they create the glass then heat it and then bend it and hold it there until it cools.
Plane mirrors have a flat reflecting surface, while curved mirrors have a reflecting surface that is curved either inward (concave) or outward (convex). Curved mirrors can focus or diverge light rays depending on their shape, resulting in different optical properties compared to plane mirrors. Additionally, curved mirrors have a focal point and focal length, which plane mirrors do not possess.
Curved mirrors have a reflective surface that is curved inward or outward, causing light rays to converge or diverge. This allows curved mirrors to form both real and virtual images. In contrast, flat mirrors have a flat reflective surface and only produce virtual images that are the same size as the object.
Curved mirrors, such as concave and convex mirrors, distort the reflection of objects due to their curved surface. Concave mirrors can focus light to create real or virtual images, while convex mirrors always produce virtual images that are smaller than the object. In contrast, flat mirrors provide a true reflection of objects without any distortion or magnification.
There are two main types of curved mirrors: concave and convex. Concave mirrors curve inward, causing light rays to converge at a focal point, used in reflecting telescopes and shaving mirrors. Convex mirrors curve outward, causing light rays to diverge, commonly used in security mirrors and side-view mirrors.
Curved mirrors, such as side mirrors and rear-view mirrors in cars, help drivers by providing a wider field of view, reducing blind spots, and enabling better visibility for parking and lane changes. They allow drivers to see objects and vehicles approaching from different angles, enhancing safety on the road.
Curved mirrors are mirrors that have a spherical side. example - concave and convex.
Plane mirrors have a flat reflecting surface, while curved mirrors have a reflecting surface that is curved either inward (concave) or outward (convex). Curved mirrors can focus or diverge light rays depending on their shape, resulting in different optical properties compared to plane mirrors. Additionally, curved mirrors have a focal point and focal length, which plane mirrors do not possess.
convex (curved) mirrors show more space than flat mirrors do also the images are smaller than they really are
how do mirrors reflect light
Curved mirrors have a reflective surface that is curved inward or outward, causing light rays to converge or diverge. This allows curved mirrors to form both real and virtual images. In contrast, flat mirrors have a flat reflective surface and only produce virtual images that are the same size as the object.
The most curved mirrors are spherical mirrors. The centre of curved surface is called center of curvature. There are two kinds of spherical mirrors. Concave and convex mirror.
they create the glass then heat it and then bend it and hold it there until it cools.
Concave mirrors and convex mirrors are two types of curved mirrors. Concave mirrors converge light rays to a focal point and can form real or virtual images. Convex mirrors diverge light rays and produce virtual, upright, and diminished images.
concave mirrors, and curved mirrors
they are made out of reflective material, and just reflect in a different direction
Curved mirrors, such as concave and convex mirrors, distort the reflection of objects due to their curved surface. Concave mirrors can focus light to create real or virtual images, while convex mirrors always produce virtual images that are smaller than the object. In contrast, flat mirrors provide a true reflection of objects without any distortion or magnification.
curved mirrors are useful to driver to see what is in the back of them or use for seeing