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The ETC (Electron Transport Chain).

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What are cluster of chlorophyll called?

Photosystems Photosystems


What is the evidence that there are two photosystems in plants?

The evidence for two photosystems in plants comes from experiments using isolated chloroplasts, which have shown that two distinct light reactions occur in the thylakoid membrane. Additionally, differences in absorption spectra and electron transport pathways of Photosystem I and Photosystem II provide further evidence for the existence of two separate photosystems.


Photosystems are found in the structure called what?

There are two photosystems, and they can be found embedded in the thylakoid membranes. They are linked by electron transport molecules.


What are the clusters of photosystems?

The two clusters of photosystems in plants are Photosystem I (PSI) and Photosystem II (PSII). PSII functions first in the photosynthetic electron transport chain, followed by PSI, and they work together to absorb light energy and carry out the reactions of photosynthesis.


Cooperation of the two photosystems of the chloroplast is required for?

The cooperation of the two photosystems of the chloroplast is required for the efficient generation of ATP and reducing power (NADPH) during photosynthesis. Photosystem II captures light energy to drive the electron transport chain, while photosystem I helps in the production of NADPH by receiving electrons from photosystem II. This cooperation is essential for the overall functioning of the light-dependent reactions in the chloroplast.

Related Questions

True or false an electron transport chain connects photosystem 1 and photosystem2?

False. The electron transport chain connects the two photosystems in the thylakoid membrane, but it does not directly connect photosystem 1 and photosystem 2. Instead, it shuttles electrons between the two photosystems as part of the light-dependent reactions of photosynthesis.


What are cluster of chlorophyll called?

Photosystems Photosystems


Why can the Calvin cycle work at night but photosystems cant?

Because photosystems need light to operate (photo=light). Photosystems use energy from sunlight, Calvin systems use energy stored in the plant.


Photosystems light reactions?

Photosystems are protein complexes in the thylakoid membrane that are involved in the light reactions of photosynthesis. They capture light energy and convert it into chemical energy in the form of ATP and NADPH. There are two main photosystems in the thylakoid membrane, Photosystem I and Photosystem II, which work together to drive the conversion of light energy into chemical energy.


Are photosystems 1 and 2 found in the Calvin cycle?

They are found in the light reaction. Photosystems not involved in Calvin cycle.


What is the evidence that there are two photosystems in plants?

The evidence for two photosystems in plants comes from experiments using isolated chloroplasts, which have shown that two distinct light reactions occur in the thylakoid membrane. Additionally, differences in absorption spectra and electron transport pathways of Photosystem I and Photosystem II provide further evidence for the existence of two separate photosystems.


Photosystems are found in the structure called what?

There are two photosystems, and they can be found embedded in the thylakoid membranes. They are linked by electron transport molecules.


What do you call the clusters of chlorophyll molecules that capture light energy?

They are called photosystems. Photosystems are groups of chlorophyll molecules and associated proteins that work together to absorb and transfer light energy during the process of photosynthesis.


What is a cluster of pigments and proteins that absorbs light?

photosystems


What is the cluster of pigments and proteins that absorbs light?

photosystems


Where do the hydrogen ions for the photosystems of the light-dependent reactions originate?

The hydrogen ions for the photosystems of the light-dependent reactions originate from water molecules during the process of photosynthesis.


Role of pigments and photosystems in the capture of light energy?

Pigments, like chlorophyll, absorb light energy and transfer it to photosystems within chloroplasts. Photosystems are protein complexes that contain chlorophyll and other pigments, which facilitate the conversion of light energy into chemical energy through photosynthesis. Together, pigments and photosystems play a crucial role in capturing and converting light energy for use in the synthesis of ATP and NADPH during photosynthesis.