When light strikes smooth and shiny colored glass, the light may be reflected, refracted, or absorbed. The smooth surface allows for specular reflection, where the light bounces off the surface at an angle equal to the angle of incidence. The color of the glass will determine which wavelengths of light are absorbed and which are reflected, giving the glass its specific color appearance.
When light strikes a smooth and shiny colored glass, the glass will reflect the light, so you will see a reflection of the light on the glass surface. The color of the glass will also affect how the light is reflected, making the glass appear colored. The smooth surface of the glass will result in a clear and sharp reflection of the light.
When light strikes glass, it may be reflected, transmitted through the glass, or absorbed by the material. The amount of light reflected or transmitted depends on the angle of incidence and the refractive index of the glass. Glass is transparent to visible light, which allows it to transmit light through its surface.
When light energy strikes a clear glass window, some of it is transmitted through the glass, allowing you to see through the window. Some of the light is reflected off the surface of the glass, and a small amount is absorbed by the glass and converted into heat.
When light strikes a transparent body like glass, it can either be transmitted (pass through the glass), reflected (bounce off the surface of the glass), or refracted (bent as it passes through the glass). The amount of light that is transmitted, reflected, and refracted depends on the angle of incidence and the properties of the glass.
When light strikes a transparent medium, such as glass or water, it can be transmitted through the material, absorbed, or reflected. The speed and direction of light can also change when moving from one medium to another, a phenomenon known as refraction.
.Most of it is absorbed.none is reflected
When light strikes a smooth and shiny colored glass, the glass will reflect the light, so you will see a reflection of the light on the glass surface. The color of the glass will also affect how the light is reflected, making the glass appear colored. The smooth surface of the glass will result in a clear and sharp reflection of the light.
When light strikes glass, it may be reflected, transmitted through the glass, or absorbed by the material. The amount of light reflected or transmitted depends on the angle of incidence and the refractive index of the glass. Glass is transparent to visible light, which allows it to transmit light through its surface.
When light strikes clear glass, most of it is transmitted through the material, allowing you to see through the glass. Some light is also reflected off the surface of the glass. The amount of light that is transmitted versus reflected depends on the angle of incidence and the refractive index of the glass.
When light energy strikes a clear glass window, some of it is transmitted through the glass, allowing you to see through the window. Some of the light is reflected off the surface of the glass, and a small amount is absorbed by the glass and converted into heat.
Glass
When light strikes a transparent body like glass, it can either be transmitted (pass through the glass), reflected (bounce off the surface of the glass), or refracted (bent as it passes through the glass). The amount of light that is transmitted, reflected, and refracted depends on the angle of incidence and the properties of the glass.
When light strikes a transparent medium, such as glass or water, it can be transmitted through the material, absorbed, or reflected. The speed and direction of light can also change when moving from one medium to another, a phenomenon known as refraction.
When light strikes a transparent surface like glass, three main things can happen: transmission (light passes through the glass), reflection (light bounces off the surface), and refraction (light changes direction as it enters or exits the glass due to a change in speed).
Unless it`s colored glass, it will still shine its original color.
When light strikes a chlorophyll molecule, electrons in the chloroplast get excited.
light bends when it hits the lens....this is called refraction