A concave lens is called a diverging lens because it causes light rays to spread out (diverge) as they pass through it. This results in the rays appearing to diverge away from a common point, causing the image formed by the lens to appear smaller and positioned farther away, hence diverging.
Diverging lens
A concave lens is also known as a diverging lens because it causes incident light rays to diverge away from a common point known as the focal point.
Yes, this is a concave lens. It is also called a diverging lens because it causes light rays to spread out.
A convex lens is also known as a converging lens, while a concave lens is also known as a diverging lens.
A concave lens is also known as a diverging lens because it causes light rays to spread out or diverge when passing through it. This type of lens is thinner at the center than at the edges and is commonly used in corrective eyewear for conditions like myopia (nearsightedness).
A concave lens bends light away from its center, diverging the light rays.