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This Concept Map, created with IHMC CmapTools, has information related to: chemiosmosis, complete oxidation of one molecule of glucose in certain tissue, catalytic component located in the matrix, Chemiosmosis defined as an energy-coupling mechanism that uses energy in the form of a H+ gradient across a membrane to drive cellular work., Chemiosmosis where the ATP synthase is the enzyme that actually makes ATP from ADP and inorganic phosphate, summary that every NADH produces 3 ATP, complete oxidation of one molecule of glucose in liver,kidney and heart, summary energy is used for ATP synthesis by chemiosmosis, when there is a greater concerntration of H+ in the intermembrane space compared to the matrix, it creates a proton-motive force. thus H+ will flow back into the matrix (down the concerntration gradient) through the channels in an ATP synthase molecule, liver,kidney and heart produces 38ATP, ATP synthase is the enzyme that actually makes ATP from ADP and inorganic phosphate consist of transmembrane proton channel, transmembrane proton channel located in the matrix, summary the complete oxidation of one molecule of glucose, ATP synthase is the enzyme that actually makes ATP from ADP and inorganic phosphate consist of catalytic component, certain tissue produces 36ATP, H+ will flow back into the matrix (down the concerntration gradient) through the channels in an ATP synthase molecule and the exergonic flow of the H+ drives the phosphorylation of ADP to ATP, Chemiosmosis occur when there is a greater concerntration of H+ in the intermembrane space compared to the matrix, it creates a proton-motive force., summary that every FADH2 produces 2 ATP, when there is a greater concerntration of H+ in the intermembrane space compared to the matrix, it creates a proton-motive force. provides energy ATP synthase is the enzyme that actually makes ATP from ADP and inorganic phosphate, summary energy is realease during transportation of electron