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NADH and FADH2 donate electrons to different complexes in the electron transport chain because they have different energy levels and transfer electrons at different points in the chain, allowing for efficient energy production through the generation of a proton gradient.

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After electrons leave photosystem II they go into an electron transport chain of three protein complexes. Where do they go after that electron transport chain?

They go into photosystem I.


Which of the electron transport chain protein complexes accepts electrons from FADH2?

Complex 2 (succinate dehydrogenase)


In what form does the electron transport chain appear on earth?

The electron transport chain appears in cells as a series of protein complexes embedded in the inner mitochondrial membrane. These complexes pass electrons through a series of redox reactions, generating ATP in the process.


Without a terminal electron acceptor, the electrons of and would have nowhere to be released, and all of the enzyme complexes involved with the electron transport chain?

Cyanide binds the electron transport chain at the level of complex IV


The parts of the figure in the electron transport chain labeled with roman numerals symbolize what concept?

The parts labeled with roman numerals in the electron transport chain symbolize the different protein complexes where redox reactions occur to transfer electrons. Each complex plays a crucial role in passing electrons down the chain, ultimately generating ATP through chemiosmosis.


In prokaryotes the electron transport chain is in the what?

Electron transport chains are located there are many different electron donors and electron acceptors. Reverse electron transport is the most important in prokaryotic electron transport chains.


Where does the electron transport chain get high energy electrons that are passed down the chains?

High-energy electrons from NADH and FADH2 are passed along the electron transport chain


Can the electron transport chain occur without the Krebs cycle?

Yes, the electron transport chain can occur without the Krebs cycle. The electron transport chain generates ATP by transferring electrons through a series of protein complexes in the inner mitochondrial membrane, regardless of whether the electrons come from the Krebs cycle or other sources.


What is Electron Transport Systems?

The electron transport system is a series of protein complexes and molecules in the inner mitochondrial membrane that transfer electrons from electron donors to electron acceptors, generating ATP in the process. This process is crucial for cellular respiration and energy production in aerobic organisms.


Which molecules donate electrons to the electron transport chain?

Molecules that donate electrons to the electron transport chain include NADH and FADH2, which are produced during glycolysis and the citric acid cycle. These molecules transfer their electrons to protein complexes in the electron transport chain, ultimately leading to the production of ATP through oxidative phosphorylation.


What is passing of electrons through a series of protein molecules is called?

This process is known as the electron transport chain. It is a series of protein complexes and molecules located in the inner mitochondrial membrane that transfer electrons and generate ATP during cellular respiration.


What do electrons do in the electron transport chain?

In the electron transport chain, electrons move along a series of protein complexes, releasing energy that is used to pump protons across a membrane. This creates a proton gradient that drives the production of ATP, the cell's main energy source.