Aerobic respiration releases much more energy than anaerobic respiration. Aerobic respiration can result in as many as 38 molecules of ATP from one molecule of glucose, compared to a net gain of 2 molecules of ATP in anaerobic respiration.
The types of cellular respiration are aerobic respiration and anaerobic respiration. Aerobic respiration requires oxygen and produces more ATP, while anaerobic respiration does not use oxygen and produces less ATP.
The two types of respiration are aerobic respiration and anaerobic respiration. Aerobic respiration requires oxygen and produces more energy than anaerobic respiration, which does not require oxygen. Anaerobic respiration produces lactic acid or ethanol as byproducts, while aerobic respiration produces carbon dioxide and water.
No, aerobic cellular respiration produces more energy than anaerobic respiration. Anaerobic respiration (like fermentation) produces just 2 ATP molecules per glucose molecule, while aerobic respiration produces up to 36-38 ATP molecules per glucose molecule.
Anaerobic respiration is performed using ATP. It is only available for your body to use for a short period of time. Aerobic respiration used oxygen and breaks down the atomic bonds to create energy. It lasts longer.
The two main types of respiration are aerobic respiration, which requires oxygen and produces energy efficiently, and anaerobic respiration, which does not require oxygen and produces energy less efficiently.
The types of cellular respiration are aerobic respiration and anaerobic respiration. Aerobic respiration requires oxygen and produces more ATP, while anaerobic respiration does not use oxygen and produces less ATP.
The major difference between anaerobic respiration and aerobic respiration is the presence of oxygen. Anaerobic respiration does not require oxygen and produces less energy, while aerobic respiration requires oxygen and produces more energy. Anaerobic respiration typically produces lactic acid or ethanol as byproducts, while aerobic respiration produces carbon dioxide and water.
Aerobic respiration produces more energy than anaerobic respiration and requires oxygen to do so. Anaerobic respiration produces less energy and does not require oxygen.
aerobic respiration uses oxygen and anaerobic doesn't; also aerobic produces more ATP or cellular energy***Apex: Oxygen is necessary for aerobic respiration but not for anaerobic respiration.
aerobic respiration uses oxygen and anaerobic doesn't; also aerobic produces more ATP or cellular energy***Apex: Oxygen is necessary for aerobic respiration but not for anaerobic respiration.
The two types of respiration are aerobic respiration and anaerobic respiration. Aerobic respiration requires oxygen and produces more energy than anaerobic respiration, which does not require oxygen. Anaerobic respiration produces lactic acid or ethanol as byproducts, while aerobic respiration produces carbon dioxide and water.
The two types of respiration are aerobic respiration, which occurs in the presence of oxygen and produces more energy, and anaerobic respiration, which occurs in the absence of oxygen and produces less energy.
No, aerobic cellular respiration produces more energy than anaerobic respiration. Anaerobic respiration (like fermentation) produces just 2 ATP molecules per glucose molecule, while aerobic respiration produces up to 36-38 ATP molecules per glucose molecule.
Aerobic respiration requires oxygen; anaerobic respiration does not use oxygen.
Aerobic respiration requires oxygen and produces more energy (ATP) compared to anaerobic respiration, which does not require oxygen and produces less energy. Aerobic respiration is more efficient in generating ATP per glucose molecule, while anaerobic respiration is less efficient.
Anaerobic respiration is performed using ATP. It is only available for your body to use for a short period of time. Aerobic respiration used oxygen and breaks down the atomic bonds to create energy. It lasts longer.
anaerobic respiration there is also fermentation, which is like anaerobic respiration but does not have an electron transport chain