Yes, cellular respiration produces 36-38 ATP per glucose molecule.
ATP is used for cellular respiration. It is not a product of cellular respiration.
Cellular respiration and production of ATP occur in the mitochondria of cells. This organelle is responsible for converting nutrients from food into ATP, which is the main energy source for cellular processes.
Anaerobic cellular respiration generates a net gain of 2 ATP. Aerobic cellular respiration generates 36 to 38 ATP.
C6H12O6 + O2 ---> CO2 + H2O + Energy (ATP) basically Glucose + Oxygen ---> Carbon dioxide + Water + Energy (as ATP)
Cellular respiration occurs in the mitochondria of a cell. Mitochondria are the powerhouses of the cell, responsible for producing energy in the form of ATP through the process of cellular respiration.
ATP is used for cellular respiration. It is not a product of cellular respiration.
Cellular respiration and production of ATP occur in the mitochondria of cells. This organelle is responsible for converting nutrients from food into ATP, which is the main energy source for cellular processes.
Anaerobic cellular respiration generates a net gain of 2 ATP. Aerobic cellular respiration generates 36 to 38 ATP.
Cellular respiration occurs in mitochondria
C6H12O6 + O2 ---> CO2 + H2O + Energy (ATP) basically Glucose + Oxygen ---> Carbon dioxide + Water + Energy (as ATP)
No, ATP is a product. ADP assists in the creation of ATP in cellular respiration.
Cellular respiration occurs in the mitochondria of a cell. Mitochondria are the powerhouses of the cell, responsible for producing energy in the form of ATP through the process of cellular respiration.
Aerobic cellular respiration produces more ATP compared to anaerobic cellular respiration.
cellular respiration occurs in the mitochondria
Glucose must be present in order for cellular respiration to occur. Cellular respiration is the process in which glucose is broken down in to ATP (energy), Carbon Dioxide, and water. Glucose is a reactant in the sense that it must be present for the reaction to occur.
Aerobic cellular respiration forms the most ATP. It involves a series of metabolic reactions that occur in the presence of oxygen to fully break down glucose, producing a total of 36-38 ATP molecules per glucose molecule.
ATP is a product of cellular respiration and not fermentation. Fermentation produces lactic acid or ethanol as byproducts, while cellular respiration produces ATP as the main energy currency of the cell.