blue colored and 545 to 565 nm wavelength of phycoerythrin does absorbs.
It will be a dark red solution- like liquid bromine
the color of light does affect plants growth because the plant absorbs certain types of wavelengths of light
Blue light and yellow light combine to produce white light through additive color mixing, where different wavelengths of light are combined. Blue light, which has shorter wavelengths, and yellow light, a mix of red and green wavelengths, together encompass a broad range of the visible spectrum, resulting in the perception of white light. This interaction highlights that blue and yellow are complementary colors, capable of creating a balanced spectrum when combined. Thus, it illustrates the principle that combining certain colors of light can yield a neutral color like white.
because it reflects green light and absorbs the other visible wavelengths
Reflected. The other colors of the light spectrum are absorbed. In fact, this is how all 'color' works - whatever the object. A red ball, a white shirt, etc. The color you see is the color being reflected back at your eyes, while the other colors are absorbed by the object.
The color of visible light depends on its wavelength. Different wavelengths of light appear as different colors to the human eye. Shorter wavelengths correspond to colors like blue and violet, while longer wavelengths correspond to colors like red and orange.
An object that reflects red light and absorbs other colors appears red because it is reflecting red wavelengths and absorbing all other colors. This selective reflection of light is due to the object's specific molecular structure or pigmentation which determines how it interacts with different wavelengths of light.
Colors are affected by light energy through a process called absorption. When light shines on an object, its surface absorbs certain wavelengths of light while reflecting others. The wavelengths that are reflected determine the color we see. Different colors are a result of different wavelengths of light being reflected off an object.
Objects appear to have certain colors because they reflect or absorb certain wavelengths of light. The color we perceive is the result of the wavelengths of light that are reflected back to our eyes. For example, an object appears red because it reflects red wavelengths of light and absorbs other wavelengths.
Green, the reason chlorophyll is known as a green pigment is because it absorbs all wavelengths of light but reflects green light.
The pigment primarily absorbs green and red wavelengths of light, reflecting back other colors which results in its observed color.
Chlorophyll is a protein that absorbs certain wavelengths of light during photosynthesis in plants.
No, the red absorbs all the colors in the light exceptred.
white and something else
Matte black because it absorbs most wavelengths.
The color of an opaque object is determined by the wavelengths of light it reflects. The object absorbs certain wavelengths of light and reflects others, which our eyes perceive as color. For example, an object that appears red absorbs most colors of light except for red, which it reflects.
All of the electromagnetic spectrum can be reflected. White light is a combination of all colors. They all reflect, red is among them.