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Cellular Respiration

Horizontales
This element is needed for Kreb's cycle and the ETC to function.
The 3 carbon product of glycolysis
The space between the mitochondrial membranes in which protons accumulate.
The location of aerobic respiration in eukaryotic cells.
The process in aerobic respiration in which electrons move through membrane bound proteins and eventually on oxygen. These activated proteins pump hydrogen ions across the membrane to form an electrochemical gradient.
The protein that is responsible for ATP production through oxidative phosphorylation.
The link reaction (pyruvate oxidation) results in the production of this 2 carbon molecule.
A reaction in which a molecule gains an electron.
A hydrogen ion that is pumped across the mitochondria's inner membrane.
This molecule becomes reduced in cellular respiration. Glycolysis without fermentation would result in a decrease in concentration of this molecule.
Verticales
The process in which acetyl coA is further broken down leading to the formation at CO2, ATP, NADH and FADH2
A reaction in which a molecule loses or donates an electron.
The molecule that serves as the reusable energy coinage in the cell, it has a high energy bond that releases ample energy for chemical reactions when it is broken.
The product of fermentation in animal cells when oxygen is in little or low concentrations.
The process in which NADH is oxidized to allow for the cell to continue producing ATP through glycolysis.
The final electron acceptor in aerobic respiration.
The process in which glucose is broken down into 2 pyruvate molecules.
The type of phosphorylation that occurs during ATP formation in glycolysis and Kreb's cycle.
The location in which glycolysis and fermentation take place in the cell.
The space inside the inner mitochondrial membrane where Kreb's cycle takes place.
A reduced molecule that transports electrons to the electron transport chain.