30 degrees
Light hitting a flat mirror at an angle is reflected at the same angle, relative to the mirror surface.
As the incident ray coincides the normal so the incident angle is 0 degree and angle of incident equals to the angle of reflection so the ray after reflection retraces its orignal path. By mohit agarwal
When light rays hit the surface of a mirror, they are reflected back at the same angle they hit the mirror. This is known as the law of reflection. The angle of incidence (the angle at which the light ray hits the mirror) is equal to the angle of reflection (the angle at which the light ray is reflected off the mirror).
When a ray of light reflects off a mirror and then onto another mirror, the direction of the reflected ray is determined by the angle of incidence relative to the surface of the second mirror. The law of reflection states that the angle of incidence equals the angle of reflection, so the reflected ray will bounce off the second mirror at an equal but opposite angle to the incident ray.
The reflected beam of light follows the law of reflection, where the angle of incidence is equal to the angle of reflection. This means that the angle at which the light beam hits the mirror will be the same as the angle at which it bounces off the mirror.
The angle between the incident ray and the mirror is equal to the angle between the reflected ray and the mirror.
Light hitting a flat mirror at an angle is reflected at the same angle, relative to the mirror surface.
As the incident ray coincides the normal so the incident angle is 0 degree and angle of incident equals to the angle of reflection so the ray after reflection retraces its orignal path. By mohit agarwal
The angle of the reflected ray with the normal line to the surface of the mirror is the same as the angle of incidence. Snell's law.
A line of reflection is a reflected line, often off of a mirror. If a flashlight sends a beam of light at a mirror (the light is called the incident beam), the angle at which it hits the mirror will equall the angle at which the reflected beam of light (called the reflected beam), exits the mirror. This is called the Law of Reflection. This is why light is reflected from a mirror at the same angle at which light struck its surface. A line of reflection is a reflected line, often off of a mirror. If a flashlight sends a beam of light at a mirror (the light is called the incident beam), the angle at which it hits the mirror will equall the angle at which the reflected beam of light (called the reflected beam), exits the mirror. This is called the Law of Reflection. This is why light is reflected from a mirror at the same angle at which light struck its surface.
When light rays hit the surface of a mirror, they are reflected back at the same angle they hit the mirror. This is known as the law of reflection. The angle of incidence (the angle at which the light ray hits the mirror) is equal to the angle of reflection (the angle at which the light ray is reflected off the mirror).
When a ray of light reflects off a mirror and then onto another mirror, the direction of the reflected ray is determined by the angle of incidence relative to the surface of the second mirror. The law of reflection states that the angle of incidence equals the angle of reflection, so the reflected ray will bounce off the second mirror at an equal but opposite angle to the incident ray.
The reflected beam of light follows the law of reflection, where the angle of incidence is equal to the angle of reflection. This means that the angle at which the light beam hits the mirror will be the same as the angle at which it bounces off the mirror.
It is reflected 90 degrees from its original direction.
When light hits a mirror, it is reflected back with the same angle as it hit the mirror. This is known as the law of reflection. The angle of incidence (incoming light) is equal to the angle of reflection (reflected light).
An acute angle.
It is equal to the angle of reflection.