Photosystems are the parts of the Chloroplast that collect sunlight, that light energy will then be turned into chemical energy through the calvin cycle.
Josh Mitchell.
RCHS
Chlorophyll b pigments readily absorb light in the blue and red regions of the electromagnetic spectrum. Specifically, they absorb light most efficiently in the blue wavelengths around 450-500 nm and in the red wavelengths around 640-680 nm. These absorbed wavelengths of light drive the process of photosynthesis by exciting electrons in the pigment molecules.
Chlorophyll absorbs light most effectively in the blue and red regions of the visible spectrum. It absorbs less light in the green region, which is why plants appear green to our eyes.
Light
Chlorophyll.
It is in the light dependant reaction. Thew first step of the photosynthesis.
Chlorophyll a and chlorophyll b are the main molecules in chloroplasts that can absorb light for photosynthesis. These pigments absorb light energy and convert it into chemical energy, which is used to drive the process of photosynthesis.
light.
Chlorophyll b pigments readily absorb light in the blue and red regions of the electromagnetic spectrum. Specifically, they absorb light most efficiently in the blue wavelengths around 450-500 nm and in the red wavelengths around 640-680 nm. These absorbed wavelengths of light drive the process of photosynthesis by exciting electrons in the pigment molecules.
Chlorophyll absorbs light most effectively in the blue and red regions of the visible spectrum. It absorbs less light in the green region, which is why plants appear green to our eyes.
Chlorophyll a and b are green because they absorb light in the blue and red spectral regions for photosynthesis but reflect green light, giving them their characteristic color. This green light is not effectively utilized for photosynthesis, hence it is reflected, making chlorophyll appear green to our eyes.
Chlorophyll b is an example of a photosynthetic pigment found in plants and algae. It absorbs light energy for photosynthesis and plays a key role in capturing light from different regions of the spectrum that chlorophyll a cannot absorb efficiently.
Chlorophyll a primarily absorbs blue and red light wavelengths, while chlorophyll b absorbs blue and some green light wavelengths. Together, they work to capture sunlight energy for photosynthesis in plants.
The graph suggests that chlorophyll absorbs light most efficiently in the blue and red regions of the spectrum. This is because chlorophyll molecules absorb light most strongly in these regions, which corresponds to the wavelengths most useful for photosynthesis.
All molecules will absorb light to a greater or lesser degree
Light
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Because they contain chlorophyll. Chlorophyll absorb energy from sun light.