The object appears to have the color of the light that it is worst at absorbing. That's
the color of which the most light remains to be scattered and reflected to your eye.
The color you see when looking at an opaque object is determined by the wavelengths of light that are reflected off the object's surface and into your eyes. The object absorbs some wavelengths and reflects others, which your eyes perceive as color. Different colors are the result of different combinations of reflected wavelengths.
The color we see is the result of the object absorbing certain wavelengths of light and reflecting others. The reflected light determines the color that reaches our eyes.
The color of an opaque object is determined by the wavelengths of light that are absorbed by the object's surface. The color we perceive is a result of the wavelengths that are reflected back to our eyes. Objects appear a certain color because they reflect that color and absorb the rest of the colors in the visible spectrum.
An object's ability to transmit light is what determines whether it is translucent, transparent, or opaque. Translucent objects allow some light to pass through, but they scatter it in different directions. Transparent objects allow light to pass through with minimal scattering. Opaque objects do not allow light to pass through at all.
When light hits an opaque object, a shadow is created on the opposite side of the object where the light is blocked. The shadow is a dark area where light cannot pass through due to the solid nature of the opaque object.
It does not.
the wave length of light that is absorbed by the object determines color--White refects all eye perceptible colors where as black absorbes The colour of an opaque object is determined by the wavelength of the visible spectrum that it reflects. Light is made up of 7 colours, each having a specific wavelength range. Consider an object which appears green to the eye. Actually the object is not green in colour, it only reflects the waves pertaining to green wavelength range. All other wavelength are either transmitted or absorbed. The reflected wave reaches our retina and is perceived as that colour.
the wave length of light that is absorbed by the object determines color--White refects all eye perceptible colors where as black absorbes The colour of an opaque object is determined by the wavelength of the visible spectrum that it reflects. Light is made up of 7 colours, each having a specific wavelength range. Consider an object which appears green to the eye. Actually the object is not green in colour, it only reflects the waves pertaining to green wavelength range. All other wavelength are either transmitted or absorbed. The reflected wave reaches our retina and is perceived as that colour.
There are many objects that no light can pass through, although of course, it depends on what type of light you're talking about. The name of the type of object that visible light cannot pass through is called opaque.
The color you see when looking at an opaque object is determined by the wavelengths of light that are reflected off the object's surface and into your eyes. The object absorbs some wavelengths and reflects others, which your eyes perceive as color. Different colors are the result of different combinations of reflected wavelengths.
The color we see is the result of the object absorbing certain wavelengths of light and reflecting others. The reflected light determines the color that reaches our eyes.
It is not a colour
The color of an opaque object is determined by the wavelengths of light that are absorbed by the object's surface. The color we perceive is a result of the wavelengths that are reflected back to our eyes. Objects appear a certain color because they reflect that color and absorb the rest of the colors in the visible spectrum.
If you can't see through an object clearly it is an opaque object.
colors of opaque object
Yes. Opaque means you can not see any light through the object.
An object's ability to transmit light is what determines whether it is translucent, transparent, or opaque. Translucent objects allow some light to pass through, but they scatter it in different directions. Transparent objects allow light to pass through with minimal scattering. Opaque objects do not allow light to pass through at all.