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oxygen in a series of steps

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What are three hydrogen carriers involved in aerobic respiration?

NADH, FADH2, and flavin adenine dinucleotide (FAD) are three hydrogen carriers involved in aerobic respiration. These molecules carry high-energy electrons to the electron transport chain, where they transfer the electrons to generate ATP through oxidative phosphorylation.


Why must transport proteins be located in the mitochondrial membrane to complete the third stage of aerobic respiration?

They must interact with the electrons and hydrogen.


Which step in Aerobic Respiration generates the most Hydrogen?

The step in aerobic respiration that generates the most hydrogen is the electron transport chain. This is where electrons from NADH and FADH2 are passed along a series of protein complexes, leading to the generation of a high concentration of hydrogen ions (H+) which combine with oxygen to form water.


What product is released during aerobic respiration after oxygen accepts hydrogen?

Water is released during aerobic respiration after oxygen accepts hydrogen. This occurs during the electron transport chain in the inner mitochondrial membrane.


Which organalle in a cell is associated with the production of energy by aerobic respiration?

mitochondria


Organelle in a cell is associated with the production of energy by aerobic respiration?

lungs


What stage of aerobic cellular respiration pumps hydrogen into the intermembrane compartment?

The stage of aerobic cellular respiration that pumps hydrogen ions into the intermembrane compartment is the electron transport chain (ETC). During this stage, electrons are transferred through a series of protein complexes, leading to the active transport of hydrogen ions from the mitochondrial matrix into the intermembrane space. This creates a proton gradient, which is essential for ATP synthesis during chemiosmosis.


The terminal electron acceptor in aerobic respiration is water is it broken down to hydrogen and oxygen?

No, it is the other way round:The terminal electron acceptor in aerobic respiration is oxygen. Together with H+ ions water molecules are formed. O2 + 4 e- + 4 H+ ==> 2 H2O


What is the ultimate electron and hydrogen ion acceptor in aerobic respiration?

The ultimate electron acceptor in aerobic respiration is molecular oxygen (O2), which gets reduced to form water (H2O). The ultimate hydrogen ion acceptor is also oxygen, as it combines with hydrogen ions to form water.


What is the final stage of aerobic respiration?

The final stage of aerobic respiration is the electron transport chain, which occurs in the inner mitochondrial membrane. In this stage, electrons are transferred through a series of protein complexes, generating ATP through oxidative phosphorylation.


True or false at the end of the areobic respiration carbon is the molecule that is responsible for taking the hydrogen ions?

At the end of a aerobic respiration carbon is the molecule that makes hydrogen ions. This is taught in science.


Where is energy in the glucose stored?

The energy in glucose is stored in the covalent bonds between the molecules, and most importantly, in the hydrogen electrons. The hydrogen electrons were boosted to a "higher energy level" in the process of photosynthesis (which is transfered by plants from sunlight) during the photosystem I in plants. These hyrogen electrons will than pass through the electron transport chain during aerobic cellular respiration, and the hydrogen ions become stable.